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Global FDM 3D Printing Technology Market 2023: Market Size, Share, Manufacturers Data, Import Export Scenario, Business Opportunities
FDM 3D Printing Technology Market Overview:
FDM 3D Printing Technology has just released a new report titled "Global Analysis of FDM 3D Printing Technology Market: Size, Share, and Opportunities up to 2032," providing a precise examination of the overall FDM 3D Printing Technology market, encompassing economic factors and country-level insights. The report offers an in-depth analysis of the global market covering important aspects such as market size, share, revenue CAGR, growth factors, restraints, opportunities, challenges, and risk factors.
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Moreover, it provides an accurate analysis of how market pricing, competition, regional growth, gross margin, and consumption will affect the global market’s performance between 2023 and 2032. The information in the report is generated through rigorous primary and secondary research which is evaluated by professionals and key opinion leaders. The data is systematically arranged using figures, tables, charts, and diagrams for a better understanding of the market dynamics.
Report Details
Outcome
Market Size Available for Years
2023-2032
Base Year for Estimation
2022
Historical Data
2018-2021
Quantitative Units
Revenue in USD Million/Billion
Regions Covered
North America, Europe, Asia Pacific, Latin America, Middle East and Africa
Country Scope
United States, Canada, Germany, France, UK, Italy, Russia, China, Japan, South Korea, Southeast Asia, India, Mexico, Brazil, Saudi Arabia, UAE, Turkey
Segments Covered
Types, Applications, Regions, and more
Qualitative Info
Value Chain Analysis
Pricing Analysis
Regional Outlook
Market Trends
Market Share Analysis
Competition Analysis
Technological Advancements
Customization Scope
10 Hours of Free Customization and Expert Consultation
The global FDM 3D Printing Technology market has experienced a rapid expansion in recent years and is expected to continue expanding during the forecast period. The market projections in the report have been meticulously generated through a thorough research methodology involving comprehensive secondary research, primary interviews, and meticulous in-house expert assessments. The influence of various social, political, and economic factors on the growth of the global FDM 3D Printing Technology market has been thoughtfully taken into account during the formulation of these forecasts.
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FDM 3D Printing Technology Market Report Gives Answers to Following Key Questions:
How large was the global market in 2022?
What is the global market projected value for 2032?
What is the sales forecast for the global market through 2032?
What was the last 5 years’ CAGR for the global market?
Which countries/regions drive the demand within the FDM 3D Printing Technology?
What is the United States market outlook?
What is the China market outlook?
What is the Germany market outlook?
Competitive Landscape:
The global market is extremely competitive with numerous market participants operating both regionally and globally. The report illuminates the global position, licensing arrangements, product introductions, and revenue statuses of each market participant. These leading players are actively engaged in implementing diverse strategies such as mergers, acquisitions, collaborations, partnerships, joint ventures, and licensing agreements.
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FDM 3D Printing Technology Key Players:
Protolabs Stratasys Essentium Sculpteo CreatBot Anisoprint 3DGence Kumovis Materialise 3D Systems
Global FDM 3D Printing Technology Market Segmentation:
Our team of expert researchers has obtained a complete range of information related to market segmentation. The FDM 3D Printing Technology market is segmented on the basis of type, application, and region:
FDM 3D Printing Technology Market by Type:
Hardware Software and Services
FDM 3D Printing Technology Market by Application:
Medical Aerospace and Defense Automobile Industry Scientific Research Other
FDM 3D Printing Technology Market by Region:
North America (United States, Canada)
Europe (Germany, France, UK, Italy, Russia, Nordic Countries)
Asia Pacific (China, Japan, South Korea, Southeast Asia, India, Australia, Rest of Asia Pacific)
Latin America (Mexico, Brazil, Rest of Latin America)
Middle East & Africa (Turkey, Saudi Arabia, UAE, Rest of MEA)
What are New Additions in 2023?
Detailed Industry Outlook
Additional Information on Company Players
Customized Report and Analyst Support On Request
Recent Market Developments and Futuristic Growth Opportunities
Customized Regional/Country Reports as Per Request
Customization of the Report:
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#FDM 3D Printing Technology Market#FDM 3D Printing Technology Market share#FDM 3D Printing Technology Market trends#FDM 3D Printing Technology Market Size
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3D Printing Market - Recent Industry Developments and Growth Strategies till 2030
In 2023, the global 3D printing market was valued at USD 20.37 billion and is projected to grow significantly, with a compound annual growth rate (CAGR) of 23.5% from 2024 to 2030. This anticipated growth is largely driven by intensive research and development in 3D printing technology and the rising demand for prototyping applications across various industries, particularly healthcare, automotive, and aerospace & defense sectors.
In industrial settings, 3D printing is commonly referred to as additive manufacturing (AM). This process involves the layer-by-layer addition of material to create objects from a 3D model, guided by specialized software and a 3D printer. The choice of 3D printing technology depends on the specific requirements of each application. Once a suitable technology is chosen, the process is implemented across various industry sectors based on specific needs.
Gather more insights about the market drivers, restrains and growth of the 3D Printing Market
The deployment of 3D printing technology includes services such as installation, consulting, and customer support. It also involves addressing issues related to intellectual property, licensing, and patents. By leveraging 3D printing, manufacturers benefit in several ways, including enhanced prototyping, structural design, product modeling, and reduced time to market. These advantages result in considerable cost savings for manufacturers, allowing them to deliver improved products at competitive prices. Consequently, the demand for 3D printers is expected to grow over the forecast period.
Despite these advantages, certain challenges exist that may slow the adoption of additive manufacturing, particularly among small and medium-sized manufacturers. Many of these businesses hold misconceptions about the prototyping process, seeing it as an expensive pre-manufacturing phase rather than as a valuable investment. This perception, along with limited technical knowledge and a lack of standardized process controls, is expected to hinder market expansion.
Technology Segmentation Insights:
In terms of technology, the stereolithography segment led the 3D printing market in 2023, holding over 10% of the global revenue share. The market segmentation by technology includes stereolithography, fused deposition modeling (FDM), direct metal laser sintering (DMLS), selective laser sintering (SLS), inkjet, polyjet, laser metal deposition, electron beam melting (EBM), digital light processing (DLP), laminated object manufacturing, and others.
Stereolithography, one of the oldest 3D printing technologies, remains widely used due to its ease of operation and numerous advantages. However, continuous technological advancements and intensive research efforts are creating new opportunities for other reliable and efficient technologies in the market.
Fused Deposition Modeling (FDM) held a significant market share in 2023, largely because of its widespread adoption in various 3D printing applications. Digital Light Processing (DLP), Electron Beam Melting (EBM), inkjet printing, and Direct Metal Laser Sintering (DMLS) technologies are also expected to gain traction over the forecast period due to their applicability in specialized additive manufacturing processes. The increasing demand across aerospace and defense, healthcare, and automotive sectors is expected to create growth opportunities for these technologies as they support diverse and specialized applications in these industries.
Order a free sample PDF of the 3D Printing Market Intelligence Study, published by Grand View Research.
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3D Printing Market Size & Forecast Report, 2030
In 2023, the global 3D printing market was valued at USD 20.37 billion and is projected to grow significantly, with a compound annual growth rate (CAGR) of 23.5% from 2024 to 2030. This anticipated growth is largely driven by intensive research and development in 3D printing technology and the rising demand for prototyping applications across various industries, particularly healthcare, automotive, and aerospace & defense sectors.
In industrial settings, 3D printing is commonly referred to as additive manufacturing (AM). This process involves the layer-by-layer addition of material to create objects from a 3D model, guided by specialized software and a 3D printer. The choice of 3D printing technology depends on the specific requirements of each application. Once a suitable technology is chosen, the process is implemented across various industry sectors based on specific needs.
Gather more insights about the market drivers, restrains and growth of the 3D Printing Market
The deployment of 3D printing technology includes services such as installation, consulting, and customer support. It also involves addressing issues related to intellectual property, licensing, and patents. By leveraging 3D printing, manufacturers benefit in several ways, including enhanced prototyping, structural design, product modeling, and reduced time to market. These advantages result in considerable cost savings for manufacturers, allowing them to deliver improved products at competitive prices. Consequently, the demand for 3D printers is expected to grow over the forecast period.
Despite these advantages, certain challenges exist that may slow the adoption of additive manufacturing, particularly among small and medium-sized manufacturers. Many of these businesses hold misconceptions about the prototyping process, seeing it as an expensive pre-manufacturing phase rather than as a valuable investment. This perception, along with limited technical knowledge and a lack of standardized process controls, is expected to hinder market expansion.
Technology Segmentation Insights:
In terms of technology, the stereolithography segment led the 3D printing market in 2023, holding over 10% of the global revenue share. The market segmentation by technology includes stereolithography, fused deposition modeling (FDM), direct metal laser sintering (DMLS), selective laser sintering (SLS), inkjet, polyjet, laser metal deposition, electron beam melting (EBM), digital light processing (DLP), laminated object manufacturing, and others.
Stereolithography, one of the oldest 3D printing technologies, remains widely used due to its ease of operation and numerous advantages. However, continuous technological advancements and intensive research efforts are creating new opportunities for other reliable and efficient technologies in the market.
Fused Deposition Modeling (FDM) held a significant market share in 2023, largely because of its widespread adoption in various 3D printing applications. Digital Light Processing (DLP), Electron Beam Melting (EBM), inkjet printing, and Direct Metal Laser Sintering (DMLS) technologies are also expected to gain traction over the forecast period due to their applicability in specialized additive manufacturing processes. The increasing demand across aerospace and defense, healthcare, and automotive sectors is expected to create growth opportunities for these technologies as they support diverse and specialized applications in these industries.
Order a free sample PDF of the 3D Printing Market Intelligence Study, published by Grand View Research.
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"Future of Healthcare: Innovations in the 3D Printing Medical Devices Market"
3D Printing Medical Devices Market Overview📊 :
The 3D Printing Medical Devices Market Report is a treasured source of insightful data for business strategists. It provides an in-depth assessment of numerous features of industries like market overview, present progress valuations, historical and future studies, current trends, SWOT valuations, and clients operating in several regions. The study provides valuable information to magnify the understanding, scope, and segments of this report. The report covers a comprehensive analysis of 3D Printing Medical Devices Market segmentation and regional and country breakdowns. This research will offer a clear and exact idea about the whole industry to the readers to make beneficial decisions.
According to Straits Research, the global 3D Printing Medical Devices Market size was valued at USD 2.55 Billion in 2022. It is projected to reach from USD XX Billion in 2023 to USD 9.79 Billion by 2031, growing at a CAGR of 16.1% during the forecast period (2023–2031).
This study pinpoints noteworthy trends influencing the trajectory of the Gesture Recognition market's expansion. Within this recently issued report, crucial dynamics encompassing drivers, limitations, and prospects are underscored. These aspects hold relevance for well-established market entities as well as emerging stakeholders engaged in the realms of production and supply.
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Who are the 🏆leading players in 3D Printing Medical Devices Market?
3D Systems Corporations,
Bio3D Technologies,
Cyfuse Medical K.K.,
EnvisionTEC,
Materialise NV,
Organovo Holdings Inc.,
Oxford Performance Materials Inc.,
SLM Solutions Group AG,
Stratasys Ltd.
Moreover, the competitive analysis of the 3D Printing Medical Devices Market brings insight into the product usability profiles of the leading players. Additionally, the analysis highlights features & pricing, and informant reviews of the key products in the market.
Which segments are covered in 3D Printing Medical Devices Market?
By Component
Printers
Materials
Software & Services
Hardware
By Technology
Electron Beam Melting (EBM)
Laser Beam Melting (LBM)
Direct Metal Laser Sintering (DMLS)
Stereolithography (SLA)
Fused Deposition Modeling (FDM)
Selective Laser Melting (SLM)
Selective Laser Sintering (SLS)
Others (Photopolymerization, Digital Light Processing [DLP], etc.)
By Application
Orthopedic & Cranial Implant
Dental Restorations
Surgical Instruments
Tissue Fabrication
Custom Prosthetics
Prosthetics Implant
Wearable Medical Devices
Dentistry and Orthodontics
Others (Tissue-engineered Products, Plastic and Reconstructive Surgeries, etc.)
By Material
Plastics
Biomaterial Inks
Metals and Alloys
By End User
Hospitals and Surgical Centers
Dental and Orthopedic Clinics
Academic Institutions and Research Laboratories
Pharma-Biotech and Medical Device Companies
Clinical Research Organizations
The market is largely fragmented and the vast majority of the players functioning in the global 3D Printing Medical Devices Market are taking steps to raise their market footprint, by concentrating on product diversification and development, therefore making them seize a larger share of the market. The study highlights current market trends and provides a forecast. We also have highlighted future trends in the 3D Printing Medical Devices Market that will impact the demand during the forecast period. Overall, this report is an important resource for businesses seeking to stay ahead of the competition in the 3D Printing Medical Devices Market industry. With its complete analysis of recent developments and the latest emerging trends, it offers valuable insights into the market that can be used to grow effective growth strategies and enhance market positioning.
Access Detailed Segmentation @ https://straitsresearch.com/3d-printing-medical-devices-market/segmentation
Regional Analysis
Largest Market: The 3D Printing Medical Devices Market is dominated by North America, which holds the largest share due to factors such as advanced infrastructure, high consumer awareness, and significant investment in related industries. The region's well-established specific sectors further bolster its leading position in the market.
Fastest Growing Market: The fastest-growing market for 3D Printing Medical Devices Market is Europe. This growth is driven by a combination of rising disposable incomes, increasing adoption of specific products or services, and supportive government initiatives. Additionally, the expanding related industries in this region contribute to its rapid market expansion.
Our Report Offers:
– Market share assessments for the regional and country-level segments.
– Strategic recommendations for the new entrants.
– Competitive landscaping mapping the key common trends.
– Company profiling with detailed strategies, financials, and recent developments.
– Supply chain trends mapping the latest technological advancements.
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An international 3D Printing Medical Devices Market research report delves into the competitive landscape of global markets, scrutinizing companies and manufacturers. The report's competitive analysis spotlights the strategic actions undertaken by key players across diverse industries. These actions encompass a spectrum of activities including new product introductions, expansions, agreements, joint ventures, partnerships, and recent acquisitions. This comprehensive market report sheds light on a myriad of facets within marketing research, spanning crucial industry trends, market size, estimated market share, sales volume, emerging patterns, product consumption, customer inclinations, historical data, forward-looking forecasts, and meticulous analysis of key players.
Global 3D Printing Medical Devices Market Research Report Forecast 2031
Chapter 1:- 3D Printing Medical Devices Market Overview
Chapter 2:- Economic Impact on Industry
Chapter 3:- Production, Business Opportunities with Potential Analysis
Chapter 4:- Rising Trends and New Technologies with Key Players
Chapter 5:- 3D Printing Medical Devices Market Manufacturing Cost Analysis
Chapter 6:- Technology Progress, Development Process and Downstream Buyers
Chapter 7:- Marketing Strategy Analysis, Distributors/Traders
Chapter 8:- Market Share by Key Countries in These Regions
Chapter 9:- Show the Market by Type and Application, With Sales Market Share and Growth Rate
Chapter 10:- Appendix and Data Source
Click to View the Full Report TOC: https://straitsresearch.com/report/3d-printing-medical-devices-market/toc
Key Questions Answered by Our 3D Printing Medical Devices Market Report
What are the key drivers of growth in the 3D Printing Medical Devices Market, and how do they vary across regions and segments?
How are advancements in technology and innovation affecting the 3D Printing Medical Devices Market, and what new opportunities and challenges are emerging as a result?
Which market players are currently leading the pack in terms of market share and product innovation, and what strategies are they employing to maintain their positions?
What regulatory and policy changes are on the horizon that could affect the 3D Printing Medical Devices Market, and how are market players adapting to these changes?
What are the emerging trends and market disruptors that are likely to shape the 3D Printing Medical Devices Market in the years to come, and what can businesses do to stay ahead of the curve?
How are consumer preferences and behaviors evolving with regard to 3D Printing Medical Devices Market, and what implications do these trends have for market players?
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Thanks for reading this article; you can also get separate chapter-wise sections or region-wise report versions like North America, Europe, or Asia.
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3d Printing Market In-Depth Analysis and Forecast 2024 - 2030
The global 3D printing market size is expected to reach USD 88,281.2 million by 2030, according to a new report by Grand View Research, Inc. The market is expected to expand at a CAGR of 23.5% from 2024 to 2030. 3D Printing (3DP) is also referred to as Additive Manufacturing (AM) as it involves successive addition of layers of materials in various 2D shapes using an additive process. These layered 2D shapes build upon one another to form a three-dimensional object. The process is different from the subtractive method of production, which begins with a block of material and the unnecessary material is ground out to obtain the desired object.
3D printing is widely adopted in the industrial sector owing to the growing need for enhanced product manufacturing and a shorter time to market. The industrial vertical happens to be the most significant adopter of the 3D printing technology, eventually leading to the largest market share of 3D printers for industrial applications over the forecast period. Additive manufacturing is anticipated to evolve over the forecast period.
Gather more insights about the market drivers, restrains and growth of the 3d Printing Market
Detailed Segmentation:
Market Concentration & Characteristics
The 3D Printing Market growth stage is high. The 3D printing market has witnessed a significant degree of innovation, marked by continuous advancements in 3D printing materials market, printing technologies, and the expansion of applications across diverse industries. Ongoing research and development efforts have led to the introduction of more sophisticated and efficient 3D printers, enabling the production of complex and functional objects with improved speed and precision. The dynamic landscape reflects a continuous quest for innovation, with 3D printing increasingly positioned as a transformative technology driving advancements in manufacturing and design processes.
Printer Type Insights
The industrial printer segment led the market and accounted for more than 76.0% share of the global revenue in 2023. Based on the printer type, the industry has been further segmented into industrial and desktop 3D printers. The large share of industrial 3D printers can be attributed to the extensive adoption of industrial printers in heavy industries, such as automotive, electronics, aerospace and defense, and healthcare. Prototyping, designing, and tooling are some of the most common industrial applications across these industry verticals.
Technology Insights
The stereolithography segment led the market and accounted for more than a 10.0% share of the global revenue in 2023. Based on technology, segmentation has been divided into stereolithography, fuse deposition modeling (FDM), direct metal laser sintering (DMLS), selective laser sintering (SLS), inkjet, polyjet, laser metal deposition, electron beam melting (EBM), digital light processing, laminated object manufacturing, and others.
Software Insight
The design software segment led the market and accounted for more than 36% share of the global revenue in 2023. It is expected to continue dominating the market during the forecast period. Based on software, the 3DP industry has been segmented into design software, inspection software, printer software, and scanning software. Design software is used for constructing the designs of the object to be printed, particularly in automotive, aerospace and defense, and construction and engineering verticals. Design software acts as a bridge between the objects to be printed and the printer’s hardware.
Application Insight
The prototyping segment led the market and accounted for more than 54% share of the global revenue in 2023. Based on application, the industry has been segmented further into prototyping, tooling, and functional parts. Prototyping segment accounted for the largest share in 2023 owing to an extensive adoption of the prototyping process across several industry verticals. The automotive, aerospace and defense verticals mainly use prototyping to design and develop parts, components, and complex systems precisely.
Vertical Insight
The automotive segment led the market and accounted for more than 23% share of the global revenue in 2023. Based on vertical, the industry has been segmented into separate verticals for desktop and industrial 3D printing. The verticals considered for desktop 3DP comprise educational purposes, fashion, jewelry, objects, dental, food, and others. The verticals considered for industrial 3DP comprise automotive, aerospace and defense, healthcare, consumer electronics, industrial, power and energy, and others.
Material Insight
The metal segment led the market for 3D printing and accounted for more than 54% share of the global revenue in 2023. Moreover, the metal segment is anticipated to maintain its lead during the forecast period and is expected to expand at the highest CAGR during the forecast period. Based on material, the industry has been segmented further into polymer, metal, and ceramic.
Component Insight
The hardware segment led the market and accounted for more than 63% share of the global revenue in 2023. The hardware segment has benefitted significantly from the growing necessity of rapid prototyping and advanced manufacturing practices. The growth of the hardware segment is primarily attributed to various factors such as rapid industrialization, increasing penetration of consumer electronic products, developing civil infrastructure, rapid urbanization, and optimized labor costs.
Regional Insight
North America led the market and accounted for more than 33% share of the global revenue in 2023. This can be attributed to the extensive adoption of additive manufacturing in the region. North American countries, such as the U.S. and Canada, have been among the prominent and early adopters of these technologies in various manufacturing processes. Europe happens to be the largest region in terms of its geographical footprint. It is home to several additive manufacturing industry players with strong technical expertise in additive manufacturing processes. Hence, the European market emerged as the second-largest regional market in 2023.
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Key Companies & Market Share Insights
Some of the key players operating in the market include 3D Systems, Inc. and Materialise among others.
• 3D Systems, Inc. is the U.S.-based technology company. The company is involved in the development of Desktop 3D printing products and services such as 3D printers, materials, software, 3D scanners and virtual surgical simulators and haptic design tools. Additionally, the company serves its customers with 3D solutions to manufacture and design complex and unique parts, produce parts locally to reduce the lead time, and eliminate expensive tooling, among others. The company caters to numerous industries and verticals such as aerospace & defense, automotive, healthcare, educational, durable goods, and entertainment.
• Materialise is a Belgium-based technology company operating in the additive manufacturing industry. The company is actively involved in the field of Desktop 3D printing to develop a broad range of software solutions, Desktop 3D printing services, and engineering. The company primarily caters to the industries such as healthcare, aerospace, automotive, consumer goods, and art & design.
Key 3D Printing Companies:
• 3D Systems, Inc.
• 3DCeram
• Arcam AB
• Autodesk, Inc.
• Canon, Inc.
• Dassault Systemes
• EnvisionTec, Inc.
• EOS (Electro Optical Systems) GmbH
• ExOne
• GE Additive
• HP Inc.
• madeinspace.us
3D Printing Market Segmentation
Grand View Research has segmented the global 3D printing market based on component, printer type, technology, software, application, vertical, material, and region:
3D Printing Component Outlook (Revenue, USD Million, 2017 - 2030)
• Hardware
• Software
• Services
3D Printing Printer Type Outlook (Revenue, USD Million, 2017 - 2030)
• Desktop 3D Printer
• Industrial 3D Printer
3D Printing Technology Outlook (Revenue, USD Million, 2017 - 2030)
• Stereolithography
• Fuse Deposition Modelling
• Selective Laser Sintering
• Direct Metal Laser Sintering
• Polyjet Printing
• Inkjet printing
• Electron Beam Melting
• Laser Metal Deposition
• Digital Light Processing
• Laminated Object Manufacturing
• Others
3D Printing Software Outlook (Revenue, USD Million, 2017 - 2030)
• Design Software
• Inspection Software
• Printer Software
• Scanning Software
3D Printing Application Outlook (Revenue, USD Million, 2017 - 2030)
• Prototyping
• Tooling
• Functional Parts
3D Printing Vertical Outlook (Revenue, USD Million, 2017 - 2030)
• Industrial 3D Printing
o Automotive
o Aerospace & Defense
o Healthcare
o Consumer Electronics
o Power & Energy
o Others
• Desktop 3D Printing
o Educational Purpose
o Fashion & Jewelry
o Objects
o Dental
o Food
o Others
3D Printing Material Outlook (Revenue, USD Million, 2017 - 2030)
• Polymer
• Metal
• Ceramic
3D Printing Regional Outlook (Revenue, USD Million, 2017 - 2030)
• North America
o U.S.
o Canada
o Mexico
• Europe
o U.K.
o Germany
o France
o Italy
o Spain
• Asia Pacific
o China
o Japan
o India
o South Korea
o Australia
o Singapore
• South America
o Brazil
• Middle East and Africa (MEA)
o KSA
o UAE
o South Africa
Order a free sample PDF of the 3d Printing Market Intelligence Study, published by Grand View Research.
Recent Developments
• In March 2023, 3D Systems, Inc. announced the launch of NextDent Cast and NextDent Base, two new printing materials, and NextDent LCD1, a printing platform. The materials are designed to enhance material properties, and the printing platform is an easy-to-use small-format printer. With these launches, the company aimed to aid its customers in accelerating additive manufacturing adoption.
• In November 2023, Autodesk Inc. announced the launch of Autodesk AI. This new technology is available in Autodesk products and is designed to provide customers with generative capabilities and intelligent assistance. With the launch of this new technology in Autodesk products, the company aimed to minimize errors by automating repetitive tasks and the needs of its customers.
• In February 2022, Dassault Systèmes has announced a strategic partnership with Cadence Design Systems, Inc. to provide integrated solutions for the development of high-performance electronic systems to enterprise customers in a variety of vertical markets, such as high tech, industrial equipment, and transportation and mobility, aerospace and defense, and healthcare.
#3d Printing Market#3d Printing Market size#3d Printing Market share#3d Printing Market analysis#3d Printing Industry
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3D Printing Gases Market Size, Share, Trends, Growth and Competitive Outlook
"Global 3D Printing Gases Market – Industry Trends and Forecast to 2029
Global 3D Printing Gases Market, By Type (Argon, Nitrogen, Gas Mixtures), Technology (Stereolithography, Laser Sintering, Poly-Jet Technology, Others), Storage (Cylinder and Packaged Distribution, Merchant Liquid Distribution, Tonnage Distribution), Function (Insulation, Illumination, Cooling), End-Use industry (Design and Manufacturing, Healthcare, Consumer Products, Others) – Industry Trends and Forecast to 2029.
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**Segments**
- **Gas Type** - Nitrogen - Argon - Gas Mixture
- **Technology** - Stereolithography (SLA) - Fused Deposition Modeling (FDM) - Selective Laser Sintering (SLS) - Direct Metal Laser Sintering (DMLS) - Electron Beam Melting (EBM)
- **End-Use Industry** - Aerospace & Defense - Healthcare - Automotive - Consumer Goods - Others
The 3D printing gases market can be segmented based on gas type, technology, and end-use industry. In terms of gas type, the market is divided into nitrogen, argon, and gas mixtures. Nitrogen is commonly used as a shielding gas to prevent oxidation during metal printing processes. Argon is favored for its inert properties, ensuring a stable printing environment. Gas mixtures are tailored to specific requirements of different 3D printing technologies. Regarding technology, the market is segmented into stereolithography (SLA), fused deposition modeling (FDM), selective laser sintering (SLS), direct metal laser sintering (DMLS), and electron beam melting (EBM). Each technology demands specific gases for optimal printing results. Furthermore, the end-use industry segment includes aerospace & defense, healthcare, automotive, consumer goods, and others, reflecting diverse applications and demand drivers across various sectors.
**Market Players**
- Linde plc - Air Liquide - Air Products and Chemicals, Inc. - Praxair Technology, Inc. - Iwatani Corporation - Messer Group - Taiyo Nippon Sanso Corporation - Matheson Tri-Gas, Inc. - Iceblick Ltd. - Gulf Cryo
The 3D printing gases market features several key players that contribute significantly to its growth and development. Companies such as Linde plc, Air Liquide, and Air ProductsThe 3D printing gases market is driven by the increasing adoption of 3D printing technologies across various industries, creating opportunities for market players to offer specialized gases tailored to specific printing processes. Among the key players in this market are Linde plc, a global industrial gases and engineering company, known for its expertise in providing cutting-edge solutions for additive manufacturing applications. Air Liquide, another major player, offers a wide range of gases and services to support the growing needs of the 3D printing industry. Air Products and Chemicals, Inc., with its extensive portfolio of industrial gases and related technologies, also plays a significant role in fueling the market's growth.
Praxair Technology, Inc., Iwatani Corporation, Messer Group, Taiyo Nippon Sanso Corporation, Matheson Tri-Gas, Inc., Iceblick Ltd., and Gulf Cryo are among the other key players in the 3D printing gases market. These companies bring in-depth expertise and innovative solutions to meet the specific gas requirements of different 3D printing technologies and end-use industries. As the demand for advanced 3D printing applications continues to rise, these market players are focusing on research and development activities to introduce new gases and technologies that can enhance printing efficiency, quality, and sustainability.
The aerospace & defense industry is a significant end-use segment for 3D printing gases, with applications ranging from prototyping to manufacturing critical components. Healthcare is another key sector driving the demand for 3D printing gases, particularly in the production of customized medical devices and implants. The automotive industry is also increasingly adopting 3D printing technologies for rapid prototyping and production of lightweight components. In the consumer goods segment, 3D printing gases are utilized for creating innovative designs and personalized products, catering to changing consumer preferences.
The market players in the 3D printing gases industry are focusing on strategic partnerships, collaborations, and acquisitions to expand their product offerings and strengthen their market presence. By leveraging their expertise in gas technology**Global 3D Printing Gases Market**
- **By Type (Argon, Nitrogen, Gas Mixtures)** - **Technology (Stereolithography, Laser Sintering, Poly-Jet Technology, Others)** - **Storage (Cylinder and Packaged Distribution, Merchant Liquid Distribution, Tonnage Distribution)** - **Function (Insulation, Illumination, Cooling)** - **End-Use industry (Design and Manufacturing, Healthcare, Consumer Products, Others)**
The global 3D printing gases market is witnessing significant growth attributed to the increasing adoption of 3D printing technologies across various industries. The market is segmented based on gas type, technology, storage, function, and end-use industry. Nitrogen, argon, and gas mixtures are the prominent gas types utilized in the industry, each catering to specific requirements of different printing processes. Technological segments such as stereolithography, laser sintering, and poly-jet technology drive the demand for specialized gases for optimal printing results. The storage of these gases is crucial, with distribution options including cylinder and packaged distribution, merchant liquid distribution, and tonnage distribution. Additionally, gases play essential functions in insulation, illumination, and cooling processes within the 3D printing environment. The end-use industry segment encompasses design and manufacturing, healthcare, consumer products, and others, reflecting diverse applications and growth opportunities in various sectors.
The market players in the 3D printing gases industry are key drivers of market
3D Printing Gases Key Benefits over Global Competitors:
The report provides a qualitative and quantitative analysis of the 3D Printing Gases Market trends, forecasts, and market size to determine new opportunities.
Porter’s Five Forces analysis highlights the potency of buyers and suppliers to enable stakeholders to make strategic business decisions and determine the level of competition in the industry.
Top impacting factors & major investment pockets are highlighted in the research.
The major countries in each region are analyzed and their revenue contribution is mentioned.
The market player positioning segment provides an understanding of the current position of the market players active in the Personal Care Ingredients
Table of Content:
Part 01: Executive Summary
Part 02: Scope of the Report
Part 03: Global 3D Printing Gases Market Landscape
Part 04: Global 3D Printing Gases Market Sizing
Part 05: Global 3D Printing Gases Market Segmentation By Product
Part 06: Five Forces Analysis
Part 07: Customer Landscape
Part 08: Geographic Landscape
Part 09: Decision Framework
Part 10: Drivers and Challenges
Part 11: Market Trends
Part 12: Vendor Landscape
Part 13: Vendor Analysis
Critical Insights Related to the 3D Printing Gases Included in the Report:
Exclusive graphics and Illustrative Porter’s Five Forces analysis of some of the leading companies in this market
Value chain analysis of prominent players in the market
Current trends influencing the dynamics of this market across various geographies
Recent mergers, acquisitions, collaborations, and partnerships
Revenue growth of this industry over the forecast period
Marketing strategy study and growth trends
Growth-driven factor analysis
Emerging recess segments and region-wise market
An empirical evaluation of the curve of this market
Ancient, Present, and Probable scope of the market from both prospect value and volume
The investment made in the study would provide you access to information such as:
3D Printing Gases Market [Global – Broken-down into regions]
Regional level split [North America, Europe, Asia Pacific, South America, Middle East & Africa]
Country wise Market Size Split [of important countries with major market share]
Market Share and Revenue/Sales by leading players
Market Trends – Emerging Technologies/products/start-ups, PESTEL Analysis, SWOT Analysis, Porter’s Five Forces, etc.
Market Size)
Market Size by application/industry verticals
Market Projections/Forecast
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3D Drawing Doodle Printing Pen Market Market Size, Share, and Comprehensive Industry Analysis 2024-2032
3D Drawing Doodle Printing Pen Market Insights
Reed Intelligence has recently added a new report to its vast depository titled Global 3D Drawing Doodle Printing Pen Market. The report studies vital factors about the Global 3D Drawing Doodle Printing Pen Market that are essential to be understood by existing as well as new market players. The report highlights the essential elements such as market share, profitability, production, sales, manufacturing, advertising, technological advancements, key market players, regional segmentation, and many more crucial aspects related to the 3D Drawing Doodle Printing Pen Market.
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3D Drawing Doodle Printing Pen Market Share by Key Players
Zhuhai Sunlu Industrial
WobbleWorks (3Doodler)
Scribbler
7Tech
MYNT3D
Myriwell
LIX PEN LTD
3DSimo
CreoPop
FUTURE MAKE Technology
XYZprinting
Soyan
Shenzhen Dewang High-tech
Lay3r
Important factors like strategic developments, government regulations, market analysis, end users, target audience, distribution network, branding, product portfolio, market share, threats and barriers, growth drivers, latest trends in the industry are also mentioned.
3D Drawing Doodle Printing Pen Market Segmentation
The report on Global 3D Drawing Doodle Printing Pen Market provides detailed segmentation by type, applications, and regions. Each segment provides information about the production and manufacturing during the forecast period of 2024-2032. The application segment highlights the applications and operational processes of the industry. Understanding these segments will help identify the importance of the various factors aiding to the market growth.
The report is segmented as follows:
Segment by Type
Fused Deposition Modelling (Fdm)
Stereo Lithography Appearance 3D Printing Pen
Segment by Application
Architects & Designers
Kids & Hobbyists
3D Drawing Doodle Printing Pen Market Segmentation by Region
North America
U.S.
Canada
Europe
Germany
UK
France
Asia Pacific
China
India
Japan
Australia
South Korea
Latin America
Brazil
Middle East & Africa
UAE
Kingdom of Saudi Arabia
South Africa
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The market research report on the Global 3D Drawing Doodle Printing Pen Market has been carefully curated after studying and observing various factors that determine the growth, such as environmental, economic, social, technological and political status of the regions mentioned. Thorough analysis of the data regarding revenue, production, and manufacturers gives out a clear picture of the global scenario of the 3D Drawing Doodle Printing Pen Market. The data will also help key players and new entrants understand the potential of investments in the Global 3D Drawing Doodle Printing Pen Market.
Key Highlights
It provides valuable insights into the Global 3D Drawing Doodle Printing Pen Market.
Provides information for the years 2024-2032. Important factors related to the market are mentioned.
Technological advancements, government regulations, and recent developments are highlighted.
This report will study advertising and marketing strategies, market trends, and analysis.
Growth analysis and predictions until the year 2032.
Statistical analysis of the key players in the market is highlighted.
Extensively researched market overview.
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#3D Drawing Doodle Printing Pen Market Size#3D Drawing Doodle Printing Pen Market Share#3D Drawing Doodle Printing Pen Market Growth#3D Drawing Doodle Printing Pen Market Trends#3D Drawing Doodle Printing Pen Market Players
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Rapid Liquid Printing Market is in trends by enhancing supply chain resilience
Rapid liquid printing, also known as 3D printing with liquid materials, is an additive manufacturing technique that involves depositing liquid photopolymers layer by layer under a printhead to create 3D objects. The liquid photopolymer materials used in rapid liquid printing quickly solidify when exposed to light of a specific wavelength, allowing high-resolution parts and complex geometries to be produced. Rapid liquid printing offers several advantages such as the ability to produce intricate geometries and customized parts with greater precision. The technology allows limitless design possibilities and on-demand manufacturing, eliminating warehousing and shipping costs. It also minimizes material wastage and is more eco-friendly than traditional manufacturing processes.
The rapid liquid printing market is estimated to be valued at USD 60.7 Mn in 2024 and is expected to reach USD 251.5 Mn by 2031, growing at a compound annual growth rate (CAGR) of 22.5% from 2024 to 2031.
Key Takeaways
Key players operating in the Rapid Liquid Printing Market are 3D Systems, Inc., Stratasys , EnvisionTEC, ExOne , Rapid Liquid Print Company, EOS GmbH, Optomec, Inc., Dassault Systèmes, Materialise , Autodesk Inc., Carbon, Inc. , Asiga, Nexa3D , HP Development Company, L.P., Meltio3D. Major players are investing significantly in R&D to enhance process capabilities and develop new photopolymer materials with diverse properties.
The growing Rapid Liquid Printing Market Size for customized and personalized products across industries such as healthcare, automotive, consumer goods is a major factor driving the growth of the market. Rapid liquid printing allows low-volume manufacturing with mass personalization.
Global economic uncertainties have disrupted traditional supply chain models and heightened the need for distributed and on-demand manufacturing approaches such as rapid liquid printing, closer to the point of use. Customized parts can be 3D printed on-demand to enhance supply chain resilience.
Market key trends
Development of new photopolymers with improved properties is a key trend in the rapid liquid printing market. Existing materials have limitations in terms of chemical, mechanical, thermal properties and biocompatibility. New polymers are being developed to make liquid 3D printing suitable for high-volume production. Nanoparticle-enhanced photopolymers with superior strength and temperature resistance allow Rapid Liquid Printing Market Size and Trends to be used for functional prototypes and end-use parts.
Porter’s Analysis
Threat of new entrants: Low Start-up costs for new 3D printing technologies can threaten existing firms. However, established players have significant resources and customer base to withstand new competition.
Bargaining power of buyers: Moderate. Buyers have many options but are limited by stringent technical and regulatory standards required for medical and industrial applications.
Bargaining power of suppliers: Low. Suppliers of 3D printing materials and software have limited bargaining power due to availability of alternatives and integration between hardware and materials.
Threat of new substitutes: Moderate. Other additive manufacturing technologies like SLS and FDM provide substitutes but do not match resolution and versatility of liquid-based printing.
Competitive rivalry: High. Major players aggressively compete on price, technology and customer support leading to continuous innovation.
Geographical Regions
North America accounts for largest share of the liquid printing market currently, due to strong demand from medical, industrial and consumer sectors. Major research institutes in the US and availability of advanced infrastructure support growth in the region.
Asia Pacific is projected to grow at the fastest rate during the forecast period. Government support for additive manufacturing through funding and policy initiatives in China, India and other Asian countries is driving higher adoption of liquid printing technologies across industries. Emerging applications in consumer goods will further accelerate regional market expansion.
Get more insights on Rapid Liquid Printing Market
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#Coherent Market Insights#Rapid Liquid Printing Market#Rapid Liquid Printing#3D Printing#Additive Manufacturing#Advanced Manufacturing#Liquid Printing#Rapid Prototyping#Industrial Design#Digital Fabrication#Innovative Printing
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Informative Report on India 3 D Printing Market | BIS Research
3D printing, also known as additive manufacturing, is a process of creating three-dimensional objects from a digital file. The creation of a 3D-printed object is achieved using additive processes, where successive layers of material are laid down in different shapes
BIS Research, recognized as a best market research company, provides premium market intelligence reports on deep technologies poised to cause significant market disruption in the coming years.
At BIS Research, we focus exclusively on technologies related to precision medicine, medical devices, life sciences, artificial intelligence (AI), machine learning (ML), Internet of Things (IoT), big data, blockchain technology, 3D printing, advanced materials and chemicals, agriculture and FoodTech, mobility, robotics, and aerospace and defense, among others.
3D Printing Overview
3D Printing technology in India is revolutionizing the conventional manufacturing industry, owing to its huge advantages. The technology allows printing with a suitable range of materials in less time. The conventional methods which are used to develop models, prototypes or direct parts usually are costlier and time consuming. Heavily weighted components which are usually manufactured by conventional methods can now be 3D printed with lighter materials.
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3D printing technology has made substantial advancements in developed countries like the U.S, Europe and now thriving in India. The market in India is growing at a rate of 20%. Automotive and electronics hold the highest share in the Indian 3D printing market, while healthcare, aerospace and defense sectors are witnessing higher growth too.
Uses of 3 D Printing Market
Prototyping
Manufacturing
Healthcare
Aerospace
Automotive
Consumer goods
Key Applications for 3 D Printing Market
Rapid Prototyping- Quick creation of prototypes for product design and testing.
Manufacturing- Low-volume production of custom parts.
Healthcare- Custom medical implants and prosthetics.
Aerospace - Lightweight, complex components for aircraft and spacecraft.
The major 3D printing applications in India are also analyzed in the report, which include Automotive and Electronics, Aerospace and Defense, Healthcare, Fashion, Art, Aesthetics, and Others, which include engineering, lifestyle, food, and architecture among others. The Electronics & Automobile industry in India contributes significantly to the overall GDP of the nation. Therefore, the use of 3D printing technology in this market segment has a higher share as compared to the other industry verticals. The Healthcare and Aerospace & Defense sectors are also growing rapidly.
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Market Segmentation for 3 D Printing Market
1 By Printer Type:
Desktop 3D Printers: Typically used by hobbyists, educators, and small businesses for prototyping and small-scale projects.
2 By Technology:
Fused Deposition Modeling (FDM): Popular for its affordability and ease of use. Commonly used in education, hobbyist projects, and basic prototyping.
3 By Material:
Plastics: The most common material used, including ABS, PLA, PETG, and more. Used in prototyping, consumer goods, and educational projects.
Metals: Includes stainless steel, titanium, aluminum, and others. Used in aerospace, automotive, and medical industries.
Market Drivers for 3 D Printing Market
Cost Efficiency and Reduction
Design Flexibility and Customization
Reduction in Supply Chain Complexity
Material Advancements
Visit our 3 D Printing Page Click here !
Key Players
HP Inc
ExOne
Stratasys Ltd
Materials NV
Conclusion
The 3D printing market in India is poised for significant growth, driven by increasing adoption across various industries such as automotive, aerospace, healthcare, and consumer goods.
Addressing these barriers through strategic partnerships, skill development programs, and favorable regulatory frameworks will be crucial for unlocking the full potential of 3D printing in India.
With advancements in technology and a growing emphasis on local manufacturing capabilities, the market is set to witness expanded applications and enhanced accessibility.
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Unveiling the Opportunities in the 3D Printed Jewelry Market
The "3D Printed Jewelry Market" is a dynamic and rapidly evolving sector, with significant advancements and growth anticipated by 2031. Comprehensive market research reveals a detailed analysis of market size, share, and trends, providing valuable insights into its expansion. This report delves into segmentation and definition, offering a clear understanding of market components and drivers. Employing SWOT and PESTEL analyses, the study evaluates the market's strengths, weaknesses, opportunities, and threats, alongside political, economic, social, technological, environmental, and legal factors. Expert opinions and recent developments highlight the geographical distribution and forecast the market's trajectory, ensuring a robust foundation for strategic planning and investment.
What is the projected market size & growth rate of the 3D Printed Jewelry Market?
Market Analysis and Size
In the realm of art and design, the application of 3D printed jewelry expands creative possibilities exponentially. Artists and designers utilize this technology to experiment with unconventional shapes, intricate patterns, and avant-garde aesthetics that defy traditional jewelry-making constraints. Harnessing the precision and versatility of 3D printing allows them to transform abstract concepts into tangible, wearable art forms, pushing the boundaries of design innovation. This fusion of technology and creativity enables the production of one-of-a-kind jewelry pieces that serve as expressions of individuality and artistic vision.
Global 3D printed jewelry market size was valued at USD 9.38 billion in 2023 and is projected to reach USD 25.82 billion by 2031, with a CAGR of 13.50% during the forecast period of 2024 to 2031. In addition to the market insights such as market value, growth rate, market segments, geographical coverage, market players, and market scenario, the market report curated by the Data Bridge Market Research team includes in-depth expert analysis, import/export analysis, pricing analysis, production consumption analysis, and consumer behaviour.
Browse Detailed TOC, Tables and Figures with Charts which is spread across 350 Pages that provides exclusive data, information, vital statistics, trends, and competitive landscape details in this niche sector.
This research report is the result of an extensive primary and secondary research effort into the 3D Printed Jewelry market. It provides a thorough overview of the market's current and future objectives, along with a competitive analysis of the industry, broken down by application, type and regional trends. It also provides a dashboard overview of the past and present performance of leading companies. A variety of methodologies and analyses are used in the research to ensure accurate and comprehensive information about the 3D Printed Jewelry Market.
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Which are the driving factors of the 3D Printed Jewelry market?
The driving factors of the 3D Printed Jewelry market include technological advancements that enhance product efficiency and user experience, increasing consumer demand driven by changing lifestyle preferences, and favorable government regulations and policies that support market growth. Additionally, rising investment in research and development and the expanding application scope of 3D Printed Jewelry across various industries further propel market expansion.
3D Printed Jewelry Market - Competitive and Segmentation Analysis:
Global 3D Printed Jewelry Market, By Technology (Stereolithography (SLA), Selective Laser Sintering (SLS), Digital Light Processing (DLP), Fused Depositing Modelling (FDM), Others), End User (Jewelry Store, Mall, Others), Application (Prototyping, Functional Part Manufacturing, Tooling), Material (Gold, Silver, Brass, Bronze, Polyamide, Wax, Alumide, Others) – Industry Trends and Forecast to 2031.
How do you determine the list of the key players included in the report?
With the aim of clearly revealing the competitive situation of the industry, we concretely analyze not only the leading enterprises that have a voice on a global scale, but also the regional small and medium-sized companies that play key roles and have plenty of potential growth.
Which are the top companies operating in the 3D Printed Jewelry market?
Some of the major players operating in the market are:
Imaginarium (India)
MIRAKIN (India)
EnvisionTEC (Germany)
NERVOUS SYSTEM, INC. (U.S.)
RADIAN (Germany)
Shapeways, Inc. (U.S.)
Stratasys (Israel)
Materialise (Belgium)
ExOne (U.S.)
3D Systems, Inc. (U.S.)
Asiga (Australia)
GUY&MAX (U.K.)
Diana Law Printed Accessories (U.S.)
Short Description About 3D Printed Jewelry Market:
The Global 3D Printed Jewelry market is anticipated to rise at a considerable rate during the forecast period, between 2024 and 2031. In 2023, the market is growing at a steady rate and with the rising adoption of strategies by key players, the market is expected to rise over the projected horizon.
North America, especially The United States, will still play an important role which can not be ignored. Any changes from United States might affect the development trend of 3D Printed Jewelry. The market in North America is expected to grow considerably during the forecast period. The high adoption of advanced technology and the presence of large players in this region are likely to create ample growth opportunities for the market.
Europe also play important roles in global market, with a magnificent growth in CAGR During the Forecast period 2024-2031.
3D Printed Jewelry Market size is projected to reach Multimillion USD by 2031, In comparison to 2024, at unexpected CAGR during 2024-2031.
Despite the presence of intense competition, due to the global recovery trend is clear, investors are still optimistic about this area, and it will still be more new investments entering the field in the future.
This report focuses on the 3D Printed Jewelry in global market, especially in North America, Europe and Asia-Pacific, South America, Middle East and Africa. This report categorizes the market based on manufacturers, regions, type and application.
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What are your main data sources?
Both Primary and Secondary data sources are being used while compiling the report. Primary sources include extensive interviews of key opinion leaders and industry experts (such as experienced front-line staff, directors, CEOs, and marketing executives), downstream distributors, as well as end-users. Secondary sources include the research of the annual and financial reports of the top companies, public files, new journals, etc. We also cooperate with some third-party databases.
Geographically, the detailed analysis of consumption, revenue, market share and growth rate, historical data and forecast (2024-2031) of the following regions are covered in Chapters
What are the key regions in the global 3D Printed Jewelry market?
North America (United States, Canada and Mexico)
Europe (Germany, UK, France, Italy, Russia and Turkey etc.)
Asia-Pacific (China, Japan, Korea, India, Australia, Indonesia, Thailand, Philippines, Malaysia and Vietnam)
South America (Brazil, Argentina, Columbia etc.)
Middle East and Africa (Saudi Arabia, UAE, Egypt, Nigeria and South Africa)
This 3D Printed Jewelry Market Research/Analysis Report Contains Answers to your following Questions
What are the global trends in the 3D Printed Jewelry market?
Would the market witness an increase or decline in the demand in the coming years?
What is the estimated demand for different types of products in 3D Printed Jewelry?
What are the upcoming industry applications and trends for 3D Printed Jewelry market?
What Are Projections of Global 3D Printed Jewelry Industry Considering Capacity, Production and Production Value? What Will Be the Estimation of Cost and Profit? What Will Be Market Share, Supply and Consumption? What about Import and Export?
Where will the strategic developments take the industry in the mid to long-term?
What are the factors contributing to the final price of 3D Printed Jewelry?
What are the raw materials used for 3D Printed Jewelry manufacturing?
How big is the opportunity for the 3D Printed Jewelry market?
How will the increasing adoption of 3D Printed Jewelry for mining impact the growth rate of the overall market?
How much is the global 3D Printed Jewelry market worth? What was the value of the market In 2020?
Who are the major players operating in the 3D Printed Jewelry market? Which companies are the front runners?
Which are the recent industry trends that can be implemented to generate additional revenue streams?
What Should Be Entry Strategies, Countermeasures to Economic Impact, and Marketing Channels for 3D Printed Jewelry Industry?
Customization of the Report
Can I modify the scope of the report and customize it to suit my requirements? Yes. Customized requirements of multi-dimensional, deep-level and high-quality can help our customers precisely grasp market opportunities, effortlessly confront market challenges, properly formulate market strategies and act promptly, thus to win them sufficient time and space for market competition.
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Detailed TOC of Global 3D Printed Jewelry Market Insights and Forecast to 2031
Introduction
Market Segmentation
Executive Summary
Premium Insights
Market Overview
3D Printed Jewelry Market By Type
3D Printed Jewelry Market By Function
3D Printed Jewelry Market By Material
3D Printed Jewelry Market By End User
3D Printed Jewelry Market By Region
3D Printed Jewelry Market: Company Landscape
SWOT Analysis
Company Profiles
Continued...
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#3D Printed Jewelry Market#3D Printed Jewelry Market Size#3D Printed Jewelry Market Share#3D Printed Jewelry Market Trends
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Aerospace 3D Printing Market Surges with Rise in Lightweight Component Demand
Rapid prototyping in the aerospace sector and the increase in the utilization of light weight components is driving the Global Aerospace 3D Printing Market.
According to TechSci Research report, “Aerospace 3D Printing Market- Global Industry Size, Share, Trends, Competition, Opportunity, and Forecast, 2018-2030”. Global Aerospace 3D Printing market is growing because traditional materials are being replaced with new, lightweight, high-strength materials, which is an efficient way to achieve the goals of lowering emissions, using fewer materials, and improving fuel efficiency. The 3D printed components are highly used for rapid prototyping in the aerospace industry and the companies have started using engine components made from a 3D printed process. In addition to manufacturing expenses, maintenance costs can be decreased as well because 3D-printed parts require less maintenance.
Other than material expenses, the price of printing 10 pieces of the same product versus 10 pieces of ten distinct products is the same. The addictive manufacturing process is helping in making the components cost effective and light weight. All these factors are driving the growth of the global Aerospace 3D Printing Market during the forecast period.
To increase the usage of 3D-printed parts and components in more advanced aircraft and spacecraft, several aerospace OEMs are now funding extensive research programs. Additionally, the adoption of 3D-printed parts is expanding in the aftermarket sector since doing so could ease the strain on conventional supply networks. period. The advantages that 3D printing provides have made it more widely accepted in the aviation industry. With shorter lead times, lower prices, and more digitally flexible design and development techniques, 3D printing generates parts.
Both customers and manufacturers experience significant cost savings because of the adoption of 3D printing. However, the COVID-19 has impacted the industry as because of lockdowns and other curbs all the manufacturing process was hampered, and this has resulted in the decline in the growth of the market. However, in the forecast years the Global Aerospace 3D Printing Market will exhibit higher growth rate.
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The Global Aerospace 3D Printing Market is segmented based on application, material type, printer technology type, by region, and by company. Based on application, the market is further divided into aircraft, unmanned aerial vehicles, & spacecraft. Based on material, the market is bifurcated into alloys & special metals. On the basis of printer technology, the market is further segmented into SLA, FDM, DMLS, SLS, CLIP and others.
Some of the major companies operating in the Global Aerospace 3D Printing Market include:
Aerojet Rocketdyne Holdings Inc.
MTU Aero Engines AG
GE Aviation
Stratasys, Ltd.
The Exone Company,
Materialise NV
3D Systems, Inc
Hoganas AB
Envisiontec GmbH
EOS GmbH
These are the key players developing advanced technologies and launching new products to stay competitive in the market. Other competitive strategies include mergers with the research and development firms, new product developments, and marketing activities to increase customer outreach. These companies are also focusing on meeting the regulations of different regional governments and are also partnering with different defense research bodies to stay competitive in the market.
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“In the next few years, 3D printing is anticipated to develop into a speedy method for producing low-volume parts that can be used in the mass manufacturing of the components of big metal and the process is also used in the prototyping of the component. The advancements and technological innovations in the industry is expected drive Global Aerospace 3D Printing Market growth” said Mr. Karan Chechi, Research Director with TechSci Research, a research-based global management consulting firm.
“Aerospace 3D Printing Market- Global Industry Size, Share, Trends, Competition, Opportunity, and Forecast, 2018-2030” has evaluated the future growth potential of Global Aerospace 3D Printing Market and provides statistics & information on market size, structure, and future market growth. The report intends to provide cutting-edge market intelligence and help decision makers take sound investment decisions. Besides, the report also identifies and analyzes the emerging trends along with essential drivers, challenges, and opportunities in the global Aerospace 3D Printing Market.
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#Aerospace 3D Printing Market#Aerospace 3D Printing Market Size#Aerospace 3D Printing Market Share#Aerospace 3D Printing Market Trends#Aerospace 3D Printing Market Growth
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4D Printing in Healthcare Market Analysis and Industry Research Report to 2031
Offering an in-depth analysis, the healthcare 4D printing market report outlines prevailing trends, challenges, opportunities, and growth prospects. This pioneering technology transcends conventional 3D printing by integrating materials capable of dynamic responses to external stimuli like temperature, moisture, or light. Consequently, it revolutionizes personalized medicine, tissue engineering, drug delivery systems, and medical devices. The report examines key market players, recent advancements in R&D, regulatory frameworks, and future projections. With mounting investments in advanced manufacturing and increasing demand for customized medical solutions, the 4D printing healthcare market is on track for substantial growth.
The latest report on the 4D Printing in Healthcare Market by SNS Insider reveals that the market size was valued at USD 8.20 billion in 2022 and is anticipated to soar to USD 14.96 billion by 2030. The market is projected to grow at a CAGR of 7.8% during the forecast period 2023-2030.
The report, titled "4D Printing in Healthcare Market Size, Share & Segmentation By Component Type (Equipment, 3D Printers, 3D Bioprinters, Programmable Materials, Shape-Memory Materials, Hydrogels, Living Cells, Software & Services), By Technology Type (FDM, PolyJet, Stereolithography, SLS), By Application (Medical Models, Surgical Guides, Patient-Specific Implants), By End-User (Hospitals & Clinics, Dental Laboratories), By Regions And Global Forecast 2023-2030," offers a comprehensive analysis of key market trends, drivers, challenges, and opportunities shaping the future of 4D printing in healthcare.
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Key Highlights:
Market Size: The 4D Printing in Healthcare market size reached USD 8.20 billion in 2022 and is poised to achieve USD 14.96 billion by 2030, indicating substantial growth prospects.
Growth Rate: With a CAGR of 7.8% over the forecast period 2023-2030, the market demonstrates a steady growth trajectory, driven by technological advancements and increasing applications across the healthcare sector.
Segmentation Analysis: The report provides detailed segmentation of the market based on component type, technology type, application, end-user, and regions, offering valuable insights into specific market segments and their growth potential.
Technological Advancements: Rapid advancements in 4D printing technologies, including FDM, PolyJet, Stereolithography, and SLS, are revolutionizing the healthcare industry by enabling the production of complex medical models, surgical guides, and patient-specific implants with enhanced precision and customization.
End-User Adoption: Hospitals & Clinics and Dental Laboratories emerge as prominent end-users of 4D printing technology, leveraging its capabilities to improve patient care, optimize surgical procedures, and enhance treatment outcomes.
Regional Outlook: The report evaluates the market landscape across key regions, including North America, Europe, Asia Pacific, Latin America, and the Middle East & Africa, identifying lucrative opportunities and growth prospects in each region.
#4d printing in healthcare market#4d printing in healthcare market trends#4d printing in healthcare market size#4d printing in healthcare market analysis#4d printing in healthcare market growth
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Aerospace 3D Printing Market Analysis 2029
The global aerospace 3D printing market size stood at USD 2.66 billion in 2021. The market is anticipated to rise from USD 2.94 billion in 2022 to USD 8.35 billion in 2029, at a 16.07% CAGR during the forecasted period. Fortune Business Insights™ has deep-dived these inputs in its latest research report, titled, “Aerospace 3D Printing Market, 2023-2029.”
According to the study, surging demand for low-weight components will drive innovations across emerging and advanced economies. For instance, carbon fiber materials and shape memory alloys have become trendier to minimize aircraft’s weight. With the need for fuel-saving gaining prominence, industry players will continue to invest in the portfolio.
COVID-19 Impact
Plunge in Aircraft Manufacturing Challenged Industry Growth
End-users strived to overcome challenges emanating from the COVID-19 pandemic, largely due to a shortage of raw materials and a dip in aircraft manufacturing. Although companies, such as Stratasys, contemplated producing medical equipment for hospitals, the customer base grappled with boosting the financial commitment. Meanwhile, robust government policies and investment in cutting-edge R&D could play a pivotal role in surmounting complexities stemming from the pandemic.
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Report Coverage
The report offers a comprehensive perspective of the market size, share, revenue and volume. It has deep-dived into SWOT analysis. Quantitative and qualitative assessments have provided a holistic view of the market. The primary interviews validate assumptions, findings and the prevailing business scenarios. The report also includes secondary resources, such as annual reports, press releases, white papers and journals.
Segmentations
Material Segment to Gain Traction from Rising Demand for High strength-to-weight Ratio Materials
In terms of vertical, the market is segregated into material and printer. The material segment could account for the highest share of the global market. The growth is partly attributed to the strong demand for high strength-to-weight ratio materials.
Aircraft to Exhibit Profound Demand Due to Rising Footfall of 3D printed Parts
With respect to industry, the market is segmented into spacecraft, aircraft and UAV. The aircraft segment will contribute a significant CAGR towards the global market, partly due to the need for equipment deliveries and the demand for 3D printed parts.
Space Component to Depict Strong Demand Due to Rising Number of 3D Printer Deliveries
On the basis of application, the market is classified into space component, engine component and structural components. Stakeholders expect the space component segment to boost industry growth in the wake of a surging number of aerospace 3D printer deliveries for space components.
Fused Deposition Modeling (FDM) to be Sought-after for Efficiency
Based on the printer technology, the industry is divided into Fused Deposition Modeling (FDM), Stereolithography (SLA), Direct Metal Laser Sintering (DMLS), Continuous Liquid Interface Production (CLIP), Selective Laser Sintering (SLS) and others. The fused deposition modeling segment will grow due to increased efficiency and money-saving attributes.
Drivers and Restraints
Strong Demand for Composite Materials to Boost Industry Growth
Aerospace 3D printing market growth will be pronounced during the forecast period, largely due to bullish demand from composite materials. Expanding applications, such as wing assemblies, beech starship, propellers and helicopter rotor blades, will augur well for the industry growth. Besides, additive manufacturing will gain impetus in space applications. An upsurge in research and development activities will encourage investments in the ensuing period. Prominently, the European Space Agency (ESA) is contemplating 3D printing their base on the moon, auguring well for the industry outlook. However, increased time consumption and the high cost of parts could dent the industry growth.
Regional Insights
North America to Provide Lucrative Opportunities with Bullish Adoption of Additive Manufacturing
The trend for additive manufacturing will continue to receive traction across the U.S. and Canada over the next few years. The growth is mainly attributed to the rising demand for space exploration and aircraft programs. North America market size stood at USD 1.17 billion in 2021 and will witness a similar trend on the back of the strong adoption of aerospace 3D printers across the region.
Asia Pacific aerospace 3D printing market share will be robust against the backdrop of increased adoption of aerospace 3D printers across Japan, China and India. Moreover, leading players will continue to exhibit an exponential demand for small components in space and aircraft systems.
Industry participants expect Europe to contribute notably toward the global market in the wake of the rollout of advanced technologies across the region. Advanced economies are poised to invest in aircraft programs to boost their portfolios across untapped areas.
Competitive Landscape
Stakeholders Prioritize Strategic Approaches to Boost Penetration
Prominent players could inject funds into mergers & acquisitions, product rollouts, technological advancements and R&D activities. Besides, major companies could invest in innovations and product offerings in the ensuing period.
Notable Industry Development
March 2022 – Relativity Space Inc is gearing up to build an entire rocket using state-of-the-art 3D printing technology.
Major Players Profiled in the Market Report:
3D Systems (U.S.)
Stratasys (Israel)
Materialise (Belgium)
EOS GmbH (Germany)
General Electric Company (U.S.)
CleanGreen3D (Mcor Technologies Limited) (U.S.)
Ultimaker BV (Netherlands)
Proto Labs, Inc. (U.S.)
Relativity Space (U.S.)
The ExOne Company (U.S.)
Voxeljet AG (Germany)
Velo 3D (U.S.)
SLM Solutions Group AG (Germany)
EnvisionTEC (U.S.)
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Aerospace 3D Printing Market Growth & Demand Analysis: 2028
Aerospace 3D Printing Market by Vertical (Materials, Printers) Industry (Aircraft, UAV, Spacecraft) Printers Technology (SLA, SLS, DMLS, FDM, Clip) Materials Application (Engine, Structural, & Space Components) and Geography (North America, Europe, Asia-Pacific, Middle East and Africa and South America)
The global Aerospace 3D printing market size is projected to reach USD 3,520 million by 2026 at a CAGR of 35% from USD 2,890 million in 2021 during the forecast period 2021-2028.
3D printing technologies have been recently used in aerospace industry. The major advantage achieved by the use of 3D printing I in the reduction of cost without compromising on the durability and other factors of the manufactured parts. It has also allowed significant reduction in weight and has thus helped in manufacturing light weight aircrafts.
Due to the increased demand for light parts and components from the aerospace industry along with the urgent need for low volume production from aerospace industry are some of the factors that have supported long-term expansion for Aerospace 3D Printing Market.
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Key Players
Stratasys Ltd.
3D Systems Corporation
The ExOne Company
Arcam AB
EOS GmbH
Recent Developments
In December 2017, HALCOR METAL WORKS S.A entered into a merger agreement with ELVAL HELLENIC ALUMINIUM INDUSTRY S.A., in order to combine their companies into one operating entity, under the name ELVALHALCOR. The merger's purpose is to synergize and strengthen both their growth prospects in the aluminum market of Europe. This development will enhance the line set market share of Halcor in the European region.
In February 2019, Daikin completed the acquisition of AHT Group (Austria), a leading company in the commercial refrigeration market in Europe. The acquisition will help Daikin in adding a range of products, services, and solutions based on its air conditioning and refrigeration equipment.
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Increase your understanding of the market for identifying the best and suitable strategies and decisions on the basis of sales or revenue fluctuations in terms of volume and value, distribution chain analysis, market trends and factors
Gain authentic and granular data access for Aerospace 3D Printing market so as to understand the trends and the factors involved behind changing market situations
Qualitative and quantitative data utilization to discover arrays of future growth from the market trends of leaders to market visionaries and then recognize the significant areas to compete in the future
In-depth analysis of the changing trends of the market by visualizing the historic and forecast year growth patterns
Report Scope
Aerospace 3D Printing Market is segmented into verticals, industry and geography.
On the basis of Verticals
Printers
Materials
On the basis of Industry
Aircraft
Unmanned Aerial Vehicles (UAVs)
Spacecraft
On the basis of Region
Asia Pacific
North America
Europe
South America
Middle East & Africa
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3D Printing Materials Market - Global Opportunity Analysis and Industry Forecast (2021-2028)
Meticulous Research®— a leading global market research company, published a research report titled “3D Printing Materials Market by Type (Polymer, Metal, Ceramics & Composites), Form (Filament, Liquid, Powder), Technology (FDM, SLA, Polyjet, Multijet, Binder Jetting, EBM), Application - Global Forecast to 2028”.
The 3D printing materials market is expected to grow at a CAGR of 26.7% by value from 2021 to reach $9.86 billion by 2028. The growth of this market is majorly attributed to factors such as growing demand for polymers in 3D printing, mass customization of various functional parts for industrial equipment, jewelry and consumer goods, and government initiatives to support the adoption of 3D printing. However, the high costs of 3D printing materials obstruct the growth of this market to some extent. Lack of awareness of 3D printing technology among supplies, buyers, users, and lack of skilled laborers to perform 3D printing operations is a major challenge for the growth of the 3D printing materials market.
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Scope of the Report
3D Printing Materials Market, by Type
· Polymer
o Photopolymer
o Polylactic Acid
o Acrylic Styrene
o Polyamide
o Polycarbonates
o Polypropylene
o Thermoplastic Elastomers
o Other Polymers
· Metal
o Steel
o Titanium
o Nickel
o Aluminum
o Copper
o Cobalt Chrome
o Other Metals
· Ceramics & Composites
3D Printing Materials Market, by Form
· Filament
· Liquid
· Powder
3D Printing Materials Market, by Technology
· Fused Deposition Modeling (FDM)
· Selective Laser Sintering (SLS)
· Stereolithography (SLA)
· Direct Metal Laser Sintering (DMLS)
· PolyJet
· Multi Jet Fusion
· Digital Light Processing (DLP)
· Binder Jetting
· Electron-beam Melting (EBM)
· Other Technologies
3D Printing Materials Market, by Application
· Consumer Products
o Electronic appliances
o Jewelry, Artistic Items, and Other Products
· Automotive Parts
· Industrial Application
o Equipment & Machines
o Goods & Materials
· Healthcare
· Aerospace & Defense
o Prototype Weapon
o Body & Spare parts
· Other Applications
3D Printing Materials Market, by Geography
· North America
o U.S.
o Canada
· Asia-Pacific (APAC)
o China
o Japan
o India
o South Korea
o Rest of APAC (RoAPAC)
· Europe
o Germany
o U.K.
o Italy
o France
o Russia
o Spain
o Rest of Europe
· Latin America
· Middle East & Africa (MEA)
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The market is segmented based on type, form, technology, application, and geography. The study also evaluates industry competitors and analyzes the market at the country level.
Based on type, the 3D printing materials market is mainly segmented into polymers, metals, and ceramics & composites. By value, in 2021, the polymers segment is expected to account for the largest share of the 3D printing materials market. The large share of this segment is mainly attributed to its properties such as lightweight, corrosion resistance, toughness, and high strength, increasing demand for 3D-printed retainers made from nylon (PA66) or other polymers to reduce bearing weight, and the use of polymers to manufacture live saving equipment during COVID-19 pandemic. However, the ceramics & composites segment is expected to grow at the highest CAGR during the forecast period.
Based on form, the 3D printing materials market is segmented into powders, filaments, and liquids. In 2021, the powders segment is expected to account for the largest share of the 3D printing materials market. The large share of this segment is mainly attributed to the high demand for designing animal prosthetics, increasing demand for processing various industrial metals by using powder-based additive manufacturing, and manufacturing of three-dimensional lithium-iron batteries. However, the filaments segment is expected to grow at the highest CAGR during the forecast period.
Based on technology, the 3D printing materials market is segmented into fused deposition modeling (FDM), selective laser sintering (SLS), stereolithography (SLA), direct metal laser sintering (DMLS), polyjet, multijet fusion, digital light processing (DLP), binder jetting, and electron-beam melting (EBM). The fused deposition modeling (FDM) segment is expected to account for the largest share of the 3D printing materials market in 2021. The large share of this segment is mainly attributed to the ability to adjust several process parameters, such as both nozzle and build platform temperatures, and growing demand for using high-performance thermoplastics in FDM technology to manufacture customized parts and prototypes. However, the EBM segment is expected to grow at the highest CAGR during the forecast period.
Speak with Our Analyst: https://www.meticulousresearch.com/speak-to-analyst/cp_id=5083 Based on application, the 3D printing materials market is segmented into consumer products, automotive parts, industrial applications, healthcare, and aerospace & defense. The consumer products segment is expected to account for the largest share of the 3D printing materials market in 2021. The large share of this segment is mainly attributed to factors such as growing demand for customized 3D printed consumer goods, high adoption of 3D printing technology by industrial designers, mechanical engineers, packaging designers, and graphic artists to understand the aesthetics and functional appeal of the products.
Geographically, North America is expected to account for the largest share of 3D printing materials in 2021. The large share of this market is mainly attributed to the presence of major 3D printing materials companies, namely 3D Systems Corporation (U.S.), Proto Labs, Ltd., (U.S.), The ExOne Company (US), HP INC. (U.S.), EnvisionTEC, Inc. (U.S.), Markforged, Inc. (U.S.), and Tethon 3D (U.S.) for high adoption of 3D printing technology for making orthopedic and cranial implants, surgical instruments, dental restorations such as crowns, and external prosthetics in the healthcare industry.
The key players operating in the 3D printing materials market are 3D Systems Corporation (U.S.), Proto Labs, Ltd., (U.S.), The ExOne Company (U.S.), HP INC. (U.S.), EnvisionTEC, Inc. (U.S.), Markforged, Inc. (U.S.), Tethon 3D (U.S.), Evonik Industries AG (Germany), Materialise NV (Belgium), EOS GmbH (Germany), Stratasys Ltd. (Israel), Zortrax (Poland), Sculpteo (France), Lithoz GmbH (Austria), and IC3D, LLC. (U.S.).
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Key Questions Answered in the Report-
· Which are the high-growth market segments in terms of type, form, technology, application, and geography?
· What is the historical market size for 3D printing materials across the globe?
· What are the market forecasts and estimates for the period 2021-2028?
· What are the major drivers, restraints, opportunities, and challenges in the 3D printing materials market?
· Who are the major players in the market, and what are their market shares?
· Who are the major players in various countries?
· How is the competitive landscape for the 3D printing materials market?
· What are the recent developments in the 3D printing materials market?
· What are the different strategies adopted by the major players in the market?
· What are the key geographic trends, and which are the high-growth countries?
· Who are the local emerging players in the 3D printing materials market, and how do they compete with other players?
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#3D Printing Materials Market#3D Printing Materials#3D Printing#Printing Materials Market#Chemicals and Materials#Chemicals#printing industry#printing#chemical industry#printing and packaging#automotive#electronics#consumer electronics#aerospace
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FDM vs SLS 3D Printing
FDM is the most commonly used 3D printing technology, while SLS is the second most commonly used 3D printing technology. But you should not consider market share data or installation base while choosing from FDM vs SLS 3D printing. Instead, you should focus on identifying the key differences between these widely-used additive manufacturing technologies.
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