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SBL Coatings is a leading wood coatings manufacturer in India, specializing in high-quality, eco-friendly solutions for wood protection and enhancement. With a strong commitment to innovation and sustainability, SBL offers a wide range of coatings designed for durability, aesthetics, and long-term performance. Their products cater to various industries, ensuring superior wood finishes and protection across diverse applications.
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Everything you should know about powder coating finishes?
Types of Powder Coating Finishes
Epoxy Coatings: Known for their excellent adhesion, hardness, and chemical resistance, epoxy coatings are ideal for indoor applications. However, they may yellow with UV exposure, making them less suitable for outdoor use.
Polyester Coatings: Offering superior UV resistance, polyester coatings are perfect for outdoor applications. They are flexible, impact-resistant, and available in a variety of colors and gloss levels.
Hybrid Coatings: Combining the benefits of epoxy and polyester, hybrid coatings provide good chemical and corrosion resistance along with better UV stability than pure epoxies.
Acrylic Coatings: These coatings are known for their excellent gloss retention, weather resistance, and aesthetic appeal. They are commonly used for automotive and architectural applications.
Benefits of Powder Coating
Durability: Powder coatings are highly resistant to chipping, scratching, and fading, providing long-lasting protection for the underlying metal.
Environmental Friendliness: Unlike liquid paints, powder coatings contain no solvents and release negligible amounts of volatile organic compounds (VOCs) into the atmosphere, making them an eco-friendly choice.
Cost-Effectiveness: The efficiency of the powder coating process, with minimal waste and the ability to recycle overspray, makes it a cost-effective finishing option.
Variety: Powder coatings can achieve a wide range of finishes, including smooth, textured, matte, and high-gloss. They are also available in an extensive array of colors, making customization easy.
What is Powder Coating? Powder coating is a dry finishing process that involves the application of a fine, free-flowing, thermoplastic or thermoset powder onto a surface. This powder is electrostatically charged and sprayed onto the object, which is then cured under heat to form a smooth, hard finish. This method is known for its durability, resistance to corrosion, and ability to produce a wide range of colors and textures.
Applications of Powder Coating Powder coating is used in various industries, including automotive, aerospace, electronics, architecture, and home appliances. Its ability to provide a robust and attractive finish makes it a preferred choice for everything from car parts and machinery to furniture and consumer goods.
Conclusion Asiam Coater excels. in delivering exceptional powder coating finishes tailored to meet specific requirements. Their expertise ensures that products not only look great but also withstand the test of time, providing superior performance and aesthetics. With a commitment to quality and sustainability, Asian Coater stands out as a leader in the powder coating industry.
For more Information:- Contact us:-+91–8882531837 Email:[email protected] Address:-F-516, UDSIDC, MG Road Industrial Area, Phase -II, Ghaziabad — 201015
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Powder Coatings Market to Reach US$ 21.0 Bn by End of 2031
The global powder coatings market is likely to expand at a CAGR of 6.6% between 2022 and 2031. Powder coating is a coating type generally applied as a dry, free-flowing powder. Powder coating is usually electrically charged before heating or exposing to ultraviolet light and then cured, as opposed to traditional liquid paint, which is applied using an evaporating solvent. Thermoplastic or thermoset polymers are used to make the powder in powder coatings and are typically used to achieve a hard finish, which is more durable than regular paint.
Utilization and demand for powder coatings is increasing in the automobile industry. Powder coatings have better corrosion resistance and abrasion resistance qualities. These could also help in resisting ultraviolet rays of the sun, acid rain, and offer protection from rain and weather damage too. These properties offered by powder coatings are likely to create business opportunities for manufacturers in the market during the forecast period.
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According to TMR report, the global powder coatings market was valued at US$ 11.8 Bn in 2021 and is anticipated to reach US$ 21 Bn by the end of 2031. Powder coatings have eco-friendly characteristics; hence, demand for these coatings is anticipated to rise significantly in the next few years.
Key Findings of Study
Government-imposed Stringent Environmental Regulations on Harmful Coatings: Various rules and regulations have been imposed on handling, storage, and transportation of multiple specimen chemicals and their effluents, emissions, and other pollutants. This has led to high demand for less harmful alternatives such as powder coatings. An added advantage of powder coatings is that these do not require any specific handling, storage, or transportation methods. Thus, the imposition of stringent environment regulations on harmful coatings is projected to propel powder coatings market expansion in the near future.
Increase in Demand in Automotive Industry: Powder coatings offer irresistible value proposition for consumers, and are thus gaining popularity in the automotive sector. Powder coating is used for automobile parts such as door handles, roof racks, and the interior & exterior trims to protect from rain and heat. Furthermore, low operational cost and corrosion & abrasion resistance are anticipated to increase popularity of powder coatings in the next few years. These factors are projected to create growth opportunities for the global powder coatings market during the forecast period.
Key Drivers
Rise in demand in the automotive industry is projected to augment market growth during the forecast period
Environment-friendly characteristics of powder coatings is anticipated to increase adoption in future
Increase in demand in applications such as metal furniture, construction, agriculture, and other industries is projected to accelerate market expansion in the near future
Key Players
Prominent players in the global powder coatings market are Marpol Private Limited, DuluxGroup Limited, RPM International, Inc., BASF SE, SOMAR, Kansai Nerolac Paints Limited, Asian Paints Limited, Berger Paints India Limited, The Valspar Corporation, Nippon Paint Holdings Co. Ltd., Kansai Paint Co. Ltd., KAPCI Coatings, PPG Industries, Inc., The Sherwin-Williams Company, Axalta Coating Systems., and Akzo Novel N.V.
Powder Coatings Market Segmentation
Type
Thermoset
Epoxy
Polyester
Epoxy Polyester Hybrid
Acrylic
Others (including low temperature powder coatings and anti-microbial powder coatings)
Thermoplastics
Polyvinyl Chloride (PVC)
Nylon
Polyolefin
Polyvinylidene Fluoride (PVDF)
Coating Method
Electrostatic Spray
Fluidized Bed
Application
General Metals
Metal Furniture
Agriculture, Construction, and Earthmoving Equipment (ACE)
Automotive
Architecture
Appliances
Others
Regions
North America
Europe
Asia Pacific
Middle East & Africa
Latin America
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Five (PP) properties of polypropylene The following are some of the most significant qualities that PP granules manufactures emphasize:
Chemical resistance Polypropylene is a great material for containers containing liquids like cleaning supplies because it does not react quickly with diluted bases and acids.
Elasticity and Toughness: Polypropylene, like other materials, exhibits some degree of elasticity over a range of deflection, but it also shows plastic deformation early in the deformation process, making it a "tough" material. This is because the plastic deformation produced by the pp grains provider occurs early in the deformation process. Engineers define a material's toughness as its capacity to withstand plastic rather than elastic deformation without breaking.
Resistance to fatigue: Polypropylene keeps its shape even after being severely twisted, stretched, or torn. This quality is essential in the development of living hinges.
Insulation: Polypropylene is a very useful material for the manufacture of electronic components due to its extremely high electrical resistance.
Transmissivity: Although polypropylene's natural color is frequently opaque, it can be made to appear transparent. Polypropylene may be used when at least some light transmission is required or when having such quality offers aesthetic benefits. When this quality is desired, plastics with a high transmissivity, like acrylic or polycarbonate, are the ideal choices.
Polypropylene is referred to as a "thermoplastic" substance as opposed to a "thermoset" substance because of how the plastic responds to heat. At their melting point, which for polypropylene is about 130 degrees Celsius, thermoplastic materials turn into liquid.
One of the most helpful properties of thermoplastics is their capacity to be heated to their melting point, cooled, and then reheated without severely deteriorating. Since they liquefy rather than burn when heated, thermoplastics like polypropylene may be easily injected, moulded, and recycled.
However, Thermoset plastics can only be heated once, which usually happens during the injection molding process. The initial heating sets thermoset materials, resulting in an irreversible chemical transition (much like two-part epoxy). A thermoset material would immediately catch fire if you attempted to heat it to a high temperature once more. This characteristic makes thermoset materials poor candidates for recycling.
What benefits does polypropylene offer? Polypropylene is readily available and reasonably priced. The exceptional flexural strength of polypropylene is a result of the material's semi-crystalline structure. The surface of polypropylene is relatively slippery. Polypropylene has a high resistance to moisture absorption. Numerous bases and acids can be tolerated by polypropylene with ease. A significant level of fatigue resistance is present in polypropylene. Polypropylene has strong impact resistance. Strong electrical insulator polypropylene. What drawbacks does polypropylene have? The high thermal expansion coefficient of polypropylene restricts its use in high temperature applications. UV deterioration might be harmful to polypropylene. Aromatic and chlorinated solvents only moderately affect the resistance of polypropylene. As a result of its poor bonding qualities, polypropylene is infamous for being challenging to paint. Polypropylene is easily ignited. It is possible for polypropylene to oxidize. Polypropylene is generally a great material, despite its drawbacks. It is the perfect material for many tasks since it possesses a special combination of properties that aren't present in any other kind of material.
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Non-Liquid Coating Market to Witness Significant Growth by Forecast
Non-Liquid Coating Market Information:
New York, United States: Non-Liquid Coating market report is an expert's study that focuses mostly on businesses, categories, applications, regions, and other subcategories. In addition to this, the reports include an analysis of sales and revenue, as well as trade, competition, investment, and projections. According to straits research the Non-Liquid Coating Market will grow at a CAGR of % during the forecast period. Non-Liquid Coating Market Research studies explore the effects of COVID-19 on the upstream, midstream, and downstream sectors of the industry. In addition, this analysis provides extensive market estimations by putting an emphasis on data covering numerous factors that encompass market dynamics such as market drivers, market barriers, market opportunities, market risks, and industry news and trends.
Competitive Players
Some of the key players operating in the Non-Liquid Coating market are PPG Industries Inc., Jotun Powder Coating, Asian Paints Limited, Axalta coating systems LLC, AkzoNobel NV, The Sherwin -Williams Company, Kansai Paints Company Ltd., Evonik Industries, and RPM International, Inc
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The Non-Liquid Coating market report helps a wide range of businesses figure out what their consumers truly want by doing extensive market research. When it comes to new products, every company owner wants to know how much demand there is, and this report is a great resource. Additional benefits include ensuring that the most recent market developments are covered. You may keep a close check on key rivals and their company growth tactics by reading the Non-Liquid Coating market research. It also does an in-depth research for the years 2022-2030 in order to provide company owners with new business options.
This research also provides a dashboard view of prominent Organization, highlighting their effective marketing tactics, market share and most recent advances in both historical and current settings.
Global Non-Liquid Coating Market: Segmentation
By Resin Type:
Thermoset
Polyester
Epoxy polyester hybrid
Epoxy
Acrylic
Polyurethane
Fluoropolymer
Thermoplastic
Nylon
Polyolefin
Polyvinyl chloride (PVC)
Polyvinyl fluoride (PVF)
By Coating Method
Electrostatic Spray
Fluidized Bed
By Substrate:
Metallic
Non-metallic
By End-Use Industry:
Appliances
Automotive
General Industrial
Architectural
Furniture
Stay ahead of the competition with our in-depth analysis of the market trends!
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Key Highlights
In order to explain Non-Liquid Coating the following: introduction, product type and application, market overview, market analysis by countries, market opportunities, market risk, and market driving forces
The purpose of this study is to examine the manufacturers of Non-Liquid Coating, including profile, primary business, and news, sales and price, revenue, and market share.
To provide an overview of the competitive landscape among the leading manufacturers in the world, including sales, revenue, and market share of Non-Liquid Coating percent
In order to illustrate the market subdivided by kind and application, complete with sales, price, revenue, market share, and growth rate broken down by type and application
To conduct an analysis of the main regions by manufacturers, categories, and applications, covering regions such as North America, Europe, Asia Pacific, the Middle East, and South America, with sales, revenue, and market share segmented by manufacturers, types, and applications.
To conduct an investigation into the production costs, essential raw materials, and production method, etc.
Principal Motives Behind the Purchase:
To get deep analyses of the industry and to have a complete comprehension of the commercial landscape of the global market.
Analyse the production processes, key problems, and potential solutions in order to reduce the potential for future problems.
The goal of this study is to get an understanding of the most influential driving and restraining factors in the Non-Liquid Coating industry as well as the influence that this market has on the worldwide market.
Gain an understanding of the market strategies that are now being used by the most successful firms in their respective fields.
In order to have an understanding of the market's future and potential.
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#Non-Liquid Coating Market#Non-Liquid Coating Market Share#Non-Liquid Coating Market Size#Non-Liquid Coating Market Research#Non-Liquid Coating Industry#What is Non-Liquid Coating?
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Different Methods of Metal Curing
Curing is a chemical process employed in polymer chemistry and process engineering that produces the toughening or hardening of a polymer material by cross-linking of polymer chains. Even if it is strongly associated with the production of thermosetting polymers, the term curing can be used for all the processes where starting from a liquid solution, a solid product is obtained.
During the curing process, single monomers and oligomers, mixed with or without a curing agent, react to form a tridimensional polymeric network.
In the initial part of the reaction branches molecules with numerous architectures are formed, and their molecular weight will increase in time with the extent of the reaction till the network size is up to the size of the system. The system has lost its solubility and its viscosity tends to infinite. The remaining molecules begin to be with the macroscopic network till they react with the network creating different crosslinks. The crosslink density will increase until the system reaches the end of the chemical reaction.
Curing can be initiated by heat, radiation, electron beams, or chemical additives. To quote from IUPAC: curing “might or might not require mixing with a chemical curing agent.
“Thus, two broad classes are
Curing induced by chemical additives (also called curing agents, hardeners).
Curing in the absence of additives. An intermediate case involves a mixture of resin and additives that requires external stimulus (light, heat, radiation) to induce curing.
The curing methodology depends on the resin and the application. Particular attention is paid to the shrinkage induced by the curing. Usually small values of shrinkage (2-3%) are desirable.
Curing induced by additives
Epoxy resins are typically cured by the use of additives, often called hardeners. Polyamines are often used. The amine group’s ring-open the epoxide rings.
In rubber, the curing is also induced by the addition of a cross linker. The resulting method is termed Sulfur vulcanization. Sulfur breaks down to form polysulfide cross-links (bridges) between sections of the polymer chains. The degree of crosslinking determines the rigidity and durability, similarly as different properties of the material.
Paints and varnishes usually contain oil drying agents; metal soaps that catalyse cross-linking of the unsaturated oils of which they’re largely comprised. As such, once paint is described as drying it’s infact hardening. Oxygen atoms serve the crosslinks, analogous to the role played by sulfur within the vulcanization of rubber.
Curing without additives
In the case of concrete, curing entails the formation of silicate crosslinks. The process is not induced by additives.
In several cases, the resin is provided as a solution or mixture with a thermally-activated catalyst, that induces crosslinking but solely upon heating. for example, some acrylate-based resins are formulated with dibenzoyl peroxide. Upon heating the mixture, the peroxide converts to a free radical, which adds to an acrylate, initiating crosslinking.
Some organic resins are cured with heat. As heat is applied, the viciousness of the resin drops before the onset of crosslinking, whereupon it will increase because the constituent oligomers interconnect. This method continues till a tridimensional network of oligomer chains is formed – this stage is termed gelation. In terms of processability of the resin this marks a very important stage: before gelation the system is relatively mobile, after it the quality is incredibly limited, the micro-structure of the resin and also the composite material is fixed and severe diffusion limitations to further cure are created. Thus, in order to achieve vitrification in the resin, it’s typically necessary to increase the process temperature after gelation.
When catalysts are activated by ultraviolet radiation, the process is called UV cure.
Different Monitoring Methods:
Rheological analysis
Thermal analysis
Dielectrometric analysis
Spectroscopic analysis
Ultrasonic analysis
We at KERONE have a team of experts to help you with your need for Curing in various products range from our wide experience.
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Synthetic Resin Market – Forecast (2022-2027)
The Synthetic Resin Market size is projected to reach a value of US$521.6 billion by the end of 2027 after growing at a CAGR of 4.8% during the forecast period 2022-2027. A synthetic resin is a chemical substance that is synthesized to closely resemble the properties of its natural counterpart. Synthetic resins based on polyethylene, polyvinyl chloride, formaldehyde, aliphatic, and glycidyl amine occur in a wide range of products, such as plastics, paints, and varnishes. Products that are manufactured with synthetic resins provide better long-term corrosion protection of metal substrates because of their increased durability, owing to which its market demand is being spurred. The growth can be attributed to the increasing demand for paints, coatings, adhesives, and sealants from the bolstering building and construction industry across various regions globally. However, the increasing adoption of bio-based resins as an eco-friendly alternative over the coming years is anticipated to impede the global synthetic resins market growth over the forecast period.
Synthetic Resin Market COVID-19 Impact
The COVID-19 epidemic negatively impacted the synthetic resin demand in a variety of end-use industries, including automotive, aerospace, construction, and more. Due to the closure of non-essential businesses, the outbreak had a significant impact on the aerospace, automotive, and construction industries. As demand for automobiles and aircraft dwindled, production was abruptly halted. For instance, according to the International Organization of Motor Vehicle Manufacturers, global automotive production will fall by 16 percent in 2020. Due to the impact of the COVID-19 pandemic, Toyota Motor Corporation's global vehicle manufacturing in 2020 was flat at 12.6 percent year over year. Furthermore, during the pandemic, construction output was drastically decreased. According to the Office for National Statistics, the construction industry in the United Kingdom was 11.6 percent lower in July 2020 than it was in February 2020. In August 2020, the level of project construction in the United Kingdom was 10.8% lower than in February 2020. Due to this the demand for paints, coatings, adhesives, and sealants significantly reduced, which impacted the Synthetic Resin Market revenue in 2020.
Report Coverage
The report: “Synthetic Resin Market Report – Forecast (2022-2027)” by IndustryARC, covers an in-depth analysis of the following segments of the Synthetic Resin Market.
By Form: Solid, Liquid, Emulsion, and Dispersion.
By Type: Thermosetting Resins (Polyester, Vinyl Ester, Epoxy, Phenolic, Urethane, and Others), and Thermoplastic Resins (Polycarbonate, Acrylic, Nylon, Polyethylene, Polyvinyl Chloride, Polyethylene Terephthalate, Polypropylene, Polybutylene Terephthalate, Vinyl, and Others).
By Application: Packaging, Printing Inks, Pipes & Hoses, Walls & Floors, Wood Finishes, Sheets & Films, Medical Devices, Paint & Coatings, Adhesives & Sealants, Electronic Fabrications, Transportation Components, and Others.
By End-use Industry: Transportation (Automotive, Aerospace, Locomotive, and Marine), Food & Beverage (Fruits & Vegetables, Dairy, Bakery, Confectionery, Poultry, Drinking Water, Soft Drinks, and Others), Personal Care & Cosmetic (Body Care, Face Care, Eye Care, Nail Care, Fragrances, and Others), Building & Construction (Residential, Commercial, Industrial, and Infrastructural), Oil & Gas (On-shore, and Off-shore), Energy Generation (Wind Energy, Solar Energy, and Others), Electrical & Electronics (Generators, Transformers, Circuit Breakers, and Others), Military & Defense (Helmets, Bulletproof Jackets, and Others), Medical & Healthcare (Connectors, Surgical Equipment, Blood Reservoirs, and Others), and Others.
By Geography: North America (USA, Canada, and Mexico), Europe (UK, Germany, France, Italy, Netherlands, Spain, Russia, Belgium, and Rest of Europe), Asia-Pacific (China, Japan, India, South Korea, Australia and New Zealand, Indonesia, Taiwan, Malaysia, and Rest of APAC), South America (Brazil, Argentina, Colombia, Chile, and Rest of South America), Rest of the World (the Middle East, and Africa).
Key Takeaways
Asia-Pacific dominates the Synthetic Resin Market, owing to the increasing transportation and construction industry in the region. The increasing per capita income and evolving lifestyle of individuals coupled with the rising population are the major factors expanding the transportation and construction industry in APAC.
Excellent properties such as toughness, resistance to several environmental factors, stability, and flame resistance, are making synthetic resin more popular in the electrical and electronics industries for manufacturing components such as printed circuit boards, electrical encapsulation circuits, components, and assembly materials.
Synthetic resins are being used in the oil & gas industry as they are an ideal match for the challenges of withstanding high-pressure, high-temperature environments. Thermoset resins have excellent thermal stability in high-pressure and high-temperature environments, allowing for more modular and robust product offerings with longer service existences.
However, increasing the adoption of bio-based resins over synthetic resins on account of their eco-friendly nature is acting as a major challenge for the global synthetic resins market during the forecast period.
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Synthetic Resin Market Segment Analysis – by Type
The thermoplastic resins segment held the largest share in the Synthetic Resin Market in 2021 and is forecasted to grow at a CAGR of 4.9% during the forecast period 2022-2027. Reheating, remolding, and cooling thermoplastics without causing chemical changes is possible. The primary benefit of thermoplastics is their broad range of uses. Thermoplastics are materials with high strength, low weight, and low processing costs. Furthermore, thermoplastic materials are relatively simple to manufacture in large quantities and with high precision. Thus, all these advantages associated with thermoplastic resins are majorly contributing to its segment growth. However, the main disadvantage of using thermoplastics instead of metals is that they have a lower melting point. When low-quality thermoplastics are exposed to the sun for long periods, they can melt. This factor is restricting the thermoplastic resin segment growth over the forecast period.
Synthetic Resin Market Segment Analysis – by End-use Industry
The transportation segment held a significant share in the Synthetic Resin Market in 2021 and is forecasted to grow at a CAGR of 5.6% during the forecast period 2022-2027, owing to the increasing usage of synthetic resins in the transportation component. The transportation industry demand high-reliability synthetic resins. Synthetic resins are known to provide excellent mechanical strength, structural support, and durability. The synthetic resin manufactured components withstand the initial impact force of installation, as well as the repeated stress of inspections and repairs. They also have high shear, compressive, flexural, and tensile strength to withstand the stresses of takeoff, flight, and landing. Synthetic resins even exhibit high strength at elevated operating temperatures and also provide insulation from heat when used to separate two components due to which they are extensively used in the transportation sector. Moreover, synthetic resins offer excellent electrical insulation properties and low toxicity/burn characteristics which minimize the damage and risk in the case of fire or explosion. Due to all these extensive characteristics of synthetic resins, it is being widely used in the transportation sector, which is anticipated to drive the Synthetic Resin Market during the forecast period.
Synthetic Resin Market Segment Analysis – by Geography
Asia-Pacific region held the largest share in the Synthetic Resin Market in 2021 up to 41% and is forecasted to grow at a CAGR of 6.2% during the forecast period 2022-2027, owing to the increasing transportation industry in APAC countries. For instance, according to the Organisation Internationale des Constructeurs d'Automobiles (OICA), automotive production and Vietnam grew by 1.2 percent and 5.5 percent from the previous year to 5,71,632 and 2,50,000 units, respectively, in 2019. In November 2020, Boeing forecasted that China's airlines would spend US$1.4 trillion on 8,600 new planes and US$1.7 trillion on commercial aircraft services over the next 20 years. According to India Brand Equity Foundation (IBEF), India’s domestic automobile production increased at a 2.36 percent CAGR from FY16 to FY20, with 26.36 million vehicles produced in FY20. Between FY16 and FY20, domestic automobile sales increased at a 1.29 percent compound annual growth rate (CAGR), with 21.55 million vehicles sold in FY20. According to the Japan Automobile Manufacturers Association (JAMA), automobile production in Japan increased in November from 6,67,462 units in October to 6,90,311 units. Thus, the growth of the global Synthetic Resin Market in the region is being aided by the increasing transportation sector in APAC, thereby dominating the market in the Asia-Pacific region.
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Synthetic Resin Market Drivers
Government Initiatives Bolstering the Growth of the Building & Construction Sector
Synthetic resin-based paints, coatings, adhesives, and sealants are often employed in residential buildings in applications such as windows, walls, doors, floors, and more. The governments are taking initiatives to increase building & construction activities. For instance, Kansai International Airport in Japan will spend about 100 billion yen ($911 million) by 2025 to upgrade the larger terminal, to increase space for international flights at the country's No. 2 hub. The Indian Union Budget of February 2020 aims to build 100 new airports by 2024 as part of the Centre's Udan scheme to help with growing air traffic. The health facility revitalization component of the national health insurance indirect grant in South Africa has been allocated R4.6 billion over the medium term (2020-2021). A fraction of this budget will go toward the planning and construction of the Limpopo Central Hospital in Polokwane, which is set to open in 2025/26. The Ministry of Housing and Urban Development (MoHUA) has been given Rs 50,000 crore (US$6.8 billion), and a fund of Rs 25,300 crore (US$3.5 billion) has been set up to help complete stalled housing projects. The Indian government has launched a project called the “Pradhan Mantri Awas Yojana (PMAY) program”, which aims to provide affordable housing to all urban poor people by 2022 through financial assistance. Such government initiatives are set to increase the demand for paints, coatings, adhesives, and sealants in the residential construction sector, and further drive the Synthetic Resin Market growth during the forecast period.
Bolstering Growth of Personal Care & Cosmetics and Food & Beverages Sector
Synthetic resins are often used to manufacture packaging materials for various end-use industries such as food, cosmetics, pharma, and more. Due to rising consumer demand and increasing per-capita income of individuals, the personal care & cosmetics and food & beverage industry is booming in various regions. According to the India Brand Equity Foundation (IBEF), the beauty, cosmetics, and grooming market in India in 2025 will have grown from US$6.5 billion to US$20 billion. According to the International Trade Administration, Thailand's beauty and personal care goods market was valued at around US$6.2 billion in 2018 and is projected to grow to US$8.0 billion by 2022. Thailand's beauty and personal care sector is projected to grow at a rate of 7.3 percent per year from 2019 to 2022. According to the China Chain Store & Franchise Association, the food and beverage (F&B) sector in China reached $595 billion in 2019, up 7.8% from 2018. In 2019, Canadian poultry farmers manufactured a record 1 493.5 million kilograms of chicken, turkey, and stewing hens, according to Statistics Canada, up 1.7 percent from 2018. Since the personal care & cosmetics and food & beverage sector industries are booming, the demand for packaging is also significantly increasing. Thus, the increasing personal care & cosmetics and food & beverage sector act as a driver for the synthetic resins market during the forecast period.
Synthetic Resin Market Challenge
Shift Towards Bio-based Resins
Many resin manufacturers have shifted away from synthetic resins to bio-based resins due to the globalization of the economy, increased awareness of carbon footprints, increased emphasis on sustainable systems, and the evolution of product lifecycle analysis. Bio-resins have a lot of potential. They reduce reliance on petrochemicals and allow manufacturers who use them to promote greener products due to price volatility. Furthermore, they have a better entire life cycle than petrochemical-based resins, with a lower carbon footprint, lower manufacturing toxicity, and less reliance on fossil fuels. Businesses are constantly launching bio-resins in the market as a result of this shift. SABIC, for example, launched a new portfolio of bio-based ULTEMTM resins in November 2021 in Saudi Arabia, which offers sustainability benefits while delivering the same high performance and processability as incumbent ULTEM materials. These ground-breaking polyetherimide (PEI) materials are the industry's first certified renewable high-performance, amorphous polymers. Thus, such advantages of bio-based resins over synthetic counterparts and constant product launches of bio-based resins are anticipated to restrict the Synthetic Resin Market growth.
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Synthetic Resin Industry Outlook
Technology launches, acquisitions, and R&D activities are key strategies adopted by players in the Synthetic Resin Market. Synthetic Resin Market's top 10 companies are:
Huntsman International LLC
MCC Chemicals Inc.
UPC Technology Corporation
Bayer AG
DSM
Sinopec Corporation
Formosa Plastics Group
Purolite
The Dow Chemical Company
BASF SE
Recent Developments
In May 2021, Adani Group, an Indian conglomerate, announced plans to build a 2 million tonne/year coal-to-polyvinyl chloride (PVC) plant in Mundra, Gujarat, for Rs 292 billion ($4 billion). PVC grades such as suspension PVC (resin), chlorinated PVC (C-PVC), and emulsion PVC are produced in the proposed project (paste).
In June 2020, in the Asia Pacific, Dow developed and launched a newly formulated post-consumer recycled (PCR) plastic resin for collation shrink film applications. The new resin contains 40 percent PCR, resulting in a film that performs similarly to those made with virgin resins. XUS 60921.01 is a product made with recycled plastics collected domestically in China by Dow's strategic recycling partners and manufactured at Dow's external manufacturing site in Nanjing, China.
In February 2019, in Navi Mumbai, Maharashtra, India, Arkema opened a new polyester resin manufacturing facility. A dedicated laboratory was included in this new facility to offer both application development and technical support. The facility will enable Arkema to better serve customers in India's fast-growing powder coating market, as well as the Gulf Region and neighboring countries.
Relevant Reports
Resins Market
Report Code: CMR 1053
Coating Resins Market
Report Code: CMR 0141
For more Chemicals and Materials Market reports, please click here
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Polyurethane Coatings: A Comprehensive Guide
Polyurethane coatings, commonly known as PU coatings, are a popular protective layer that imparts a smooth and durable finish to a variety of surfaces. Used extensively in different industries, such as furniture, PU coatings boast exceptional properties, making them a preferred choice. Here are some key features that make PU coatings stand out:
Versatility: PU coatings exhibit resistance to abrasion, corrosion, chemicals, and weathering, making them suitable for diverse applications.
Balanced Attributes: These coatings strike a balance between hardness and flexibility, ensuring a robust yet adaptable finish.
Adhesion: PU coatings adhere well to different substrates, enhancing their applicability across various materials.
Customization: They offer flexibility in adjusting gloss levels, colors, and textures to meet specific preferences and requirements.
Ease of Application and Curing: PU coatings, derived from polyurethanes, are relatively easy to apply and cure, providing a user-friendly experience.
Polyurethanes, the building blocks of PU coatings, result from the reaction between polyisocyanates and polyols. Polyisocyanates and polyols, containing isocyanate and hydroxyl groups, respectively, determine the characteristics of the resulting PU coating. For instance, aliphatic polyisocyanates produce coatings with better weathering and color stability, while polyester polyols contribute to improved chemical and solvent resistance.
There are two main types of PU coatings based on their curing mechanism: reactive and non-reactive. Reactive coatings involve a two-component system that cures through direct cross-linking, while non-reactive coatings cure when exposed to moisture, oxygen, or heat.
Benefits and Limitations of PU Coatings:
Benefits:
Excellent mechanical properties, including toughness, flexibility, and elasticity.
Resistance to chemicals, solvents, oils, and fuels.
Durable against abrasion, impact, wear, weathering, UV radiation, and oxidation.
Strong adhesion to various substrates like wood, metal, plastic, and concrete.
Compatibility with other coatings, such as epoxy, acrylic, and alkyd.
Good color and gloss retention, flow, leveling properties, and curing/drying characteristics.
Limitations:
Sensitivity to moisture and humidity during application and curing.
Potential need for a primer or surface preparation for adhesion to certain substrates.
Limited pot life and shelf life.
Higher cost and environmental impact compared to alternative coatings.
SBL Specialty Coatings: A Leading PU Coating Manufacturer in India:
SBL Specialty Coatings stands out as a premier PU coating manufacturer in India, offering a diverse range of products and services tailored for various industries. With over two decades of experience, a state-of-the-art manufacturing facility, and a dedicated research and development center, SBL Specialty Coatings is committed to delivering high-quality PU coatings that meet customer requirements and industry standards. Their expertise ensures the production of top-notch PU coatings, making them a trusted choice in the field.
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Epoxy Floor Coatings
We are pleased to introduce YY Applications as a leading company offering complete - epoxy concrete floor coating applicators for industrial, commercial, institutional and residential floor, located in Brampton. Our company have grown so far and scaled many heights with our immense contribution
Epoxy is basically a thermosetting resin used chiefly in strong adhesives and coatings and laminates. Epoxy floorings are often used on floors because of their reputation for toughness and durability from wear and chemicals.
Our company provides range of concrete coatings a solution for budget. Our coatings offer an acrylic different to outdated epoxy and alkyd coating products. Our Epoxy coatings are offered in a spread of colours and a number of sizes of flakes that you’re in a position to personalise to fit your needs - Epoxy coating.
In addition to its durability epoxy coatings are provided in a wide range of colours and has a excessive gloss end. Epoxy Floor Coating makes for a fantastic protective floor end. Epoxy flooring or Epoxy Floor Paint have excellent outstanding chemical resistance, durability, low porosity & strong bond strength. Hence it is applied on floors to save it from wear and chemicals. For more information, please visit our site https://www.yyapplications.com/
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The Benefits of Choosing Garage Floor Coatings From ProArmour Concrete Coatings
ProArmour Concrete Coatings installs beautiful concrete floor coatings with a lifetime warranty. The epoxies and polyaspartic flooring systems work well for garage, residential, commercial, and industrial applications. In just twenty-four hours, customers can upgrade the look and functionality of their concrete workspace with an elegant, durable, and long-lasting floor coating that will endure the test of time. An epoxy coating is a durable finish that can be applied to a garage floor. Instantly transform lackluster cement into a surface that is elegant and functional.
Circumstances around the globe are making the garage more than a parking spot and a storage area. The benefits of garage floor epoxy demonstrate why it is a premier choice for garage flooring today.
Useful for both residential and commercial applications, epoxy makes any garage or shop floor glisten like a showroom floor Choose from a wide variety of solids, hues, custom colors, and color flake blends that suit any style. For the homeowner who is not familiar with an epoxy flooring system, here are some facts and benefits.
What Is Epoxy?
The homeowner needs to understand that epoxy is not a paint product. Paint specially formulated for application on garage floors is a latex acrylic product. Epoxy paint, or one-part epoxy paint, contains a small amount of epoxy additive in the formulation, which makes it more durable than regular paint. Paint, even paint with an epoxy component, is not nearly as long-lasting and durable as epoxy.
Epoxy, a thermosetting resin, is applied as a coating and forms by combining one part epoxide resin with one part polyamine hardener. The hardener, functioning as a catalyst, gives epoxy its almost superpower strength.
Epoxy cures and hardens; paint dries. Combining epoxy and the catalytic hardener initiates a chemical reaction that results in a coating that is much thicker than paint and that bonds to a properly prepared surface.
Benefits of a Garage Floor Epoxy Coating
1. Holds up under punishing conditions
When epoxy cures and hardens, it creates a coating that is very durable and resilient to chipping, impacts, stains, surface abrasion, and damage from chemical spills. Dropping a wrench on the floor will not chip or crack the concrete.
2. Hides imperfections
The thick epoxy coating effectively hides minor imperfections and blemishes, including flaws and small cracks in the concrete. Epoxy, a topical sealer, is anti-dusting. Much garage dust comes from powder shed by a cement floor. Foot traffic on bare concrete disturbs this dusty powder, which then collects on cars, workbenches, and items stored in the garage. This dust also finds its way into the house.
3. Resists moisture
The epoxy coating naturally resists moisture. This benefit is great for homes in snowy climates. Icy brines and road salts that collect on the garage floor during the winter are easily cleaned up with a solution of mild soap and water. A dust mop or soft broom makes short work of dust and debris when the floor is dry.
4. Creates a non-skid surface when slip-resistant aggregate is added
Some epoxy surfaces can be slippery when they become wet, but in drier climates, this situation is not an issue. To achieve extra traction when the epoxy surface is wet, slip-resistant aggregate can be added to the final coat.
5. Great for garage mechanics and hobby enthusiasts
Epoxy coatings are ideal for the needs of home mechanics and hobbyists. Oil, brake and transmission fluids, anti-freeze, gasoline, and other caustic car chemicals can easily be wiped up from the chemical- and stain-resistant surface. Jacks, jack stands, and rolling toolboxes will not damage an epoxy floor coating. Also, adding light-reflective materials in the epoxy floor system can brighten up the garage environment.
6. Customize the garage into a unique workspace
An epoxy floor system can transform a drab, dirty garage into a unique workspace like no other in the neighborhood. The wide selection of colors and textures can suit any taste or need. Make the garage a signature enclave that is the envy of all.
An epoxy floor system in the garage is durable, beautiful, and customizable. With ProArmour Concrete Coatings, homeowners can turn the garage into a showroom in just twenty-four hours. For more information about polyaspartic and epoxy floors, contact ProArmour Concrete Coatings by phone at (833) 652-0811 or email [email protected].
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source https://proarmour.com/press-releases/the-benefits-of-choosing-garage-floor-coatings-from-proarmour-concrete-coatings/
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Powder Coatings Market Outlook, Growth, Share and Forecast by 2028
Powder Coatings Industry Overview
The global powder coatings market size was valued at USD 11.9 billion in 2020 and is expected to expand at a compound annual growth rate (CAGR) of 7.2%.
The emerging economies of Asia Pacific and MEA regions have witnessed strong growth in non-residential sectors including consumer goods, IT, telecom, and retail resulting in growth in product demand. The growing number of consumer goods companies in India, China, and Singapore is expected to augment market development in the near future. Powder coatings have numerous advantages over other coatings, such as lower operating costs, immediate availability, negligible VOC emission, excellent appearance, and uniform thickness.
In addition, they are relatively easy to apply in thick layers of coating, which results in a smooth, uniform appearance.
Gather more insights about the market drivers, restrains and growth of the Global Powder Coatings Market
A rise in the production of automobiles and the surge in demand for medical devices are expected to be major factors driving the market growth in developing nations including India, China, Brazil, and Mexico over the forecast period. Moreover, high product adoption in the furniture sector on account of its excellent performance, low operational costs, color availability, and custom properties, such as anti-corrosion and anti-bacterial functions, will stimulate market growth.
Powder coatings do not contain any solvents, which results in negligible emission of VOC in the atmosphere and reduced risk in combustion during application and storage. In addition, the powder can be easily washed off when it comes in contact with human skin, which reduces health hazards for operators.
Raw materials used in product manufacturing include thermoplastic and thermoset resins. Thermoplastic comprises nylon, PVC, polyolefin, ABS, and polycarbonate coatings while thermoset comprises coatings made of epoxy, polyester, polyurethane, and acrylic coatings. Volatility in raw material prices affects the powder coating raw material pricing.
Browse through Grand View Research’s Paints, Coatings And Printing Inks Industry Research Reports.
• Plastic Compounds Market: The plastic compounds market size was valued at USD 66.74 billion in 2020 and is expected to grow at a compound annual growth rate (CAGR) of 5.1% from 2021 to 2028. Increasing demand from the automotive industry is anticipated to significantly drive the market growth during the forecast period. • Modified Polypropylene Market: The global modified polypropylene market size was valued at USD 34.12 billion in 2020 and is expected to expand at a compound annual growth rate (CAGR) of 5.5% from 2021 to 2030. The growth of the market is attributed to the use of modified polypropylene in the automotive, electrical and electronics, packaging, medical, building and construction, and other industries.
Powder Coatings Market Segmentation
Grand View Research has segmented the global powder coatings market on the basis of resin, application, and region:
Powder Coatings Resin Outlook (Volume, Kilo Tons; Revenue, USD Million, 2016 – 2028)
• Epoxy
• Polyester
• Epoxy-polyester (Hybrid)
• Acrylic
• Polyurethane
• Others
Powder Coatings Application Outlook (Volume, Kilo Tons; Revenue, USD Million, 2016 – 2028)
• Consumer Goods
• Architectural
• Automotive
• General Industries
• Furniture
• Others
Powder Coatings Regional Outlook (Volume, Kilo Tons; Revenue, USD Million, 2016 – 2028)
• North America
• Europe
• Asia Pacific
• Central and South America
• Middle East and Africa
Key Companies profiled:
Some prominent players in the Global Powder Coatings Market include
• Akzo Nobel N.V
• The Sherwin-Williams Company
• PPG Industries, Inc.
• BASF SE
• DSM
• Valspar
• Arkema S.A.
• Bayer AG
Order a free sample PDF of the Powder Coatings Market Intelligence Study, published by Grand View Research.
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Applications and Uses of Plastic Additives
Vinyl, blow-molding bottles, film, rigid containers, PVC plastics, siding, decks and rails, foam pipes and profile formulations, window frames, and high-efficiency lubricants are just a few of the applications for plastic additives.
· Acrylic processing aids – provide high efficiency, surface smoothness, faster fusion, and highly homogeneous melts for plastic additives, as well as melt strength for an improved foaming process for PVC building and construction products that yield lower density, higher expansion, and very fine cell structure.
· Hybrid additives (silicone and polyethylene) — improve production efficiency, reduce processing temperature and torque, and allow more recycled polyethylene to be used in wood-flled systems.
· Impact modifiers improve the impact efficiency of vinyl and provide great clarity and impact resistance in PVC packaging.
· Engineering resins with specialty additives that improve injection moulding ductility, low temperature toughness, and lower melt viscosities
· Silicone thermoplastic additives – for films, sheets, tubes, pipes, toys, and consumer items — provide low stress whitening, flexibility, UV resistance, and great print and paint adherence.
· Silicone and silane thermoset additives — for electronics and engineering applications, adding additional qualities such as flame retardancy, increased heat resistance, moulded internal stress relief, greater compatibility between fillers and the base resin, and optimised processing.
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Source Link- https://medium.com/@poojas_37665/it-is-the-responsibility-of-the-plastics-additives-sector-to-improve-sustainability-waste-698f54e6eee8?postPublishedType=initial
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Selection requirements for non-leafing aluminum paste for paints
Selection requirements for non-leafing aluminum paste for paints
(1) Industrial baking paint
Most of these paints are thermosetting, and the resin systems used are generally polymer structures. The most common are thermosetting acrylic and polyester resins, which are characterized by high viscosity, thick construction coating and relatively high acid value. Therefore, this high viscosity is mostly unfavorable for the settlement and drift filling performance of aluminum flakes. Usually, products with a coarse particle size above 30u have better sedimentation and orientation in the paint film. Therefore, the viscosity and leveling of the paint should be adjusted as far as possible during construction. CAB Butyl Acetate Cellulose is an effective raw material to adjust leveling, it can not only promote the orientation of aluminum-phosphorus flakes in the coating, but also improve the brightness, toughness and impact resistance of the paint film. The product is miscible with many resins in any proportion and can be used alone in high-grade paints and coatings. In addition, nitrocellulose is also a good raw material for adjusting the leveling property, but in application, it will reduce the adhesion of the coating and is prone to yellowing, so it must be added in a limited amount.
Due to the relatively high acid value of this type of paint, the active groups in it are easy to erode the surface of the aluminum flakes, resulting in loss of gloss and blackening.
Therefore, it is necessary to choose aluminum paste products with smooth surface of aluminum flakes and high integrity of the auxiliary coating. In order to ensure the smoothness of the paint film and the ideal protection performance. The moisture content must be strictly controlled when applying the butene acid system, and the maximum cannot exceed 1.5%.
Bayer dehydrating agent OF can also be used to remove excess water in the system. It is best to use resin-coated aluminum paste for highly decorative construction processes that require high acid resistance.
(2) Automobile and motorcycle paint
There are many types of resin systems used in this type of paint. Except for the CAB system, they are generally high-solid, high-viscosity, and durable.
High decorative paint with strong friction and strong adhesion, in addition to strict requirements on the particle size distribution of aluminum paste, the selection of types is relatively wide, such as standard sink type, silver white type and flash series products are optional Scope.
(3) Plastic paint
This type of paint is mostly a single-layer paint system, mainly thermoplastic or self-drying, which is characterized by high solid content, high viscosity and viscosity.
Low, high fluidity, moderate acid value, thin coating, generally 14-16, the thickest is not more than 25u, so in the paint making
In the process, aluminum paste products with a particle size of 20μ or more, uniform distribution and smooth aluminum flakes should be selected. Such as: standard sinking type, silver white type, silver dollar type imitation electroplating type, etc. In this way, the surface compactness, smoothness and integrity of the paint film can be ensured, and the phenomenon of silver loss, burr or poor insulation caused by aluminum flakes exposed on the surface of the paint film can be avoided. For coatings that require high resistance to electric shock, it is best to choose resin-coated aluminum paste.
(4) Self-drying paint
There are many types of self-drying paints with different varieties. In order to facilitate the distinction, we divide them into two categories according to the shape of the carrier, namely oil-type self-drying paint and resin-type self-drying paint.
1. Oil-based self-drying paint
Oil-type self-drying paint is mainly oxidative polymerization drying, so it is also called oxidative polymerization drying type. The main ingredient is dry vegetable oil, or a mixture of dry vegetable oil and non-dry vegetable oil. If this kind of paint is not handled properly, it is easy to cause problems such as high acid value and poor drying performance, such as linseed oil type, so it is necessary to choose a smooth and smooth aluminum paste product. It is also prone to sticky surface and orange peel after drying, so try to make the paint film thinner and more uniform when painting. And choose bright and dry season construction.
2. Resin type self-drying paint
Resin type self-drying paint is designed by the volatilization and drying concept of solvent volatilization to fix the coating resin on the surface of the object.
Therefore, it is also called volatile drying type. Its main components are natural resins, synthetic resins, solvents, etc.
This kind of paint is easy to process, and its coating effect and performance are better than oil paint. The selection range of aluminum paste is also relatively wide, and the selection range of aluminum paste can be designed according to the coating grade, application characteristics and cost performance of the paint.
https://www.effectpigments.net/Businessfield/1851.html
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Epoxy Coatings Industry Overview | Size, Share, Trends, Demand, Key Player profile and Regional Outlook by 2030
An Epoxy Coating has compounds that are used as coatings or paints, cross-linked with a co-reactant or hardener prior to application in order to give a performance oriented outcome. Epoxy Coatings are widely used in the production of adhesives and resins. They are the type of external coverings, provided by Epoxy Resins which serves resistance to UV light and corrosive chemicals among other properties. The Global Epoxy Coating Market relies on improved and durable coatings. Moreover, stringent rules and regulations are implemented by the regional governments to curb down VOC content in the paints and coatings industry which are projected to drive the demand of Global Epoxy Coating Markets. These coatings are used in combination with concrete and steel to give them water, alkali, and acid resistance. Epoxy Coatings are generally used in industrial and automotive applications.
The prominent driving factors in the Global Epoxy Market are increasing construction activities and growing demand from the paints and coatings industry. Rapid growth in automotive and construction industries are projected to fuel the demand of Global Epoxy Market during the forecast period, 2017-2023.
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Competitive Analysis:
Well known players functioning in the Global Epoxy Coating Market are BASF SE(Germany), AkzoNobel N.V( the Netherlands), Axalata Coating System LLC (U.S.), The Valspar Corporation( U.S.), PPG industries (U.S.), Aditya Birla Chemicals (India), Tikkurila OYJ (Finland), RPM International Inc (U.S.) and others.
Market Segmentation:
The Global Epoxy Coating Market is segmented by type, application, and region. Waterborne, solvent-based and powder coatings are classified on the basis of market type. Water Borne Coatings use water as a solvent to scatter the resin which is used for making coatings or paints. These coatings use water as a solvent and are easy to apply. Due to these reasons, it is termed as an eco-friendly product. Waterborne coatings are further sub-divided into waterborne catalyzed epoxy, direct to metal acrylic, and waterborne acrylic. During the forecast period, it is estimated that the Global Waterborne Coating Market is set to expand at a higher CAGR of 5.77% due to growing demand in the architectural sector. Powder based coatings are of two types, namely thermoset and thermoplastic. Thermoset are further segmented into epoxy resin, acrylic resins, polyester powder coats, and polyvinyl fluoride. Polyester powder coatings hold the largest share in the thermoset segment and expected to continue its dominance during the forecast period. On the basis of application, the market is segmented into construction, automobile, transport, electrical & electronics, and others. Among these, construction accounted for more than 36% of global consumption in the year 2016 and anticipated to continue its growth owing to an increase in construction activities. Rapid growth integrated with the availability of incentives and skilled workers has been recognized in the automobile and transport industry.
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Regional Analysis:
The world’s largest share of Global Epoxy Coating Market has been held by Asia Pacific followed by Europe, North America, Latin America, and the Middle East & Africa. China, India and Malaysia are the countries in Asia Pacific region, expected to grow with the same pace in the forecast period, 2017-2023. Germany, U.K and Italy in Europe have observed a rapid growth due to increasing investment by the paints and coating industries. A stunning growth has been projected in North American and Latin American regions due to the production of environmental friendly products. The demand for Epoxy Coating Market has been increasing in the Middle East and Africa due to growing investments in the construction and industrial activities.
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