#Synthetic Fibre Rope Market Report
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Global Synthetic Fibre Rope Market industry share, market size & growth, gross margin, trend, future demand, analysis by top leading player and forecast till 2026
Global Synthetic Fibre Rope Market industry share, market size & growth, gross margin, trend, future demand, analysis by top leading player and forecast till 2026
The Synthetic Fibre Rope Market Report is one of the most comprehensive and important data about business strategies, qualitative and quantitative analysis of Global Market. Synthetic Fibre Rope Market report offers extensive research and analysis of key aspects of the worldwide Synthetic Fibre Rope market. The report gives further comprehension of the serious scene and its future situations,…
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Research On World Synthetic Fibre Rope Market Report 2025
Report on World Synthetic Fibre Rope Market by Product Type, Market, Players and Regions-Forecast to 2025 offered by DecisionDatabases.com.
Synthetic Fibre Rope market research report provides the newest industry data and industry future trends, allowing you to identify the products and end users driving Revenue growth and profitability.
The industry report lists the leading competitors and provides the insights strategic industry Analysis of the key factors influencing the market.
The report includes the forecasts, Analysis and discussion of important industry trends, market size, market share estimates and profiles of the leading industry Players.
Final Report will cover the impact of COVID-19 on this industry.
Access Full Report with Table of Contents @ https://www.decisiondatabases.com/ip/52873-world-synthetic-fibre-rope-market-report
The Players mentioned in our report
Wireco World Group
Samson Rope Technologies
Bridon International Ltd
Teufelberger Holding AG
Marlow Ropes Ltd.
Yale Cordage Inc
Juli Sling
Cortland Limited
Southern Ropes
Garware-Wall Ropes Ltd.
Lanex A.S
GRPP
English Braids Ltd
Taizhou Hongda
Katradis
Jiangsu Shenyun
Global Synthetic Fibre Rope Market: Product Segment Analysis
Polypropylene
Polyester
Polyamide Fiber
Polyethylene
Global Synthetic Fibre Rope Market: Application Segment Analysis
Marine & Fishing
Sports and Leisure
Oil & Gas
Construction
Cranes
Global Synthetic Fibre Rope Market: Regional Segment Analysis
USA
Europe
Japan
China
India
South East Asia
Download Free Sample Report of World Synthetic Fibre Rope Market @ https://www.decisiondatabases.com/contact/download-sample-52873
There are 10 Chapters to Deeply Display the World Synthetic Fibre Rope Market. Chapter 1 About the Synthetic Fibre Rope Industry Chapter 2 World Market Competition Landscape Chapter 3 World Synthetic Fibre Rope Market share Chapter 4 Supply Chain Analysis Chapter 5 Company Profiles Chapter 6 Globalisation & Trade Chapter 7 Distributors and Customers Chapter 8 Import, Export, Consumption and Consumption Value by Major Countries Chapter 9 World Synthetic Fibre Rope Market Forecast through 2025 Chapter 10 Key success factors and Market Overview
Purchase full World Synthetic Fibre Rope Market Research Report @ https://www.decisiondatabases.com/contact/buy-now-52873
Other Reports by DecisionDatabases.com:
World Synthetic Resin Market by Product Type, Market, Players and Regions-Forecast to 2025
World Synthetic Quartz Glass UV-LED Market Research Report 2025 (Covering USA, Europe, China, Japan, India and etc)
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#Synthetic Fibre Rope#Synthetic Fibre Rope Market#Synthetic Fibre Rope Market Report#World Synthetic Fibre Rope Market#Synthetic Fibre Rope Industry Size
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Aromatic polyamide Market 2022 Leading Competitors – DuPont, BASF SE
Aromatic polyamide Market 𝐑𝐞𝐬𝐞𝐚𝐫𝐜𝐡 𝐑𝐞𝐩𝐨𝐫𝐭 𝟐𝟎𝟐𝟐 𝐢𝐬 𝐜𝐚𝐫𝐞𝐟𝐮𝐥𝐥𝐲 𝐜𝐨𝐧𝐝𝐮𝐜𝐭𝐞𝐝 𝐟𝐨𝐫 𝐭𝐡𝐞 𝐢𝐧𝐝𝐮𝐬𝐭𝐫𝐲 𝐢𝐧 𝐚 𝐪𝐮𝐚𝐥𝐢𝐭𝐚𝐭𝐢𝐯𝐞 𝐚𝐧𝐝 quantitative 𝐰𝐚𝐲 𝐭𝐨 𝐞𝐧𝐬𝐮𝐫𝐞 𝐚 𝐬𝐮𝐜𝐜𝐞𝐬𝐬𝐟𝐮𝐥 𝐨𝐮𝐭𝐜𝐨𝐦𝐞 of the Aromatic polyamideMarket. In addition to identifying, analyzing, and estimating new trends, this research report also examines key industry drivers, challenges, and opportunities in addition to evaluating competitors, geographical areas, types, and applications. Understanding the competitive landscape is crucial for determining the product improvements that are needed. Industries can securely make decisions about their production and marketing strategy since they can obtain comprehensive insights from a Aromatic polyamidereport.
𝐀 𝐬𝐚𝐦𝐩𝐥𝐞 𝐫𝐞𝐩𝐨𝐫𝐭 𝐜𝐚𝐧 𝐛𝐞 𝐯𝐢𝐞𝐰𝐞𝐝 𝐛𝐲 𝐯𝐢𝐬𝐢𝐭𝐢𝐧𝐠 (𝐔𝐬𝐞 𝐂𝐨𝐫𝐩𝐨𝐫𝐚𝐭𝐞 𝐞𝐌𝐚𝐢𝐥 𝐈𝐃 𝐭𝐨 𝐆𝐞𝐭 𝐇𝐢𝐠𝐡𝐞𝐫 𝐏𝐫𝐢𝐨𝐫𝐢𝐭𝐲) 𝐚𝐭:
𝐂𝐨𝐦𝐩𝐞𝐭𝐢𝐭𝐢𝐯𝐞 𝐥𝐚𝐧𝐝𝐬𝐜𝐚𝐩𝐞: DuPont, BASF SE, Teijin, JSC Kamenskvolokno, Kolon, Hyosung, Huvis, TAYHO, Bluestar and Sinopec Yizheng Chemical Fibre.
𝐌𝐚𝐫𝐤𝐞𝐭 𝐒𝐞𝐠𝐦𝐞𝐧𝐭𝐚𝐭𝐢𝐨𝐧: 𝐁𝐲 𝐓𝐲𝐩𝐞
Para-Aramid
Meta-Aramid
𝐌𝐚𝐫𝐤𝐞𝐭 𝐒𝐞𝐠𝐦𝐞𝐧𝐭𝐚𝐭𝐢𝐨𝐧: 𝐁𝐲 𝐀𝐩𝐩𝐥𝐢𝐜𝐚𝐭𝐢𝐨𝐧
Security And Protection
Optical Fibres
Tire Reinforcement
Electrical Insulation
Rubber Reinforcement
Ropes & Cables
Composites
By Region
North America, US, Canada, Latin America, Brazil, Mexico, Rest of Latin America, Western Europe, Germany, UK, France, Spain, Italy, Benelux, Nordic, Rest of Western Europe, Eastern Europe, Russia, Poland, Rest of Eastern Europe, Asia Pacific, China, Japan, India, South Korea, Australia, ASEAN (Indonesia, Vietnam, Malaysia, etc.), Rest of Asia Pacific, Middle East & Africa, GCC, South Africa, Turkey and Rest of the Middle East & Africa.
Key Highlights
• The report provides analysis of current global Aromatic polyamidemarket landscape.
• The report explores the most likely scenarios of the pandemic that are going to impact the Aromatic polyamideindustry in long-term.
• The report does a detailed analysis studying how the global market is changing.
• The report looks at how the global Aromatic polyamidemarket is shifting, the target market which have biggest opportunities, and trends on horizon that may impact your business directly or indirectly.
• The report highlights the key challenges, risk that you may face in near term as well as highlights opportunities.
Explore Full Report with Detailed TOC Here:
𝐓𝐚𝐛𝐥𝐞 𝐎𝐟 𝐂𝐨𝐧𝐭𝐞𝐧𝐭: 1. Aromatic polyamideMarket Introduction 1.1. Definition 1.2. Research Scope 2. Executive Summary 2.1. Key Findings by Major Segments 2.2. Top strategies by Major Players 3. Global Aromatic polyamideMarket Overview 3.1. Aromatic polyamideMarket Dynamics 3.1.1. Drivers 3.1.2. Opportunities 3.1.3. Restraints 3.1.4. Challenges 3.2. COVID-19 Impact Analysis in Global Aromatic polyamideMarket 3.3. PESTLE Analysis 3.4. Opportunity Map Analysis 3.5. PORTER’S Five Forces Analysis 3.6. Market Competition Scenario Analysis 3.7. Product Life Cycle Analysis 3.8. Manufacturer Intensity Map 3.9. Major Companies sales by Value & Volume 𝐂𝐨𝐧𝐭𝐢𝐧𝐮𝐞.
Complete Growth Report Is Available (Including the Full TOC, Tables and Figures, Graphs as Well As Chart):
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Webbing Market Size, Scope (2021-2028) | Top Key Company Profiles – American Cord & Webbing Co.,Murdock Webbing Company, National Webbing Products Co
Webbing is a strong fabric woven as a flat strip or tube of varying width and fibres, often used in place of rope. It is a versatile component used in climbing, slack lining, furniture manufacturing, automobile safety, auto racing, towing, parachuting, military apparel, load securing, and many other fields. They may be made of hemp, cotton or linen, but also synthetic fibers such as nylon, polypropylene or polyester. Webbing is also made from exceptionally high-strength material, such as Dyneema, and Kevlar. Webbing is both light and strong, with breaking strengths readily available in excess of 10,000 pounds-force (44 kilo newtons). There are two basic constructions of webbing. Flat webbing is a solid weave, with seat belts and most backpack straps being common examples. Tubular webbing consists of a flattened tube, and is commonly used in climbing and industrial applications.
The Global Webbing Market is estimated to surpass US$ 1,234.57 million by the end of 2028 in terms of revenue, exhibiting a CAGR of 5.9% during the forecast period (2021 to 2028).
Request Copy Of This Business Report: https://www.coherentmarketinsights.com/market-insight/webbing-market-4689
Detailed Segmentation:
Global Webbing Market, By Product:
Polyester
Nylon
Polypropylene
Carbon Fibers
Para Aramid Fibers
Global Webbing Market, By Type:
Flat Webbing
Tubular Webbing
Market Restraints
The effect of fiber on environmental can restrict the market growth. Polyester is one of the major fiber used for manufacturing webbing. Polyester is a synthetic petroleum-based fibre which is made from a carbon-intensive non-renewable resource. Petroleum products are used as feedstock to manufacture fibre which has the ability to harm the environment due to its non-degradable property.
Competitive Section: American Cord & Webbing Co., Inc. (ACW Co., Inc.), E. Oppermann GmbH, Belt-tech, Narrowtex Australia Pty Ltd, Jiangsu Daxin Webbing Co., Ltd., Ohio Plastics Belting Co, National Webbing Products., Murdock Webbing Company, Inc., Tennessee Webbing Products, and Bally Ribbon Mills.
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Synthetic Fibre Rope Market Overview ,Research Report Including SWOT Analysis and Key Players Analysis By 2027
A recently published report titled “Global Synthetic Fibre Rope Market” is an extensive study by Reports and Data of the Synthetic Fibre Rope industry and includes a study of several factors that impact the growth of the market. The factors taken into consideration in this report are government policies, market landscape, technologies, market risks, opportunities, and challenges faced by the market. The report further analyzes historical data, current and future market trends, recent technological developments, key competitors, and regional bifurcation.
The currently ongoing COVID-19 pandemic has affected several countries and sectors and the subsequent social restrictions and lockdowns have resulted in the economic slowdown. The report analyzes the impact of the pandemic on the overall market and offers an estimation of the current and future impact of the pandemic on the Synthetic Fibre Rope market.
Get a sample of the report @ https://www.reportsanddata.com/sample-enquiry-form/440
The global Synthetic Fibre Rope report is a qualitative and quantitative research document that offers vital insights into the Synthetic Fibre Rope market that enable the businesses and investors gain a competitive edge over the other competitors. It provides an exhaustive analysis of the competitive landscape including company overview, revenue share and contribution, financial standing, global position, and technological and product advancement. The report also explores the new entrants, strategic alliances and collaborations, mergers, acquisitions, partnerships, agreements, and deals of the well established companies.
Key companies profiled in the Synthetic Fibre Rope report are:
Arboriculture
Cortland Limited
Wireco Worldgroup Inc
Samson Rope Technologies Inc
Southern Ropes
English Braids Ltd
Marlow Ropes Ltd
Teufelberger Holding AG
Bridon International Ltd
Yale Cordage Inc
Lanex A.S
Synthetic Fibre Rope Market Segmentation based on Types:
Polypropylene
Polyester
Polyamide Fiber
Polyethylene
Specialty Fibers
Synthetic Fibre Rope Market Segmentation based on Application:
Marine & Fishing
Sports and Leisure
Oil & Gas
Construction
Cranes
The regional analysis covers:
North America (U.S., Canada, Mexico)
Europe (U.K., Italy, Germany, France, Rest of EU)
Asia Pacific (India, Japan, China, South Korea, Australia, Rest of APAC)
Latin America (Chile, Brazil, Argentina, Rest of Latin America)
Middle East & Africa (Saudi Arabia, U.A.E., South Africa, Rest of MEA)
To know more about the report @ https://www.reportsanddata.com/report-detail/synthetic-fibre-rope-market
Reasons for Purchasing the Global Synthetic Fibre Rope Market Report:
The report gives a detailed description of different market elements and the changing competitive landscape, helping the reader gain a competitive edge.
It also takes a holistic approach to give a 360° view of the industry, listing the drivers and restraints existing in the market.
The Global Synthetic Fibre Rope Market intelligence report offers accurate market insights for a period of eight years, which have been derived after an in-depth evaluation of industry-wide data.
The data provided in the report is intended to help readers make business decisions to capitalize on the existing opportunities in the key market segments and sub-segments.
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Heat Resistant Alloy Market Revenue
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A Review of Some Significant Research Breakthroughs in Banana Fibre by Gokarneshan N* in in Open Access Journal of Biogeneric Science and Research
Abstract
The article reviews some significant research trends in the banana fibre. Bannana is a natural fibre and belongs to the category of bast fibres. One area of research explore the areas of applications, particularly in handicraft products such as mat, rope and twines, but only 10% of its pseudo stem is being used for making products and the remaining is used as waste or fertilizer. Owing to its many special properties it can be beneficial to farmers and also serve as a good raw material for the textile and packaging industry. In another area of research, flame retardant functionality has been imparted in cellulosic fabric using mixed formulation of banana psueudo stem sap and boric acid. Flame retardant characteristics of both the control and treated fabrics have been analyzed in terms of limiting oxygen index, vertical flammability, and temperature generation profile during burning. Another area of research reports the influence of treatment with caustic soda at various concentrations, on the physical, morphological, structural and thermal properties. An interesting study has focused on the production of bannana fibre yarns for textile reinforced composites. Thus the viability of spinning a yarn from banana fibres and weaving for the composite is explored. Attempt has been made to produce reinforced composite by weaving enzyme treated banna fibres.
Keywords: Bannana fibres; enzymatic treatment; value addition, composites; Alkali treatment; enzymatic treatment; reinforcement, sustainability.
Introduction
The banana plant not only yields fruit, but also fibre which finds use in textile and related applications. It grows under tropical conditions. All varieties of banana fibres have fibres in abundance. The banana fibre is basically a bast fibre, and is obtained after the fruit is harvested. After the plant yields the fruit, its trunk the pseudo stem largely goes as agricultural waste. These pseudostems can be effectlvely utilized in production of the banana fibres, as annually about 1.5 million tons of dry banana fibres can be produced from the outer sheath of pseudostem. Biomass (pseudostem) waste, a rich source of natural fibres the pseudostem can be profitably utilized for numerous applications and preparation of various products. Cotton being a cellulosic material is flammable and hence can create problems for health and life of mankind. Considerable attempts have been made over the years for enhancement of flame-retardant property of cotton textile materials through utilization of different synthetic chemicals and a number of them are commercially available. Of these, the common ecofriendly admixture formulation of boric acid and borax is considered the simplest [1]. But, higher quantity of chemicals used in this formulation degrades the treated fabric quality. The present days are witnessing increased use of natural lingo cellulosic fibres in composite production [2]. Natural lignocellulose fibres, such as sisal, hemp, coir, kenaf and jute, have low density, good thermal properties, better specific strength, ecofriendly nature and can be used as replacement for glass fibres during composite manufacturing [3,4]. Banana fibres, due to its high specific strength can be used as replacement of glass fibres as reinforcement in the manufacture of composites. Banana fibre is extracted from the pseudo stem waste of the plant after harvesting the fruits. Like any other ligno cellulosic fibre, the major constituents of these fibres are cellulose, lignin, and hemicelluloses [5]. The rising interest in natural fibers in the composites field is undeniable, mainly due to sustainability, but also because of their good mechanical properties and low cost. The differences observed among different natural fibers are due to their chemical composition, origin, climate conditions, etc. On average, vegetable fibers are made of 60%–70% of cellulose, 10%–20% of hemicellulose, 5%–15% of lignin and up to 2% of pectin and waxes [6]. Banana fiber is obtained from the superimposed leaves forming the pseudostem of the plant, which currently has no use, apart from a low percentage dedicated to cattle feed. It belongs to Musa genre, as a monocot. Banana is the most important crop in Canary Islands, which are the most important producers of bananas in Europe. It is important to highlight that fibers are obtained from the pseudostems of the plant once the fruit has been harvested, and that each plant only bears fruit once; this is one of the main benefits of banana fibers in comparison with other natural fibers, as this one is obtained from an agricultural residue.
Potential of Banana Fibre for Product Development
Lignocellulosic are used for various applications depending on their composition and physical properties. All varieties of banana trees abound in fibres. In fact almost each and every part of the banana plant gives fibres of various strength, color and beauty and staple length which can be used for various purposes.All varieties of banana trees abound in fibres. In fact, almost each and every part of the banana plant gives fibres of various strength, color and beauty and staple length which can be used for various purposes. Out of the 14-18 sheaths available in a stem, the outermost 4-6 sheaths yield coarse fibre, the outer 6-8 sheath soft lustrous fibre and the rest middle sheath excluding the innermost 4-6 sheaths yield very soft fibres. The quantity of fibre in each sheath depends upon its width and its location in the stem, as does its quality. In addition to fruit production, huge quantity of biomass (pseudostem, leaves, suckers etc.) is generated [7,8].In india, the fibres extracted from pseudostem of banana plant, is being used for preparing ropes, handicrafts, etc. which otherwise can be used for making home furnishings and good quality papers. The major problem of non-adoption of fibre extraction technology is low recovery of fibres leading to high transport cost. This plant has long been a good source for high quality textiles in many parts of the world especially in japan and Nepal [9-11].
Most of the banana fibers produced today is used for ropes and cordage. The resistance of the fibre to the sea water and its natural buoyancy has created a ready market for it in the manufacture of shipping cables. It is also widely used for making power transmission ropes and cordage, wall drilling cables, fishing nets, lines and other types of cordage. Banana fibers are being utilized in various ways in different countries. In japan, banana fibres are being used for making traditional dresses like kimono and kamishimo during earlier periods. Due to its being lightweight and comfortable to wear, it is still being preferred by people there as summer wear. Banana fiber is also used to make fine cushion covers, neck ties, bags, table cloths, curtains, etc. Rugs made from banana silk yarn fibers are also very popular world over. Owing to its high tenacity, banana fibre made as single composite withstands more strain before failure in tensile testing than the hybrid fiber composite. The fiber was extracted by hand stripping using a stripping device applying low pressure to prevent the fibres from breaking [12,13].
Several products have been made from banana fibres around the globe. These include paper board, tissue paper, natural absorbent, bio remediation agent for bacteria in natural water purifier, mushroom production, handicrafts, quality paper cards, tea bags, string thread, high quality fabric material, paper for currency notes, rope for tyeing, dress materials, wedding gowns and barongs, and many more. It is interesting to note that banana fibre is also being used as lining for car interiors [14-16]. Development of softening processes have been reported for the inherently coarse banana fibres making it more suitable for spinning operations, spinning of the softened fibres into yarns, after blending them with suitable natural fibres and testing the physical and mechanical properties of the yarns.The yarns were further converted into fabrics and again assessed for their physical and mechanical properties. The fabrics were further passed through various finishing processes and then tested for all the mechanical and physical properties. The fabrics were further taken for dyeing with two classes of dyes and then assessed for the various fastness properties [17].
The development of green packaging from banana fibre for instant food products has been studied. Variables considered in this issue include packaging design of green packaging from banana fibre for instant food products of the envelope(stand up pouch), box(paper box), paper cups(paper cup), paper bags(zip lock paper bag). Banana fibre has been used to produce packaging to select the quality of the physical, chemical and consumer product safety. Packaging is recycling based that is ecofriendly disposal [18].
Banana is cultivated in about 2.3 lakh hectares of land and the fibre yield is about 8.7 tons. Though banana fibre extraction is not done on any large scale at present, banana fibres are reported to have been spun on the jute spinning machinery and used for hand bags and other fancy articles [19]. Agro based bio fibres have the composition, properties and structure that make them suitable for uses such as composite, textile, pulp and paper manufacture. In addition, bio fibres can also be used to produce fuels, chemicals, enzymes and food. Byproducts produced from the cultivation of corn, wheat, rice, sorghum, barley, surgarcane, pineapple, banana and coconut are the major sources of agro based bio fibres. Likewise, banana fibre based production processes, structure, properties and suitability of these biofibres are to be identified for various industrial applications.
Influence of Alkali Treatment on Fibre Properties
The use of natural lignocellulose fibres in the manufacture of composites is increasing day by day [20]. Natural lignocellulose fibres, such as sisal, hemp, coir, kenaf and jute, have low density, good thermal properties, better specific strength, ecofriendly nature and can be used as replacement for glass fibres during composite manufacturing [21,22]. Banana fibres, due to its high specific strength can be used as replacement of glass fibres as reinforcement in the manufacture of composites. Banana fibre is extracted from the pseudo stem waste of the plant after harvesting the fruits. Like any other ligno cellulosic fibre, the major constituents of these fibres are cellulose, lignin, and hemicelluloses [23]. The removal of lignin and hemicellulose substances and roughening of surface is required to improve the interfacial strength of composites [24]. Banana fibres are hydrophilic and have poor adhesion with the matrix materials. To improve adhesion of the natural fibres with matrix materials various treatments, such as alkali, acetylation and benzoylation, are given. Among all these treatments, mercerization or alkali treatment is a versatile one, which brings about changes in dimensions, fine structure, chemical composition, morphology, and crystalline component as well as it improves the wettability, resin pick up of natural fibres like coir, sisal, flax and cotton [25,26]. Alkali treatment improves adhesion between these hydrophilic fibres and the hydrophobic matrix by roughening and exposing more cellulose on the surface.
The alkali treatment modifies the chemical constituents which results in changes in mechanical properties, surface roughening, crystallinity and also in the thermal behavior of fibres [27,28]. Available literature reveals that NaOH treatment removes the binding materials, depending on the treatment time, concentration of NaOH used, temperature of treatment and liquor ratio. Study on effect of NaOH treatment on properties of banana fibre has already been performed by few researchers [29,30]. The effect of NaOH concentration on fibre yield (extraction) from the pseudo stem has also been reported [31]. However, the changes in the fibre due to such treatment at various levels are unknown. This is essential for optimum use of alkali and also to avoid degradation of fibres which will happen at higher concentration treatments. Similarly, the effect of NaOH concentration on the other fibre properties is not yet been studied. Hence in this study, the banana fibres are treated with sodium hydroxide (NaOH) at three different concentrations of 10, 15 and 20% and the treated fibres are tested for chemical composition and physical, morphological, structural and thermal properties.
It is found that the hemicellulose and lignin removal occur till 15% NaOH treatment concentration, and after that there is no much removal occurred. In line with those finding, the density of the fibre also shows an increment up to 15% NaOH and further increment in alkali percentage reduces the density. The moisture regain of the banana fibre also shows the same trend as that of density [32]. At 20% NaOH treatment, the moisture regains are found higher than at 15% NaOH treatment. Increment in the NaOH concentration also increases the lignin and hemicelluloses removal percentage, which is confirmed by the scanning electron microscope analysis. The breaking strength and the tenacity values of the banana fibre increase with NaOH concentration up to 15%. Further increment in alkali concentration degrades the fibre. The removal of lignin and hemicellulose contents from the banana fibre is confirmed by the FTIR and crystallinity analyses. The thermal stability analysis also confirms that the alkali treatment improvs the thermal stability value up to 15% NaOH concentration. The colour assessment studies show that the appearance of banana fibre becomes darker and red in colour due to the alkali treatment.
Production of Technical Textile Reinforced Composites
The rising interest in natural fibers in the composites field is undeniable, mainly due to sustainability, but also because of their good mechanical properties and low cost. The differences observed among different natural fibers are due to their chemical composition, origin, climate conditions, etc. On average, vegetable fibers are made of 60%–70% of cellulose, 10%–20% of hemicellulose, 5%–15% of lignin and up to 2% of pectin and waxes [33]. Banana fiber is obtained from the superimposed leaves forming the pseudostem of the plant, which currently has no use, apart from a low percentage dedicated to cattle feed. It belongs to Musa genre, as a monocot. Banana is the most important crop in Canary Islands, which are the most important producers of bananas in Europe. It is important to highlight that fibers are obtained from the pseudostems of the plant once the fruit has been harvested, and that each plant only bears fruit once; this is one of the main benefits of banana fibers in comparison with other natural fibers, as this one is obtained from an agricultural residue.
The use of natural fibers as reinforcement of polymeric parts has been widely studied, special focusing on injection molding technology. In fact, around 21,000 tons of natural fibers were used in 2003 in the European industry; the most relevant fibers for the industrial production of plastic composites are flax, sisal and hemp. Natural fibers are less harmful to humans, machinery and the environment, thus being realistic alternatives to glass fiber [34]. Some studies have also been carried out for the compression molding technology, some withlong fibers and others with woven fibers, both for thermoset and thermoplastic polymers [35-39]. These studies show that specific mechanical properties of natural fibers composites are similar to those reinforced with glass fiber, although mechanical properties under humid conditions show an important decrease for the natural fiber composites, due to their moisture absorption. These studies mainly focus on the production of non-structural parts for the automotive sector. It is known that mechanical properties of composites strongly depend on the orientation of the fibers, getting better properties when the fiber is woven and placed in the composite in an appropriate orientation. The BANTEX project (MAT2013-47393-C2-1-R) is aimed at obtaining a composite material made of woven banana fibers. Woven fabrics have the advantage of enabling the orientation of the fibers, allowing control of the density of the fabric and its mechanical properties. Nonwovens provide multiaxial orientation but lower and non-predictable mechanical properties. There is wide bibliography about the production of composite materials with natural fibers (flax, hemp, jute) in woven and non-woven fabrics [40-43]; however, no references have been found in the use of banana fibers to produce them. Furthermore, the use of banana fibers to produce yarns for technical textile products has not been reported.
Banana fibers are made of cellulose (43.6%), hemicellulose (14%), lignin (11%) and other substances (such as pectin, wax, 31.4%) [44]. Chemical methods for fiber extraction are usually performed with NaOH, although other chemicals are also used (KMnO4, benzoyl chloride, stearic acid, among others); these processes may cause environmental problems due to the need for treating the residues produced. Mechanical means are not able to remove the non-cellulosic constituents (lignin). An alternative is the use of biological processes, such as the immersed or solid-state fermentations. Enzymatic means are considered more environmentally friendly, and also avoid the fibers breakage, while altering the properties of the cellulosic fibers [45-48]. There are different parameters which affect the enzyme choice, such as the type of substrate, composition, size, lignin content, etc. Previous studies show Pectinase and Xylanase as the most suitable ones for fiber extraction [49,50]. Enzymatic treatments have been applied to hemp, flax or pineapple for fiber refining. Celullases are used to remove fibrils from the surface and increase the smoothness of the fiber, although this treatment can also damage the fibers and reduce their mechanical properties. Pectinases are used in the textile industry for retting and degumming fiber crops, as they are capable of breaking down complex molecules of plant tissues into simpler ones, such as galacturonic acid; on the other hand, endoglucanases only act on amorphous celluloses [51].
Hemicellulases are able to reduce water absorption by pentosan hydrolysis; xylanase and mannanase are used to dissolve hemicellulose (mainly xylan and glucomannan, respectively) [52]. Tests have been performed using a cocktail of two different enzymes made of pectinase and hemicellulase. In this research, different formulations of the enzymatic treatment have been applied to the banana fibers in order to determine the optimal conditions (time, temperature, enzymes content, bath renewal, fiber/enzymes ratio, etc.) for the refining process, in order to obtain a banana textile grade fiber. Fibers have been characterized prior to and after the enzymatic treatment, in terms of length, diameter and thermal stability. The spinning process at the lab scale has taken place, resulting in the production of a yarn with enough quality to be woven and produce a technical textile suitable for composite reinforcement.
The enzymatic treatment has proven to be useful for banana fiber treatment, achieving an improvement in terms of cleanliness and fibrillation. The most effective enzyme for banana fiber treatment is poligalacturonase (Biopectinase K), showing a high specific activity and being specific for substrates not damaging the cellulosic structure of fibers [53]. Long duration treatments (24 h, 48 h and 7 days) did not provide good results, due to enzyme deactivation. 6 h was optimal to obtain a textile grade banana fiber.Optimal conditions for banana fiber enzymatic treatment are: 100% Biopectinase K, 6 h; 45oC, pH = 4.5, with bath renewal after 3 h.Stability studies have demonstrated that over 80% of its activity takes place in the first 3 h; afterwards, the enzyme activity decreases reaching 12% 24 h later.Enzymatic treatments improve the thermal stability of fibers by the removal of pectin and hemicellulose, while producing a slight decrease in mechanical properties, probably due to defibrillation found under SEM observations. Banana fiber can be spun to produce yarns, mixed or not mixed with other fibers, while the most suitable for industrial scale-up without major equipment changes would be the blend of banana fiber and wool. Banana/PP yarn shows higher tenacity than flax/PP yarn and is more homogeneous
Conclusion
Banana is a natural bast fibre which has wide range of uses in handicraft product developments such as mat, rope and twines, but only 10% of its pseudo stem is being used for making products and remaining is waste or used as fertilizer. As it has a property like weather proof, UV protection (because of lignin content), moisture absorption, anti-oxidant and biodegradable, etc., it can be used to make a variety of products that help farmers economically and have wide scope to create new market. Recent studies have indicated that banana fibre possesses a lot of advantageous physical and chemical properties which can be used a very good raw material for the textile and packaging industry [54]. Banana fibres treated with varied concentrations of caustic soda show improvement in cellulose content, lignin removal, tenacity, crystallinity, and thermal resistance till 10% concentration, and after that no improvement is observed beyond 15%. Colour has turned the fibre towards darker side slightly aesthetically unappealing. It is noted that the 15% NaOH concentration is optimum for treating banana fibres used as reinforcement.
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#Bannana fibres#enzymatic treatment#value addition composites#Alkali treatment#reinforcement#sustainability#Gokarneshan N*#OAJBGSR#JBGSR#biogeneric publishers
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Steel Wire Rope And Plastic Rope Market To Witness Growth Acceleration By 2028
Global Steel Wire Rope and Plastic Rope Market: Overview
One of the most multi-functional pieces of mechanical machinery to be used across industries, ropes are made of varied material, which determines their utility, performance and service life. The development of new and advanced fibres have led to high performance ropes, which in turn have led to a rise in their applications. As higher breaking loads and increased abrasion resistance and fatigue resistance become more and more important, the global steel wire rope and plastic rope market is looking at an upward trajectory. Projected to grow at a moderate rate.
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Global Steel Wire Rope and Plastic Rope Market: Notable Development
June 2017: Agreement between PSC Crane and Rigging from Piqua signed for supply of Plasma synthetic rope slings. The slings, as a lifting and lowering solution, are seen as an evolutionary development in the world of rope – 7 times lighter than wire ropes and 1/2x the size of a round one. These are expected to stiffen the competition for steel wire ropes and plastic ropes market in the coming years.
April 2018: Samson, through its partnership with Baitra, increased its distribution capacity in Spain; it increased facility size by a factor of 6. This might be read as the partners’ foray into untapped territory created by an increase in demand.
March 2019: Turbolite M, an 8 strand compacted hybrid hoist rope with high strength and fatigue resistance, developed which is helping break new grounds in underground mining.
FRES: Developed by National Oilwell Varco, Fibre Rope Extension System (FRES) can help increase lifting capacity of existing steel rope cranes for deep-water operations
Some of the most prominent competitors operating in the competitive landscape of global steel wire rope and plastic rope market include –
WireCo World Group Inc
Bekaert SA
Tuefelberger Holding AG
Cortland Limited
DSR
Samson Rope
Usha Martin
Jiangsu Langshan
Marlow Ropes Ltd
Current focus for most companies to chart growth in the global steel wire ropes and plastic ropes market is through improving efficiency and shelf life. In order to capture opportunities, it is important to focus on process improvement and financial flexibility to invest in the right kind of strategies.
Global Steel Wire Rope and Plastic Rope Market: Key trends
A move for steel sheaves over plastic ones in order to increase life of steel wire ropes is seen as driving adoption of the ropes. Here, it is important to note that good steel comes at a higher price than conventional steel, thereby impacting end-use industries negatively but nonetheless, opening gates to a more durability.
Increase in demand for steel wire ropes and plastic ropes from industries such as marine and fishing, mining, industrial and crane end-use, oil and gas, sports and leisure, and construction is expected for sheer virtue of the ropes being lightweight and sturdy apart from having a low specific gravity and superior elasticity. Besides, these have a high resistance to corrosion and can handle bending stresses exceptionally well.
Global Steel Wire Rope and Plastic Rope Market: Drivers
Owing to excellent impact resistance, flexibility, load-bearing capacity, and lifespan, a swift adoption of steel wire ropes and plastic ropes by industries such as mining and industrial and crane end-use is noted.
Plastic ropes are gaining better foothold, especially in cranes industry due to their ability to withstand harsh conditions during handling, installation and maintenance.
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Global Steel Wire Rope and Plastic Rope Market: Regional Analysis
The APAC (Asia-Pacific) region would be prominent in terms of market value for steel wire ropes and plastic ropes in the forecasted period. China would be a key player; with the country’s industrial activities growing at a steady pace, the demand for steel wire ropes and plastic ropes is predicted to grow. Other countries representing a rosy outlook are India, Indonesia, Thailand and Malaysia. Brazil and GCC (Gulf Cooperation Council) countries are expected to play a key role too.
Global steel wire rope and plastic rope market is segmented based on:
Type of lay
Regular lay
Lang lay
Material type
Polypropylene
Polyester
Nylon
HMPE
Specialty Fibers
Application
Marine & Fishing
Sports & Leisure
Oil & Gas
Industrial & Crane
Mining
Construction
Others
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The global synthetic fibers market size was valued at USD 51,213.0 million in 2016. The superior chemical, physical and mechanical properties of synthetic fibers are expected to support the market growth over the forecast period. Synthetic fibers are derived from polymers and are considered as man-made fibers. They exhibit advantageous properties such as strength, elasticity, lightweight, washability, softness, cost-effectiveness, and special properties such as wrinkle resistance, crease recovery, moisture resistance, and high luster. Owing to these factors, these fibers are preferred in various applications including clothing, home furnishing, automotive, filtration, construction, toys, different types of ropes, and net manufacturing.
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Synthetic Fibre Rope Market Sales,Share, Growth Factors, Trends, Analysis & Forecast, 2020–2027
The research report on the Global Synthetic Fibre Rope Market presents a comprehensive assessment of the market, including future trends, current factors driving the growth of the market, and validated market data. The report is updated with the current economic scenario and business landscape owing to the COVID-19 pandemic. The subsequent economic slowdown and social restrictions have impacted the key segments of the markets. The report provides an extensive analysis of the impact of COVID-19 on the current market scenario and key insights into the future outlook of the market growth. The report also discusses the market segmentation by types, applications, and key regions. Key manufacturers and companies are profiled in the report.
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Over the recent past, chemical and materials industry has observed rapid digital transformation, innovations and advancements in chemical processing, globalization, sustainability, and development of robust supply chain. Increasing incidence of uncertainties in chemical production and development have further increased focus on risk management solutions. Chemical and materials industry supplies raw materials to a number of end-use industries such as petrochemicals, solvents, manufacturing and construction, and healthcare, among others. Increasing integration of advanced technology in the manufacturing and production processes along with a growing focus on producing environmentally sustainable chemicals and materials is further expected to revolutionize the Synthetic Fibre Rope market over the forecast period.
The report further offers key insights into strategic alliances and ventures undertaken by key companies in the market to cater to the growing global demand, capitalize on lucrative opportunities, and gain a robust footing in the market. It focuses on mergers and acquisitions, joint ventures, collaborations, product launches, brand promotions, and deals.
Top Companies Profiled in the Report:
Arboriculture
Cortland Limited
Wireco Worldgroup Inc
Samson Rope Technologies Inc
Southern Ropes
English Braids Ltd
Marlow Ropes Ltd
Teufelberger Holding AG
Bridon International Ltd
Yale Cordage Inc
Lanex A.S
Competitive Outlook:
This market report offer detailed view of import export scenario, recent developments, trade regulations, value chain optimization, production analysis, market share, analyses opportunities in terms of emerging revenue pockets, impact of domestic and localized market players, changes in market, trends, size, segment growth, application niches and dominance, product launches, product approvals, geographical expansions, technological innovations in the market.
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Global Synthetic Fibre Rope Market Segmentation:
By Types:
Polypropylene
Polyester
Polyamide Fiber
Polyethylene
Specialty Fibers
By Applications:
Marine & Fishing
Sports and Leisure
Oil & Gas
Construction
Cranes
Regional Analysis covers:
North America
Europe
Asia Pacific
Latin America
Middle East & Africa
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Key Highlights in the Report:
A detailed analysis of the Synthetic Fibre Rope market through the assessment of different market aspects such as product type, application, end-use verticals, and others.
Qualitative and quantitative analysis along with the market estimation for the forecast period 2021-2027
Detailed analysis of market dynamics such as drivers, restraints, opportunities, and threats
Insights into recent development, business expansion plans, and strategic alliances of the top companies in the market
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Shade Net Market to Undertake Strapping Growth During 2019-2030
Global Shade Net Market: An Overview
A shade net is generally a synthetic fiber net made up of HDPE plastic, which reduces the intensity of direct sunlight according to the necessity of crops or others. Shade nets are used to protect agro products such as plants, vegetables, fruits, and flowers from birds, insects, weather, etc. Therefore, the global shade net market is influenced by the driving factors of agro business. Synthetic fibers used in the manufacturing of shade nets are long-lasting, durable, are easy to install, and have high tensile strength, which drives the demand for these nets. Some plants and crops get affected when they are directly exposed to excessive sunlight, and this increases the demand for shade nets. Poultry farming, commercial farming, and sedentary farming are also done under shade nets. These nets provide uniform shade leading to the better yield of crops. There has been increase in demand from end users such as waterparks, restaurant-resorts, car parking businesses, and playgrounds for the purpose of shading and fencing. More than 20% of fibers from the textile industry is believed to be utilized for shade nets.
Global Shade Net Market: Dynamics
The global shade net market is forecast to grow, owing to the expanding agro-business and technological developments in agricultural processes. The continuous rise in population has increased the demand for agricultural goods. Technological developments in agricultural processes are also increasing the demand for shade nets. Agro shade nets, hail protection nets, thermal nets, insect proofing nets, bird protection nets, and UV stabilized agro ropes are the varieties of shade nets, and are developed according to the requirements of end users. The demand for shade nets has also increased from non-agriculture sectors for fencing, shading, and safety. The global shade net market is also driven by the building and construction industry for safety purposes. Some roads are also covered with shade nets to protect them from excess wind that causes disturbance while driving. Increasing safety rules and regulations by road safety authorities are also expected to drive the growth of the global shade net market.
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Global Shade Net Market: Segmentation
The global shade net market is segmented as follows -
By material, the global shade net market is segmented into –
Polyethylene Thread
HDPE Plastic
Synthetic Fiber
Nylon
PVC
By shade type, the global shade net market is segmented into –
90% Shade Nets
75% Shade Nets
50% Shade Nets
By product type, the global shade net market is segmented into –
Green X Black (UV Protection Nets)
Black x Black (Heat Protection Nets)
White x Black (Light Protection Nets)
Green x Green (Enhance Photosynthesis)
By application, the global shade net market is segmented into –
Agriculture
Animal Husbandry
Greenhouses
Terrace Gardening & Fencing
Building Repairs & Construction
Horticulture and Floriculture
Vermi Compost Units
Restaurant-resort Shading
Waterpark & Swimming Pool Shading and Fencing
Poultry Farming
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Global Shade Net Market: Regional Outlook
Shade nets are utilized in animal husbandry, agriculture, horticulture, and floriculture. The rising demand for shade nets from both, the agricultural and non-agriculture sectors is forecasted to persist in the near future. A large market for shade nets is the Asia Pacific region, which is expected to observe higher demand as compared to other regions during the forecast period. Growing economies such as China, Japan, and India are expected to show increased demand.
Recent Developments in the Global Shade Net Market
On 23 February 2017, the National Research Foundation of South Africa stated that, “spectral quality of photo-selective shade netting improves antioxidants and quality in selected fresh product after postharvest storage”.
On 8 January 2019, the Telangana (India) government, the district horticultural and sericulture department, announced that the department will provide shade nets at 50% subsidy to farmers interested in cultivating vegetables during the summer.
Global Shade Net Market: Key Players
Some of the leading players operating in the shade net market are as follows –
Fiberweb (India) Ltd.
Freudenberg & Co. KG
Low & Bonar PLC
Shakti Polyweave Pvt.
Acme Mills (Pvt.) Ltd.
Garware Technical Fibres Ltd.
Don and Low Ltd.
Koninklijke Ten Cate bv.
Gujarat Craft Industries Ltd.
UNIMIN India, Ltd.
JX Nippon ANC, Inc.
The shade net market report is a compilation of first-hand information, qualitative and quantitative assessment by industry analysts, and inputs from industry experts and industry participants across the value chain. The report provides in-depth analysis of parent market trends, macroeconomic indicators, and governing factors, along with market attractiveness as per segment. The shade net market report also maps the qualitative impact of various market factors on market segments and geographies.
Regional analysis includes –
North America
Latin America
Europe
Middle East and Africa (MEA)
East Asia
South Asia
Oceania
Report Highlights:
A detailed overview of the parent market
Changing market dynamics in the industry
In-depth segmentation of the shade net market
Historical, current, and projected size of the shade net market regarding volume and value
Recent industry trends and developments
Competitive landscape and strategies for key players operating in the market, and products offered by them
Potential and niche segments, geographical regions exhibiting promising growth
A neutral perspective on the performance of the shade net market
Must-have information for shade net market players to sustain and enhance their market footprint
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Synthetic Fibre Rope Market To Observe Exponential Growth By 2020-2026 | Global Marketers
Global Marketers has added the latest research study on Global Synthetic Fibre Rope Market. The report presents a dashboard outline of leading companies covering their successful marketing strategies, market contribution, and recent developments in both historic and present contexts. The report reveals the latest market insights, current situation analysis with upcoming trends, and breakdown of the products and services.
The Synthetic Fibre Rope Market report on the Global Synthetic Fibre Rope Market covers details about market segmentation based on technology, product type, end-user industry, and regional analysis. The report provides a brief overview of the market for Synthetic Fibre Rope and current and future market trends. The report considers 2017-2018 as historical years, 2019 as the base year, and provides an estimate for the forecast period of 2020-2026. The Synthetic Fibre Rope Market report provides a comprehensive analysis in an organized manner in the form of tables, graphs, charts, figures, and diagrams.
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Some of the key players operating in the Synthetic Fibre Rope Market include:
Wireco World Group Samson Rope Technologies Garware-Wall Ropes Ltd. Bridon International Ltd Teufelberger Holding AG Marlow Ropes Ltd. Yale Cordage Inc Juli Sling Cortland Limited Southern Ropes Lanex A.S GRPP English Braids Ltd Taizhou Hongda Katradis Jiangsu Shenyun
Regional Outlook (Revenue in USD Billion; 2020–2026)
North America
Europe
Asia Pacific
Middle East & Africa
Latin America
The Synthetic Fibre Rope Market has witnessed a dynamic change in the market scenario and demands owing to changes in the economic landscape of the world. The report provides market growth and shares analysis with regards to the COVID-19 pandemic. It also covers the analysis of the present and future impact of the crisis on the overall development of the industry.
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Synthetic Fibre Rope Market Segmentation:
Market Segment by Type:
Polypropylene Polyester Polyamide Fiber Polyethylene Others
Market Segment by Applications:
Marine & Fishing Sports and Leisure Oil & Gas Construction Cranes Others
The Synthetic Fibre Rope Market report covers a detailed analysis of the significant market players and their market share and global position. This report s include a SWOT analysis, Porter’s Five Forces Analysis. The report provides comprehensive coverage of the developments and strategic advancements such as mergers and acquisitions, joint ventures, collaborations, product launches, etc. undertaken by the key companies.
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Key Highlights of the Synthetic Fibre Rope Reports:
Comprehensive overview of Synthetic Fibre Rope Market
Changing market dynamics of the Synthetic Fibre Rope industry
In-depth market segmentation by Type, Application, etc.
Current Synthetic Fibre Rope industry trends
The viable landscape of Synthetic Fibre Rope Industry Market
Strategies of key players and product offerings
Key pointers of the Table of Contents:
Chapter 1 Synthetic Fibre Rope Industry Overview
Chapter 2 Production Synthetic Fibre Rope Market Analysis
Chapter 3 Sales Market Analysis
Chapter 4 Consumption Market Analysis
Chapter 5 Production, Sales and Consumption Synthetic Fibre Rope Market Comparison Analysis
Chapter 6 Major Manufacturers Production
Chapter 7 Major Material Analysis
Chapter 8 Major Synthetic Fibre Rope Type Analysis
Chapter 9 Industry Chain Analysis
Chapter 10 Global and Regional Market Forecast
Chapter 11 Major Manufacturers Analysis
Chapter 12 Conclusions
Chapter 13 Appendix
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Aramid (Aramid Fiber) -Market Demand, Growth, Opportunities and Analysis Of Top Key Player Forecast To 2024
Aramid (Aramid Fiber) Industry
Description
Wiseguyreports.Com Adds “Aramid (Aramid Fiber) -Market Demand, Growth, Opportunities and Analysis Of Top Key Player Forecast To 2023” To Its Research Database
This report studies the global Aramid (Aramid Fiber) market status and forecast, categorizes the global Aramid (Aramid Fiber) market size (value & volume) by manufacturers, type, application, and region. This report focuses on the top manufacturers in North America, Europe, Japan, China and other regions (India, Southeast Asia, Central & South America, and Middle East & Africa).
Aramid Fiber is man-made high-performance fiber, with molecules that are characterized by relatively rigid polymer chains. These molecules are linked by strong hydrogen bonds that transfer mechanical stress very efficiently, making it possible to use chains of relatively low molecular weight. Aramid fibers are a class of heat-resistant and strong synthetic fibers. They are used in aerospace and military applications, for ballistic-rated body armor fabric and ballistic composites, in bicycle tires, and as an asbestos substitute. The name is a portmanteau of "aromatic polyamide". They are fibers in which the chain molecules are highly oriented along the fiber axis, so the strength of the chemical bond can be exploited.
As international economic situation is complicated, China's economy is developing rapidly. Global Aramid market demand will maintain steady growth. The global capacity distribution is mainly focused on the area of USA with the share of 34.64% (2016), Europe with 35.42%, and China with11.04%.
The Aramid industry has great development prospects and will remain a steady growth rate in the following few years, but in a decreasing speed. For the past five years 2012-2016, the global compound growth rate is 4.19%. We are still optimistic about the Aramid market. Aramid market is in a developing stage, no matter in developed countries or in developing countries.
The Aramid industry consumption distribution is mainly focused on USA with 32.11% (2016), Europe with 32.93% and China with 16.69%.
The global Aramid (Aramid Fiber) market is valued at 4200 million US$ in 2017 and will reach 4790 million US$ by the end of 2025, growing at a CAGR of 1.7% during 2018-2025.
The major manufacturers covered in this report
Dupont Teijin JSC Kamenskvolokno Kolon Hyosung Huvis TAYHO Bluestar Sinopec Yizheng Chemical Fibre Guangdong Charming Hebei Silicon Valley Chemical Zhaoda Specially Fiber SRO
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Geographically, this report studies the top producers and consumers, focuses on product capacity, production, value, consumption, market share and growth opportunity in these key regions, covering North America Europe China Japan Southeast Asia India Other Regions (India, Southeast Asia, Central & South America and Middle East & Africa)
On the basis of product, this report displays the production, revenue, price, market share and growth rate of each type, primarily split into Para-aramid Fibers Meta-aramid Fibers
On the basis of the end users/applications, this report focuses on the status and outlook for major applications/end users, consumption (sales), market share and growth rate for each application, including Body Armor & Helmet Aerospace Materials Sports Materials Tire High Strength Rope Others
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Table of Contents
Global Aramid (Aramid Fiber) Market Research Report 2018 1 Aramid (Aramid Fiber) Market Overview 1.1 Product Overview and Scope of Aramid (Aramid Fiber) 1.2 Aramid (Aramid Fiber) Segment by Type (Product Category) 1.2.1 Global Aramid (Aramid Fiber) Production and CAGR (%) Comparison by Type (Product Category)(2013-2025) 1.2.2 Global Aramid (Aramid Fiber) Production Market Share by Type (Product Category) in 2017 1.2.3 Para-aramid Fibers 1.2.4 Meta-aramid Fibers 1.3 Global Aramid (Aramid Fiber) Segment by Application 1.3.1 Aramid (Aramid Fiber) Consumption (Sales) Comparison by Application (2013-2025) 1.3.2 Body Armor & Helmet 1.3.3 Aerospace Materials 1.3.4 Sports Materials 1.3.5 Tire 1.3.6 High Strength Rope 1.3.7 Others 1.4 Global Aramid (Aramid Fiber) Market by Region (2013-2025) 1.4.1 Global Aramid (Aramid Fiber) Market Size (Value) and CAGR (%) Comparison by Region (2013-2025) 1.4.2 Status and Prospect (2013-2025) 1.4.3 28 Status and Prospect (2013-2025) 1.4.4 North America Status and Prospect (2013-2025) 1.4.5 Europe Status and Prospect (2013-2025) 1.4.6 China Status and Prospect (2013-2025) 1.4.7 Japan Status and Prospect (2013-2025) 1.5 Global Market Size (Value) of Aramid (Aramid Fiber) (2013-2025) 1.5.1 Global Aramid (Aramid Fiber) Revenue Status and Outlook (2013-2025) 1.5.2 Global Aramid (Aramid Fiber) Capacity, Production Status and Outlook (2013-2025)
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7 Global Aramid (Aramid Fiber) Manufacturers Profiles/Analysis 7.1 Dupont 7.1.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.1.2 Aramid (Aramid Fiber) Product Category, Application and Specification 7.1.2.1 Product A 7.1.2.2 Product B 7.1.3 Dupont Aramid (Aramid Fiber) Capacity, Production, Revenue, Price and Gross Margin (2013-2018) 7.1.4 Main Business/Business Overview 7.2 Teijin 7.2.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 7.2.2 Aramid (Aramid Fiber) Product Category, Application and Specification 7.2.2.1 Product A 7.2.2.2 Product B 7.2.3 Teijin Aramid (Aramid Fiber) Capacity, Production, Revenue, Price and Gross Margin (2013-2018) 7.2.4 Main Business/Business Overview 7.3 JSC Kamenskvolokno 7.4 Kolon 7.5 Hyosung 7.6 Huvis 7.7 TAYHO 7.8 Bluestar 7.9 Sinopec Yizheng Chemical Fibre 7.10 Guangdong Charming 7.11 Hebei Silicon Valley Chemical 7.12 Zhaoda Specially Fiber 7.13 SRO
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Synthetic Fibre Rope Market Size, Demand, Analysis, On-Going Trends, Status, Forecast 2026
The Global Synthetic Fibre Rope Market Report offers market insights to the reader to improve their leadership against the global landscape, including industry dynamics, segmentation, competition, and regional growth. The key players in the sector have adopted business strategies for overall expansion and for the increase in their production capacities to address the increasing demands for artificial grass for numerous applications. New and emerging traders in the industry will face fierce competition from the traditional traders driven by the incorporation of new technological innovations, reliability, and long-standing product portfolio. This report sheds light on the evolution of the Synthetic Fibre Rope market along with the magnitude of competition and valuation, among other things. The Synthetic Fibre Rope Market is broadly segregated depending on the expected updates in the improvement of parameters, for instance, quality, credibility, end-user solicitation, and applications, among others.
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This report has classified the global Synthetic Fibre Ropes market by top manufacturers, with production, price, revenue (value) and market share for each manufacturer-
Arboriculture, Cortland Limited, Wireco Worldgroup Inc, Samson Rope Technologies Inc, Southern Ropes, English Braids Ltd, Marlow Ropes Ltd, Teufelberger Holding AG, Bridon International Ltd, Yale Cordage Inc, Lanex A.S
This report comprises of the existing framework, constrictions, and also has a detailed elucidation of the substantial information associated with the present circumstances and future trajectory that might impact the growth of the sector. The study gives an exhaustive outlook of the industry while focusing on the internal and external aspects for the current advancements, parameters, and establishments.
The report analyses key geographies, including the USA, UK, Europe, Asia Pacific, and Latin America. The leading players in the Synthetic Fibre Rope Market and their regional presence across the globe are estimated on factors like production capacity, utilization ratio, consumer base, demand, and supply chain, profit margin, and merchants. Additionally, the Synthetic Fibre Rope market research report also gives an in-depth analysis of the following aspects:
This report has segmented theglobal Synthetic Fibre Rope market by product type with production, revenue, price, market share and growth rate of each type.
Polypropylene
Polyester
Polyamide Fiber
Polyethylene
Specialty Fibers
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This report has segmented the market by end application/users with consumption (sales), market share and growth rate of global Synthetic Fibre Ropes for each application.
Marine & Fishing
Sports and Leisure
Oil & Gas
Construction
Cranes
Highlights the following key factors:
1) Business description-Detailed description of a firm’s operations and business segments.
2) Corporate strategy – Analyst’s summarization of the company’s business strategy.
3) SWOT Analysis – A detailed analysis of the company’s strengths, weaknesses, opportunities, and challenges.
4) Company history – A company’s evolution, highlighting its key events through the years.
5) Major products and services – A list of flagship products, services, and brands of the company.
6) Key competitors – A list of key competitors of the company.
7) Important locations and subsidiaries – A list and contact details of key locations and subsidiaries of the company.
8) Detailed financial ratios for the past five years – The latest financial ratios derived from annual financial statements released by the company in the last five years.
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The growth of this market across the globe is dependent on multiple factors; including consumer base of several Synthetic Fibre Rope products, inorganic growth models adopted by companies, price volatility of feedstocks, and product innovation, along with their economic prospects in both producer and consumer nations.
Overall, this report provides a clear view of every vital factor of the market without the need to refer to any other research reports or data sources. Our report will equip you with all the strategically vital facts about the past, present, and future of the market.
#Synthetic Fibre Rope Market#Synthetic Fibre Rope Market size#Synthetic Fibre Rope Market share#Synthetic Fibre Rope Market trends
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Steel Wire Rope and Plastic Rope Market Analysis By Trends, Forecast
Global Steel Wire Rope and Plastic Rope Market: Overview
One of the most multi-functional pieces of mechanical machinery to be used across industries, ropes are made of varied material, which determines their utility, performance and service life. The development of new and advanced fibres have led to high performance ropes, which in turn have led to a rise in their applications. As higher breaking loads and increased abrasion resistance and fatigue resistance become more and more important, the global steel wire rope and plastic rope market is looking at an upward trajectory. Projected to grow at a moderate rate.
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Global Steel Wire Rope and Plastic Rope Market: Notable Development
June 2017: Agreement between PSC Crane and Rigging from Piqua signed for supply of Plasma synthetic rope slings. The slings, as a lifting and lowering solution, are seen as an evolutionary development in the world of rope – 7 times lighter than wire ropes and 1/2x the size of a round one. These are expected to stiffen the competition for steel wire ropes and plastic ropes market in the coming years.
April 2018: Samson, through its partnership with Baitra, increased its distribution capacity in Spain; it increased facility size by a factor of 6. This might be read as the partners’ foray into untapped territory created by an increase in demand.
March 2019: Turbolite M, an 8 strand compacted hybrid hoist rope with high strength and fatigue resistance, developed which is helping break new grounds in underground mining.
FRES: Developed by National Oilwell Varco, Fibre Rope Extension System (FRES) can help increase lifting capacity of existing steel rope cranes for deep-water operations
Some of the most prominent competitors operating in the competitive landscape of global steel wire rope and plastic rope market include –
WireCo World Group Inc
Bekaert SA
Tuefelberger Holding AG
Cortland Limited
DSR
Samson Rope
Usha Martin
Jiangsu Langshan
Marlow Ropes Ltd
Current focus for most companies to chart growth in the global steel wire ropes and plastic ropes market is through improving efficiency and shelf life. In order to capture opportunities, it is important to focus on process improvement and financial flexibility to invest in the right kind of strategies.
Global Steel Wire Rope and Plastic Rope Market: Key trends
A move for steel sheaves over plastic ones in order to increase life of steel wire ropes is seen as driving adoption of the ropes. Here, it is important to note that good steel comes at a higher price than conventional steel, thereby impacting end-use industries negatively but nonetheless, opening gates to a more durability.
Increase in demand for steel wire ropes and plastic ropes from industries such as marine and fishing, mining, industrial and crane end-use, oil and gas, sports and leisure, and construction is expected for sheer virtue of the ropes being lightweight and sturdy apart from having a low specific gravity and superior elasticity. Besides, these have a high resistance to corrosion and can handle bending stresses exceptionally well.
Global Steel Wire Rope and Plastic Rope Market: Drivers
Owing to excellent impact resistance, flexibility, load-bearing capacity, and lifespan, a swift adoption of steel wire ropes and plastic ropes by industries such as mining and industrial and crane end-use is noted.
Plastic ropes are gaining better foothold, especially in cranes industry due to their ability to withstand harsh conditions during handling, installation and maintenance.
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Global Steel Wire Rope and Plastic Rope Market: Regional Analysis
The APAC (Asia-Pacific) region would be prominent in terms of market value for steel wire ropes and plastic ropes in the forecasted period. China would be a key player; with the country’s industrial activities growing at a steady pace, the demand for steel wire ropes and plastic ropes is predicted to grow. Other countries representing a rosy outlook are India, Indonesia, Thailand and Malaysia. Brazil and GCC (Gulf Cooperation Council) countries are expected to play a key role too.
Global steel wire rope and plastic rope market is segmented based on:
Type of lay
Regular lay
Lang lay
Material type
Polypropylene
Polyester
Nylon
HMPE
Specialty Fibers
Application
Marine & Fishing
Sports & Leisure
Oil & Gas
Industrial & Crane
Mining
Construction
Others
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Global Synthetic Fibre Rope Market: Current Analysis, Development History and Estimated Forecast to 2025
Global Synthetic Fibre Rope Market: Current Analysis, Development History and Estimated Forecast to 2025
Global Synthetic Fibre Rope Market Statistics, Technology, Future Trends, Forecasting 2025
The report offers a comprehensive analysis of Synthetic Fibre Rope, standing on the readers’ perspective, delivering detailed market data and penetrating insights. It assesses the impact of the technological advancements, changes in investment habits, and in-depth overview of Product Specification. This…
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