Rising demand for glass fibers from automotive & transport, construction, wind energy, pipes & tanks and aerospace industries is likely to boost E-glass fiber yarn & roving market size. These products are light in weight and offer high tensile strength, flexibility, thermal and electrical resistance at minimal cost. Increasing investment in infrastructure development in the U.S. where new public construction accounted for more than billion in 2017 which is likely to have a positive impact on the industry growth.
Seattle, WA -- (SBWIRE) -- 10/24/2019 -- E-Glass or electrical grade glass was originally developed for stand off insulators for electrical wiring. It was later found to have excellent fibre forming capabilities and is now used almost exclusively as the reinforcing phase in the material commonly known as fibreglass.
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Glass fibres are generally produced using melt spinning techniques. These involve melting the glass composition into a platinum crown which has small holes for the molten glass to flow. Continuous fibres can be drawn out through the holes and wound onto spindles, while short fibres may be produced by spinning the crown, which forces molten glass out through the holes centrifugally. Fibres are cut to length using mechanical means or air jets.
Fibre dimension and to some extent properties can be controlled by the process variables such as melt temperature (hence viscosity) and drawing/spinning rate. The temperature window that can be used to produce a melt of suitable viscosity is quite large, making this composition suitable for fibre forming.
As fibres are being produced, they are normally treated with sizing and coupling agents. These reduce the effects of fibre-fibre abrasion which can significantly degrade the mechanical strength of the individual fibres. Other treatments may also be used to promote wetting and adherence of the matrix material to the fibre.
E-Glass is a low alkali glass with a typical nominal composition of SiO2 54wt%, Al2O3 14wt%, CaO+MgO 22wt%, B2O3 10wt% and Na2O+K2O less then 2wt%. Some other materials may also be present at impurity levels.
Properties that have made E-glass so popular in fibreglass and other glass fibre reinforced composite include: Low cost, High production rates, High strength, High stiffness, Relatively low density, Non-flammable, Resistant to heat, Good chemical resistance, Relatively insensitive to moisture, Able to maintain strength properties over a wide range of conditions, Good electrical insulation.
The use of E-Glass as the reinforcement material in polymer matrix composites is extremely common. Optimal strength properties are gained when straight, continuous fibres are aligned parallel in a single direction. To promote strength in other directions, laminate structures can be constructed, with continuous fibres aligned in other directions. Such structures are used in storage tanks and the like.
Random direction matts and woven fabrics are also commonly used for the production of composite panels, surfboards and other similar devices.
The worldwide market for E-Glass Fiber is expected to grow at a CAGR of roughly xx% over the next five years, will reach xx million US$ in 2022, from xx million US$ in 2016.
Market Segment by Manufacturers, this report covers: Jushi Group, Owens Corning Corporation, PPG Industries, CPIC, Taishan Fiberglass (Sinoma), Johns Manville, Nippon Electric Glass, Sichuan Weibo New Material Group, Jiangsu Jiuding New Material, Vetrotex (Saint-Gobain), Lanxess, Changzhou Tianma Group, Ahlstrom.
Market Segment by Type, covers: General-purpose Glass Fibers, Special-Purpose Glass Fibers.
Market Segment by Applications, can be divided into: Construction, Transportation, Industrial, Consumer Electronics.
The E-Glass Fiber market report is a research study that forecasts this business space to accumulate substantial proceeds by the end of the forecast timeline, while recording a modest growth rate over the estimated duration. The report is also inclusive of significant details pertaining to the market dynamics – for example, the myriad driving forces influencing the revenue scope of this industry. Additionally, the market dynamics elaborate on the risks prevalent in this business sphere and the numerous growth opportunities that exist in this vertical.
The E-Glass Fiber market study, in essence, comprises an extensive evaluation of this industry vertical focusing on the regional scope of this market as well as a slew of deliverables – like the insights with regards to market share, revenue estimation, market concentration rate, market competition trends, and sales volume. Further, the E-Glass Fiber market report encompasses information with regards to the sales channels that are adopted by diverse vendors to make sure that the best methodology for product marketing is chosen.
The "Global E-Glass Fiber Market" report establishes the market into various segments of industry verticals, such as volume conveyed (in kilo tons) and the income it produces (in US$). The E-Glass Fiber Market report on patterns and improvements focuses on markets and components, limits, innovations, SWOT Analysis, CAPEX cycle and the changing structure of the market. To give data on the dynamic scene, this report incorporates point by point profiles of E-Glass Fiber market key players.
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