Fiberglass Fabric Market to Witness Notable Growth Analysis, Opportunities, and Future Scope Forecast 2026-2029

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The report "Fiberglass Fabric Market by Fiber Type (E-Glass, S-Glass), Fabric Type (Woven, Non-Woven), Application (Wind Energy, Transportation, Electrical & Electronics, Construction, Marine, Aerospace & Defense), and Region - Global Forecast to 2029", size is expected to reach USD 13.17 billion in 2029 from USD 9.39 billion in 2024, at a CAGR of 7.0% from 2024 to 2029.

Browse in-depth TOC on "Fiberglass Fabric Market".

280 – Tables
57 – Figures
256 – Pages

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The most imperative factors that influence the demand for fiberglass fabrics across different regions include their versatile nature and superior properties like being lightweight, strong, an insulator, and even an anti-corrosive which enables them to be utilized in various fields such as automobiles, aerospace structures, construction, and wind energy. Countries are witnessing rapid growth in the construction industry, this has further led to an increased usage of fiberglass fabric in roofing, wall panels as well as insulation systems due to these structures thermal and durable properties. Manufacturers in the automotive industry are concentrated in using fiberglass fabrics in vehicles to enhance the fuel efficiency and lessen vehicle weight with the purpose of abiding by the rigorous emission regulations. The aerospace industry has also been known to use fiberglass fabric in the interiors and structural materials of aircrafts because they are fire resistant. The increasing attention to renewable resources has also increased the need for fiberglass fabrics especially in the making of wind turbine blades.

E-Glass fiber type segment is anticipated to be the largest segment in Fiberglass fabric market during the forecasted period in terms of value.

The fiberglass fabric market is segmented based on the fiber type i.e. E-Glass, S-Glass and Others. The E-glass fiber segment as a result of its low price and wide range of applications in numerous industries, makes it  a popular choice to be used by manufacturers. E-glass fibers have outstanding strength in tension, are resistant to electricity and corrosion, and possess other properties that are important in construction, automotive, and marine industries. The increasing usage of E-glass in different processes is additionally fueled by the growing need for heavy and sturdy materials while complying with regulations on fuel consumption and pollution levels. Due to the expanding renewable energy Initiative's, particulary in wind blade production, has significantly increased the use of E-glass fiber.

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Nonwoven fabric type is expected to have highest CAGR during forecasting period in terms of value.

The fiberglass fabric market's fabric type segment consists of woven and nonwoven fabric type.  Nonwovens are exceptionally economical, composite in nature, and highly tailored fabrics which can be used in a variety of industries including healthcare, automotive and construction. Nonwoven fabric production involves bonding fibers together chemically, mechanically or thermally which not only strengthens the optic chances of nonwovens, but also contributes to increased filtration efficiency, breathability and durability.

Asia Pacific region is expected to register highest CAGR both in terms of value and volume during forecasted period

The fiberglass fabric market has been studied in North AmericaEuropeAsia PacificLatin America, and Middle East, and Africa. The Asia Pacific is expected to be the fastest-growing market, majorly due to growth of Infrastructure and construction sectors in China and India. The booming wind energy industry of Asia Pacific, especially in China, has become a rapidly growing industry due to increased demand for light and durable fiberglass fabric used in making turbine blades. Electronics is also being driven by strong electronics in this region, with growing demand for PCBs that have fiberglass fabric application for thermal insulation and other electrical applications.

Fiberglass Fabric Companies

Prominent companies include  Owens Corning (US), China Jushi Co., Ltd (China), Saint-Gobain (France), Chomarat (France), TAIWAN GLASS IND. CORP. (Taiwan), Auburn Manufacturing, Inc. (US), SAERTEX GmbH & Co. KG (Germany), BGF Industries (US), PORCHER INDUSTRIES (France), Fothergill Engineered Fabrics Ltd (England), Mid-Mountain Materials Inc. (US), Central Glass Co., Ltd. (Japan), Nitto Boseki Co., Ltd. (Japan), RNG Performance Material, India (India), and Hexcel Corporation (US).  and among others.

Owens Corning (US)

Owens Corning is one of the leading producers of residential and non-residential roofing, glass fiber insulation, and fiber reinforcements. The company is a leading manufacturer of glass fiber reinforcements, commercial and residential building materials, and composite systems. It manufactures glass fibers for the production of composite materials for the electronics, transportation, and infrastructure industries. Owens Corning operates through three segments-Insulation, Composites, and Roofing. It manages its fiberglass business through two of these business segments-Insulation and Composites. Through its Insulation

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The company manufactures and sells glass fiber pipe insulations, energy-efficient flexible duct media, bonded and granulated mineral fiber insulation, and foam insulation used in above- and below-ground construction applications. It also offers thermal and acoustical batts, loose-fill insulation, and foam sheathing for walls and accessories, which are marketed by well-known brand names and trademarks, including Multimat, Multimat Lite, and Multicore.

China Jushi Co., Ltd. (China)

China Jushi Co., Ltd. is a joint-stock company engaged in the production, research, and distribution of fiberglass. It also manufactures plastic floorboards. The company is one of the leading fiberglass fabric manufacturers globally. China Jushi Co., Ltd. offers its fiberglass products through the Glass Fiber segment. It produces E glass and C glass fiberglass products and a range of reinforcement fiberglass products, which include roving’s, chopped strands, stitched combo mats & chopped strand mats, powder & emulsion chopped strand mats, woven rovings, and electrical yarns & fabrics in over 100 product categories with over 1,000 specifications.

As a functional material, the fiberglass offered by the company is used to manufacture pressure vessels, pipes, chemical tanks, electric equipment, and automobile parts. China Jushi Co., Ltd. has a production capacity of 2 million tons of fiberglass.  The company offers its products for the fire services, sports, infrastructure, marine, wind energy, consumer goods, electronics, semiconductor, petrochemical, aerospace, and military sectors. It has four fiberglass production bases, of which three are in China, namely, Tongxiang (Zhejiang Province), Jiujiang (Jiangxi Province), and Chengdu (Sichuan Province), and one production base is in Suez (Egypt). A fifth fiberglass production base in South Carolina (US) is under construction. China Jushi Co., Ltd. has subsidiaries in South Korea, Italy, Spain, India, Canada, France, Japan, Singapore, South Africa, the US, and Hong Kong.

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SAERTEX GmbH & Co. KG (Japan)

SAERTEX GmbH & Co. KG is one of the global leading manufacturers in technical textiles with an emphasis on fiber-reinforced composite materials, especially fiberglass fabrics. The company has gained significant presence in the international market. It has manufacturing plants in Germany, the US, and China. This diversification includes NCF made of glass, carbon, and aramid fibers for the manufacture of various applications in wind energy, automotive, aerospace, and marine. Innovation and sustainability at SAERTEX GmbH & Co. KG are seen to be key values wherein continuous investment in research & development leads to creating advanced composite solutions that evolve with its customers' changing needs. Due to its reputation for superior quality and robust performance, SAERTEX GmbH & Co. KG has won many awards for best in manufacturing and excellence in the services rendered.

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