Thermoset Composites Market reports and Global Analysis

 Thermoset Composites Market reports and Global Analysis

Thermoset Composites , Industry Analysis Report, Regional Outlook, Application Development, Growth Potential, Price Trends, Competitive Market Share & Forecast, 2025 ? 2035, Chem Reports

Global analysis of the thermoset composites market including market trends, applications, and growth forecasts.

Pages: 230

Format: PDF

Date: 11-2025

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Chem Reports projects that the Thermoset Composites market will grow steadily from 2025 to 2035, increasing from USD XX million in 2025 to USD XX million by 2035, at an estimated CAGR of XX%. The study uses 2024 as the base year, with market forecasts spanning 2025–2035.

1. Market overview

The Thermoset Composites market comprises fiber-reinforced materials in which glass, carbon, or other fibers are embedded in a thermosetting resin matrix (such as epoxy, vinyl ester, phenolic, and polyurethane). Once cured, these resins form crosslinked, infusible structures that deliver high strength-to-weight ratios, dimensional stability, chemical resistance, and long-term durability.

Thermoset composites are widely used in marine, construction and infrastructure, pipes and tanks, electrical and electronics, transportation, and various industrial applications. Key growth drivers include lightweighting and corrosion resistance demands, long service-life requirements in harsh environments, and the replacement of metals and traditional materials in structural and semi-structural uses. Chem Reports projects that the Thermoset Composites market will grow from USD XX million in 2025 to USD XX million by 2035, at an estimated CAGR of XX%, based on a 2024 base year and historical data from 2020–2024.

2. Market structure snapshot

  • By fiber type:
    • Glass fiber thermoset composites: Dominant volume share; used in marine, construction, pipes & tanks, electrical, general industrial.
    • Carbon fiber thermoset composites: Higher-performance, higher-cost; used where weight savings and stiffness are critical.
    • Other fiber composites: Aramid, basalt, natural fibers in niche or emerging applications.
  • By resin type:
    • Vinyl ester: Corrosion-resistant, widely used in marine, tanks, pipes.
    • Epoxy: High-performance structural applications; aerospace-grade and advanced industrial uses.
    • Phenolic: Fire, smoke, and toxicity (FST) critical areas such as transportation and some electrical applications.
    • Polyurethane & others: Specific performance profiles, impact resistance, flexibility, or processing advantages.
  • By manufacturing process:
    • Infusion processes (e.g., vacuum infusion, RTM): Complex shapes, controlled fiber volume, lower emissions.
    • Compression molding: High-rate production of semi-structural parts.
    • Injection molding (for certain thermoset systems): Medium-to-high volume components.
    • Pultrusion: Continuous profiles like beams, rebar, ladders, cable trays.
    • Other processes: Hand lay-up, filament winding, SMC/BMC, etc.
  • By key end-use industries:
  • Marine; Construction & infrastructure; Pipe & tank; Electrical & electronics; Other industrial and specialty uses.

3. Key market players

  • Owens Corning
  • Toray Industries Inc.
  • Jushi Group Co., Ltd.
  • Teijin Limited
  • Chongqing Polycomp International Corporation (CPIC)
  • SGL Group
  • PPG Industries Inc.
  • Huntsman Corporation
  • Hexcel Corporation
  • Mitsubishi Rayon Co., Ltd.
  • Cytec Industries Inc. (now part of Solvay)
  • Kemrock Industries and Exports Limited
  • Taekwang Industries Co. Ltd.
  • Carbon Mods
  • Hexion Inc.
  • Johns Manville Corporation
  • AGY Holdings Corp.

These companies participate across the value chain as fiber producers, resin suppliers, and composite fabricators, offering both materials and application-engineered solutions.

4. SWOT analysis

4.1 Strengths

  • High performance-to-weight ratio
    Point: Thermoset composites deliver excellent stiffness, strength, and fatigue performance at significantly lower weight than metals, enabling lightweight structures in marine, infrastructure components, and equipment.
  • Superior corrosion and chemical resistance
    Point: Vinyl ester, epoxy, and other thermoset systems provide long-term resistance to harsh environments, making them ideal for pipes, tanks, and marine hulls where metals corrode.
  • Design and processing flexibility
    Point: A broad range of processes (infusion, pultrusion, compression molding) allows tailored geometries, fiber architectures, and property combinations for specific applications.
  • Dimensional stability and long service life
    Point: Crosslinked thermosets offer good creep resistance and dimensional stability over time, reducing maintenance and lifecycle costs.
  • Strong presence in high-value niches
    Point: Carbon fiber thermosets, phenolic and advanced epoxies are entrenched in high-spec segments where substitution is difficult.

4.2 Weaknesses

  • Limited recyclability and end-of-life options
    Point: Thermosets cannot be remelted, making recycling complex and costly; disposal and regulatory scrutiny around waste handling are intensifying.
  • Longer cure times vs. thermoplastics
    Point: Many thermoset processes involve relatively slow curing, constraining cycle times and hampering ultra-high-volume production.
  • Higher upfront material and processing costs
    Point: Compared with low-cost metals or polymers, thermoset composites often have higher material costs and require specialized labor and equipment.
  • Design and engineering complexity
    Point: Performance depends heavily on fiber orientation, resin choice, and process control, requiring advanced engineering expertise and sometimes long development cycles.

4.3 Opportunities

  • Infrastructure renewal and corrosion-resistant solutions
    Point: Replacement of corroded steel structures in bridges, rebar, pipe & tank, and coastal infrastructure presents significant opportunities for durable composite systems.
  • Lightweighting in transport and industrial equipment
    Point: Although this segment is more prominently associated with thermoplastic composites in autos, thermosets still see growing use in rail, heavy vehicles, marine, and specialized transportation.
  • Energy and environmental applications
    Point: Composites in wind turbine components, chemical processing equipment, and environmental systems (scrubbers, flue gas ducts) rely heavily on thermoset matrices.
  • Emerging markets and industrialization
    Point: Growing construction and industrial activity in Asia-Pacific, the Middle East, and Latin America is boosting demand for composite pipes, tanks, panels, and utility structures.
  • Material and process innovation
    Point: Fast-curing resins, low-styrene/low-VOC formulations, bio-based resins, and improved infusion technologies can open new applications and reduce total cost.

4.4 Threats

  • Competition from metals and thermoplastic composites
    Point: Improved aluminum, high-strength steels, and increasingly advanced thermoplastic composites challenge thermosets in some structural and semi-structural areas, especially where high production rates and recyclability matter.
  • Raw material and energy price volatility
    Point: Fluctuations in epoxy precursors, styrene, and other key raw materials affect margins and contract pricing.
  • Environmental and regulatory pressure
    Point: Emissions from certain resins (e.g., styrene in polyester/vinyl ester) and the lack of straightforward recycling routes expose the industry to regulatory risk and customer scrutiny.
  • Economic cycles impacting core sectors
    Point: Capital-intensive markets like marine, construction, and industrial installations are sensitive to macroeconomic downturns, delaying projects and deferring composite adoption.

5. Porter’s Five Forces analysis

5.1 Competitive rivalry — Moderate to high

  • Label: Fragmented fabricator base, concentrated material suppliers
  • Details:
  • Global fiber and resin suppliers (e.g., Toray, Owens Corning, Hexcel, Hexion) compete on performance, reliability, and cost.
  • Numerous regional composite fabricators and molders compete aggressively on price for standard marine, construction, and industrial parts.
  • Differentiation is strongest where certification, long-term durability, or complex engineering is required.

5.2 Threat of new entrants — Moderate

  • Label: Capital and expertise barriers, but regional entry feasible
  • Details:
  • Starting a small or mid-sized fabrication business (e.g., for marine or construction parts) is relatively accessible, especially in lower-cost regions.
  • However, entering at scale with advanced processes, quality systems, and certifications (e.g., for critical infrastructure, aerospace-grade applications) requires substantial investment and reputation building.
  • New resin or fiber producers face high capital and R&D barriers.

5.3 Bargaining power of suppliers — Moderate

  • Label: Fiber and resin suppliers can exert influence
  • Details:
  • Key raw materials include glass and carbon fibers, epoxy and other thermoset resins, and specialty additives; a limited number of global producers supply critical grades.
  • In periods of tight supply (e.g., carbon fiber or epoxy disruptions), suppliers may gain pricing power.
  • Larger composite producers often mitigate this via multi-sourcing and long-term agreements.

5.4 Bargaining power of buyers — Moderate to high

  • Label: Stronger for large OEMs and EPCs
  • Details:
  • Major marine OEMs, construction firms, EPC contractors, utilities, and industrial customers negotiate aggressively on cost, performance, and warranties.
  • For standardized parts, competition between fabricators increases buyer leverage.
  • In specialized, certified applications (e.g., critical chemical tanks, structural rebars), switching costs and qualification requirements can reduce buyer power.

5.5 Threat of substitutes — Moderate

  • Label: Metals, thermoplastics, and coated systems
  • Details:
  • Coated or lined steel, reinforced concrete, thermoplastic pipes and tanks, and high-performance alloys may substitute in some applications, especially where upfront cost dominates.
  • In environments requiring extreme corrosion resistance or high stiffness-to-weight, thermoset composites often retain a clear advantage, limiting substitution.

6. Strategic implications (brief)

  • Positioning: Thermoset composites should be positioned as durable, corrosion-resistant, and lightweight solutions that reduce lifecycle cost in marine, infrastructure, industrial, and energy applications.
  • Strategic focus: Attractive areas include corrosion-resistant pipe & tank systems, infrastructure reinforcement, marine and offshore structures, and high-performance electrical and industrial components.
  • Differentiation: Competitive advantage will come from application engineering expertise, fast and low-VOC resin systems, improved sustainability (repair, reuse, and recycling approaches), and strong partnerships with EPCs, OEMs, and specifiers.

The primary objective of this report is to provide readers with a clear and comprehensive understanding of the Thermoset Composites market—its definition, segmentation, growth potential, influential trends, and the challenges shaping its development. Extensive research and analysis were conducted during the preparation of this study. All data and insights were sourced from credible references such as company websites, annual reports, industry journals, and expert interviews, and were thoroughly validated by industry specialists. Visual tools including charts, graphs, and diagrams are used throughout the report to enhance clarity and support data interpretation.

Points Covered in the Report

  • Market Participants: Detailed analysis of manufacturers, raw material suppliers, equipment providers, end users, traders, and distributors.
  • Company Profiles: Comprehensive profiles covering production capacity, pricing, revenue, costs, gross margins, sales volume, consumption patterns, growth rates, import/export data, supply chain insights, future strategies, and technological developments.
  • Historical & Forecast Data: Market data from 2020–2024 and projections from 2025–2035.
  • Growth Drivers: In-depth examination of the factors driving market expansion across various end-use industries.
  • Segmentation Analysis: Data and insights by manufacturer, region, type, application, and other relevant categories. Custom research can be added based on specific client requirements.
  • SWOT Analysis: A complete assessment of the market’s strengths, weaknesses, opportunities, and threats.
  • Expert Insights: The conclusion section includes perspectives and opinions from industry experts.

Key Reasons to Purchase

  • Gain a deep understanding of the global Thermoset Composites market and its commercial landscape through detailed, data-driven analysis.
  • Evaluate production processes, identify major challenges, and explore solutions to mitigate development risks.
  • Understand the key driving and restraining forces influencing market growth and their impact on global dynamics.
  • Learn about strategic initiatives and market approaches adopted by leading industry players.
  • Obtain insights into future market outlook and long-term growth prospects.
  • Access customized research tailored to specific business needs beyond the standard report structure.

Chapter 1 Industry Overview
1.1 Definition
1.2 Brief Introduction by Major Manufacturing Process
1.2.1 Infusion Process
1.2.2 Compression Molding Process
1.2.3 Injection Molding Process
1.2.4 Pultrusion Process
1.2.5 Other Processes
1.2.6
1.2.7
1.2.8
1.2.9
1.3 Brief Introduction by Major End-Use Industry
1.3.1 Marine
1.3.2 Construction & Infrastructure
1.3.3 Pipe & Tank
1.3.4 Electrical & Electronics
1.3.5 Other End-Use Industries
1.3.6
1.3.7
1.3.8
1.3.9
1.4 Brief Introduction by Major Regions
1.4.1 United States
1.4.2 Europe
1.4.3 China
1.4.4 Japan
1.4.5 India
1.5 Brief Introduction by Major Fiber Type
1.5.1 Glass Fiber Thermoset Composite
1.5.2 Carbon Fiber Thermoset Composite
1.5.3 Other Fiber Composites
1.5.4
1.5.5
1.5.6
1.5.7
1.5.8
1.5.9
1.6 Brief Introduction by Major Resin Type
1.6.1 Vinyl Ester Resin
1.6.2 Epoxy Resin
1.6.3 Phenolic Resin
1.6.4 Polyurethane Resin
1.6.5 Other Thermoset Resins
1.6.6
1.6.7
1.6.8
1.6.9
1.7 Brief Introduction by Major
1.7.1
1.7.2
1.7.3
1.7.4
1.7.5
1.7.6
1.7.7
1.7.8
1.7.9
1.8 Brief Introduction by Major
1.8.1
1.8.2
1.8.3
1.8.4
1.8.5
1.8.6
1.8.7
1.8.8
1.8.9
Chapter 2 Production Market Analysis
2.1 Global Production Market Analysis
2.1.1  Global Capacity, Production, Capacity Utilization Rate, Ex-Factory Price, Revenue, Cost, Gross and Gross Margin Analysis
2.1.2  Major Manufacturers Performance and Market Share
2.2 Regional Production Market Analysis
2.2.1  Regional Market Performance and Market Share
2.2.2 United States Market
2.2.3 Europe Market
2.2.4 China Market
2.2.5 Japan Market
2.2.6 India Market
2.2.7  Market
Chapter 3 Sales Market Analysis
3.1 Global Sales Market Analysis
3.1.1  Global Sales Volume, Sales Price and Sales Revenue Analysis
3.1.2  Major Manufacturers Performance and Market Share
3.2 Regional Sales Market Analysis
3.2.1  Regional Market Performance and Market Share
3.2.2 United States Market
3.2.3 Europe Market
3.2.4 China Market
3.2.5 Japan Market
3.2.6 India Market
3.2.7  Market
Chapter 4 Consumption Market Analysis
4.1 Global Consumption Market Analysis
4.1.1  Global Consumption Volume Analysis
4.2 Regional Consumption Market Analysis
4.2.1  Regional Market Performance and Market Share
4.2.2 United States Market
4.2.3 Europe Market
4.2.4 China Market
4.2.5 Japan Market
4.2.6 India Market
4.2.7  Market
Chapter 5 Production, Sales and Consumption Market Comparison Analysis
5.1 Global Production, Sales and Consumption Market Comparison Analysis
5.2 Regional Production, Sales Volume and Consumption Volume Market Comparison Analysis
5.2.1 United States
5.2.2 Europe
5.2.3 China
5.2.4 Japan
5.2.5 India
5.2.6
Chapter 6 Major Manufacturers Production and Sales Market Comparison Analysis
6.1 Global Major Manufacturers Production and Sales Market Comparison Analysis
6.1.1  Global Major Manufacturers Production and Sales Market Comparison
6.2 Regional Major Manufacturers Production and Sales Market Comparison Analysis
6.2.1 United States
6.2.2 Europe
6.2.3 China
6.2.4 Japan
6.2.5 India
6.2.6
Chapter 7 Major Manufacturing Process Analysis
7.1  Major Manufacturing Process Market Share
7.2 Infusion Process
7.3 Compression Molding Process
7.4 Injection Molding Process
7.5 Pultrusion Process
7.6 Other Processes
7.7
7.8
7.9
7.10
Chapter 8 Major End-Use IndustryAnalysis
8.1  Major End-Use Industry Market Share
8.2 Marine
8.2.1  Sales Analysis
8.3 Construction & Infrastructure
8.3.1  Sales Analysis
8.4 Pipe & Tank
8.4.1  Sales Analysis
8.5 Electrical & Electronics
8.5.1  Sales Analysis
8.6 Other End-Use Industries
8.6.1  Sales Analysis
8.7
8.7.1  Sales Analysis
8.8
8.8.1  Sales Analysis
8.9
8.9.1  Sales Analysis
8.10
8.11.1  Sales Analysis
Chapter 9 Industry Chain Analysis
9.1 Up Stream Industries Analysis
9.1.1 Raw Material and Suppliers
9.1.2 Equipment and Suppliers
9.2 Manufacturing Analysis
9.2.1 Manufacturing Process
9.2.2 Manufacturing Cost Structure
9.2.3 Manufacturing Plants Distribution Analysis
9.3 Industry Chain Structure Analysis
Chapter 10 Global and Regional Market Forecast
10.1 Production Market Forecast
10.1.1 Global Market Forecast
10.1.2 Major Region Forecast
10.2 Sales Market Forecast
10.2.1 Global Market Forecast
10.2.2 Major Classification Forecast
10.3 Consumption Market Forecast
10.3.1 Global Market Forecast
10.3.2 Major Region Forecast
10.3.3 Major Application Forecast
Chapter 11 Major Manufacturers Analysis
11.1 Owens Corning
11.1.1 Company Introduction
11.1.2 Product Specification and Major Types Analysis
11.1.3  Production Market Performance
11.1.4  Sales Market Performance
11.1.5 Contact Information
11.2 Toray Industries Inc.
11.2.1 Company Introduction
11.2.2 Product Specification and Major Types Analysis
11.2.3  Production Market Performance
11.2.4  Sales Market Performance
11.2.5 Contact Information
11.3 Jushi Group Co., Ltd
11.3.1 Company Introduction
11.3.2 Product Specification and Major Types Analysis
11.3.3  Production Market Performance
11.3.4  Sales Market Performance
11.3.5 Contact Information
11.4 Teijin Limited
11.4.1 Company Introduction
11.4.2 Product Specification and Major Types Analysis
11.4.3  Production Market Performance
11.4.4  Sales Market Performance
11.4.5 Contact Information
11.5 Chongqing Polycomp International Corporation
11.5.1 Company Introduction
11.5.2 Product Specification and Major Types Analysis
11.5.3  Production Market Performance
11.5.4  Sales Market Performance
11.5.5 Contact Information
11.6 SGL Group
11.6.1 Company Introduction
11.6.2 Product Specification and Major Types Analysis
11.6.3  Production Market Performance
11.6.4  Sales Market Performance
11.6.5 Contact Information
11.7 PPG Industries Inc.
11.7.1 Company Introduction
11.7.2 Product Specification and Major Types Analysis
11.7.3  Production Market Performance
11.7.4  Sales Market Performance
11.7.5 Contact Information
11.8 Huntsman Corporation
11.8.1 Company Introduction
11.8.2 Product Specification and Major Types Analysis
11.8.3  Production Market Performance
11.8.4  Sales Market Performance
11.8.5 Contact Information
11.9 Hexcel Corporation
11.9.1 Company Introduction
11.9.2 Product Specification and Major Types Analysis
11.9.3  Production Market Performance
11.9.4  Sales Market Performance
11.9.5 Contact Information
11.10 Mitsubishi Rayon Co., Ltd.
11.10.1 Company Introduction
11.10.2 Product Specification and Major Types Analysis
11.10.3  Production Market Performance
11.10.4  Sales Market Performance
11.10.5 Contact Information
11.11 Cytec Industries Inc.
11.11.1 Company Introduction
11.11.2 Product Specification and Major Types Analysis
11.11.3  Production Market Performance
11.11.4  Sales Market Performance
11.11.5 Contact Information
11.12 Kemrock Industries and Exports Limited
11.12.1 Company Introduction
11.12.2 Product Specification and Major Types Analysis
11.12.3  Production Market Performance
11.12.4  Sales Market Performance
11.12.5 Contact Information
11.13 Taekwang Industries Co Ltd.
11.13.1 Company Introduction
11.13.2 Product Specification and Major Types Analysis
11.13.3  Production Market Performance
11.13.4  Sales Market Performance
11.13.5 Contact Information
11.14 Carbon Mods
11.14.1 Company Introduction
11.14.2 Product Specification and Major Types Analysis
11.14.3  Production Market Performance
11.14.4  Sales Market Performance
11.14.5 Contact Information
11.15 Hexion Inc.
11.15.1 Company Introduction
11.15.2 Product Specification and Major Types Analysis
11.15.3  Production Market Performance
11.15.4  Sales Market Performance
11.15.5 Contact Information
11.16 Johns Manville Corporation
11.16.1 Company Introduction
11.16.2 Product Specification and Major Types Analysis
11.16.3  Production Market Performance
11.16.4  Sales Market Performance
11.16.5 Contact Information
11.17 AGY Holdings Corp.
11.17.1 Company Introduction
11.17.2 Product Specification and Major Types Analysis
11.17.3  Production Market Performance
11.17.4  Sales Market Performance
11.17.5 Contact Information
11.18
11.18.1 Company Introduction
11.18.2 Product Specification and Major Types Analysis
11.18.3  Production Market Performance
11.18.4  Sales Market Performance
11.18.5 Contact Information
11.19
11.19.1 Company Introduction
11.19.2 Product Specification and Major Types Analysis
11.19.3  Production Market Performance
11.19.4  Sales Market Performance
11.19.5 Contact Information
11.20
11.20.1 Company Introduction
11.20.2 Product Specification and Major Types Analysis
11.20.3  Production Market Performance
11.20.4  Sales Market Performance
11.20.5 Contact Information
11.21

11.21.1 Company Introduction
11.21.2 Product Specification and Major Types Analysis
11.21.3  Production Market Performance
11.21.4  Sales Market Performance
11.21.5 Contact Information
11.22

11.22.1 Company Introduction
11.22.2 Product Specification and Major Types Analysis
11.22.3  Production Market Performance
11.22.4  Sales Market Performance
11.22.5 Contact Information
11.23

11.23.1 Company Introduction
11.23.2 Product Specification and Major Types Analysis
11.23.3  Production Market Performance
11.23.4  Sales Market Performance
11.23.5 Contact Information
11.24

11.24.1 Company Introduction
11.24.2 Product Specification and Major Types Analysis
11.24.3  Production Market Performance
11.24.4  Sales Market Performance
11.24.5 Contact Information
11.25

11.25.1 Company Introduction
11.25.2 Product Specification and Major Types Analysis
11.25.3  Production Market Performance
11.25.4  Sales Market Performance
11.25.5 Contact Information
11.26

11.26.1 Company Introduction
11.26.2 Product Specification and Major Types Analysis
11.26.3  Production Market Performance
11.26.4  Sales Market Performance
11.26.5 Contact Information
11.27

11.27.1 Company Introduction
11.27.2 Product Specification and Major Types Analysis
11.27.3  Production Market Performance
11.27.4  Sales Market Performance
11.27.5 Contact Information
11.28

11.28.1 Company Introduction
11.28.2 Product Specification and Major Types Analysis
11.28.3  Production Market Performance
11.28.4  Sales Market Performance
11.28.5 Contact Information
11.29

11.29.1 Company Introduction
11.29.2 Product Specification and Major Types Analysis
11.29.3  Production Market Performance
11.29.4  Sales Market Performance
11.29.5 Contact Information
11.30

11.30.1 Company Introduction
11.30.2 Product Specification and Major Types Analysis
11.30.3  Production Market Performance
11.30.4  Sales Market Performance
11.30.5 Contact Information
11.31

11.31.1 Company Introduction
11.31.2 Product Specification and Major Types Analysis
11.31.3  Production Market Performance
11.31.4  Sales Market Performance
11.31.5 Contact Information
11.32

11.32.1 Company Introduction
11.32.2 Product Specification and Major Types Analysis
11.32.3  Production Market Performance
11.32.4  Sales Market Performance
11.32.5 Contact Information
11.33

11.33.1 Company Introduction
11.33.2 Product Specification and Major Types Analysis
11.33.3  Production Market Performance
11.33.4  Sales Market Performance
11.33.5 Contact Information
11.34

11.34.1 Company Introduction
11.34.2 Product Specification and Major Types Analysis
11.34.3  Production Market Performance
11.34.4  Sales Market Performance
11.34.5 Contact Information
11.35

11.35.1 Company Introduction
11.35.2 Product Specification and Major Types Analysis
11.35.3  Production Market Performance
11.35.4  Sales Market Performance
11.35.5 Contact Information
11.36

11.36.1 Company Introduction
11.36.2 Product Specification and Major Types Analysis
11.36.3  Production Market Performance
11.36.4  Sales Market Performance
11.36.5 Contact Information
11.37

11.37.1 Company Introduction
11.37.2 Product Specification and Major Types Analysis
11.37.3  Production Market Performance
11.37.4  Sales Market Performance
11.37.5 Contact Information
11.38

11.38.1 Company Introduction
11.38.2 Product Specification and Major Types Analysis
11.38.3  Production Market Performance
11.38.4  Sales Market Performance
11.38.5 Contact Information
11.39

11.39.1 Company Introduction
11.39.2 Product Specification and Major Types Analysis
11.39.3  Production Market Performance
11.39.4  Sales Market Performance
11.39.5 Contact Information
11.40

11.40.1 Company Introduction
11.40.2 Product Specification and Major Types Analysis
11.40.3  Production Market Performance
11.40.4  Sales Market Performance
11.40.5 Contact Information
Chapter 12 New Project Investment Feasibility Analysis
12.1 New Project SWOT Analysis
12.2 New Project Investment Feasibility Analysis
Chapter 13 Conclusions
Chapter 14 Appendix
Author List
Disclosure Section
Research Methodology
Data Source
Interview List
Global Disclaimer

Market Segmentation

By Market Players

Owens Corning, Toray Industries Inc., Jushi Group Co., Ltd., Teijin Limited, Chongqing Polycomp International Corporation, SGL Group, PPG Industries Inc., Huntsman Corporation, Hexcel Corporation, Mitsubishi Rayon Co., Ltd., Cytec Industries Inc., Kemrock Industries and Exports Limited, Taekwang Industries Co. Ltd., Carbon Mods, Hexion Inc., Johns Manville Corporation, AGY Holdings Corp.

 

By Manufacturing Process

  • Infusion Process
  • Compression Molding Process
  • Injection Molding Process
  • Pultrusion Process
  • Other Processes

 

By End-Use Industry

  • Marine
  • Construction & Infrastructure
  • Pipe & Tank
  • Electrical & Electronics
  • Other End-Use Industries

 

By Fiber Type

  • Glass Fiber Thermoset Composites
  • Carbon Fiber Thermoset Composites
  • Other Fiber Composites

 

By Resin Type

  • Vinyl Ester Resin
  • Epoxy Resin
  • Phenolic Resin
  • Polyurethane Resin
  • Other Thermoset Resins

 

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