Composites Market Size & Growth Forecast 2026–2035, By Segments (Product, Manufacturing Process, End-use, Resin Type), Regional Demand Trends (North America, Asia Pacific, Europe), Key Country Insights (U.S., Japan, South Korea, Germany, France, Italy), and Competitive Landscape
Market Size and Growoth Outlook
Composites Market size was estimated at USD 112.26 Billion in 2025 and is projected to grow at a 7.3% CAGR from 2026 to 2035, surpassing USD 227.1 Billion by 2035. The industry revenue for 2026 is assessed at USD 119.44 billion.
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Regional Market Dynamics
- Asia Pacific held a 48.12% share in 2025, supported by large-scale manufacturing, strong industrial demand, established supplier networks, and cost-efficient production that sustain high material consumption.
- North America is expected to grow at an 8.25% CAGR as manufacturers increase adoption of high-performance composites through investments in product development, process optimization, and advanced engineering applications.
Segment Momentum
- Glass Fiber accounted for 63% of the market in 2025 due to its balance of strength, weight reduction, affordability, and dependable performance across high-volume structural and semi-structural manufacturing applications.
- Compression Molding Process is expanding fastest because manufacturers seek faster production cycles, greater consistency, and scalable output to support higher-volume composite manufacturing with improved operational efficiency.
Market Expansion Drivers
- Rising aerospace and automotive lightweighting demand driven by fuel efficiency and emission reduction mandates.
- Expanding wind energy installations accelerating fiber-reinforced composite adoption in turbine blade manufacturing.
- Automation and additive manufacturing advances improving composite production efficiency and reducing material waste.
Leading Market Participants
Global Market Forecast Snapshot
Market Outlook
Top players in the composites market include Toray Industries, Inc. (Japan), Owens Corning (United States), Hexcel Corporation (United States), Solvay S.A. (Belgium), Teijin Limited (Japan), SGL Carbon SE (Germany), DuPont de Nemours, Inc. (United States), PPG Industries, Inc. (United States), China Jushi Co., Ltd. (China), Compagnie de Saint-Gobain S.A. (France).Regional and Segment Outlook
Asia PacificMarket Growth Drivers and Industry Trends
Tighter fuel economy targets and emission reduction rules are reshaping material selection in aircraft and vehicle platforms, driving demand for the composites market as OEMs look for weight savings without sacrificing structural performance. Carbon fiber- and glass fiber-based composites allow manufacturers to reduce mass in body structures, interior components, and aerodynamic parts, which improves fuel efficiency in conventional platforms and extends range in electric vehicles. In aerospace, the composites market benefits from long production cycles and high qualification standards that lock advanced materials into next-generation airframes once approved, while automotive adoption is increasingly tied to platform redesigns where lightweighting can offset battery weight and support compliance strategies.
Expanding wind energy installations accelerating fiber-reinforced composite adoption in turbine blade manufacturing
As wind developers pursue larger turbines and higher energy yield per installation, blade manufacturers are relying more heavily on fiber-reinforced materials that combine low weight with the stiffness and fatigue resistance needed for long-span designs. This is aiding market expansion for the composites market because longer blades place greater stress on material performance, pushing procurement toward advanced glass fiber and carbon fiber systems that can withstand cyclic loading and harsh operating conditions. The effect is especially visible in blade manufacturing, where composite-intensive designs have become central to improving efficiency, transportation feasibility, and lifecycle reliability for onshore and offshore wind projects.
Automation and additive manufacturing advances improving composite production efficiency and reducing material waste
Production bottlenecks and high processing costs have historically limited broader use of advanced composites, so automation and additive manufacturing are changing adoption economics in ways that strengthen market development for the composites market. Automated fiber placement, robotic layup, and more precise process control reduce labor intensity and improve consistency, which matters in sectors such as aerospace and automotive where repeatability and defect reduction influence qualification and scale-up decisions. Additive approaches also make it easier to produce complex geometries with less scrap, helping manufacturers lower material waste and shorten development cycles, which in practice makes composite components more commercially viable for higher-volume applications.
| Growth Driver | Impact on CAGR | Regulatory Influence | Geographic Relevance | Adoption Rate | Impact Timeline |
|---|---|---|---|---|---|
| Rising aerospace and automotive lightweighting demand driven by fuel efficiency and emission reduction mandates | 2.40% | High | North America, Europe | High | Near Term |
| Expanding wind energy installations accelerating fiber-reinforced composite adoption in turbine blade manufacturing | 2.20% | Moderate | Asia Pacific, Europe | High | Mid Term |
| Automation and additive manufacturing advances improving composite production efficiency and reducing material waste | 1.70% | Low | Asia Pacific, North America | Medium | Mid Term |
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Regional Demand Dynamics
Asia Pacific held the leading position in 2025, accounting for a 48.12% share of the composites market as large-scale manufacturing activity, broad end-use demand, and established processing capacity continued to support regional volume consumption. The region’s leadership is sustained by its strong industrial base across sectors that rely on lightweight, durable materials, alongside dense supplier networks and cost-competitive production that keep procurement and conversion activity concentrated locally. This operating environment supports steady throughput across both raw material supply and component fabrication, reinforcing Asia Pacific’s position as the largest regional market.
North America is projected to expand at an 8.25% CAGR over the forecast period, with growth in the composites market being fueled by rising adoption in high-performance applications where material strength-to-weight advantages directly affect product efficiency and compliance requirements. Demand is accelerating as manufacturers increase the use of advanced materials in technically demanding production environments, backed by ongoing investment in product development, process optimization, and higher-value application engineering. These dynamics are translating into stronger uptake across specialized end-use segments where performance specifications and material substitution are driving purchasing decisions.
| Parameter | North America | Asia Pacific | Europe | Latin America | MEA |
|---|---|---|---|---|---|
| Innovation Hub i Scale Nascent Developing Advanced | |||||
| Cost-Sensitive Region i Scale Low Medium High | |||||
| Regulatory Environment i Scale Restrictive Neutral Supportive | |||||
| Demand Drivers i Scale Weak Moderate Strong | |||||
| Development Stage i Scale Emerging Developing Developed | |||||
| Adoption Rate i Scale Low Medium High | |||||
| New Entrants / Startups i Scale Sparse Moderate Dense | |||||
| Macro Indicators i Scale Weak Stable Strong |
Key Country Insights
Germany 🇩🇪
Industrial Lightweight EngineeringGermany continues integrating composites into automotive, industrial equipment, and transportation applications requiring weight reduction and structural strength. Manufacturers are prioritizing automated production technologies and high-performance material systems.
France 🇫🇷
Mobility Materials ExpansionFrance is applying composites across aerospace, transportation, and energy projects requiring lightweight and corrosion-resistant materials. Industrial buyers increasingly prioritize recyclable composite solutions and efficient manufacturing methods.
Italy 🇮🇹
Industrial Design ApplicationsItaly is expanding composite material use in automotive, marine, and industrial manufacturing where strength and design flexibility are valued. Producers are focusing on customized composite solutions that support efficient fabrication and durable end products.
Japan 🇯🇵
Precision Composite DevelopmentJapan is advancing composite materials for automotive, electronics, and industrial applications where dimensional stability and durability are essential. Domestic manufacturers focus on high-quality processing techniques and specialized material formulations.
South Korea 🇰🇷
Advanced Manufacturing MaterialsSouth Korea is increasing composite adoption across mobility, electronics, and renewable energy industries. Manufacturers are investing in innovative production processes that improve component performance while supporting lightweight product design.
United States 🇺🇸
Aerospace Material InnovationThe U.S. composites market is driven by demand from aerospace, automotive, and renewable energy manufacturers seeking lightweight, durable materials. Companies are expanding advanced composite production while improving manufacturing efficiency and material performance.
Segment Leadership and Growth Trends
Composites Market Share (%), Product, 2025
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Request Free Sample ReportGlass Fiber held the leading position in the composites market in 2025, accounting for a 63% share. Its dominance is sustained by broad applicability across end-use industries that need a practical balance of strength, weight reduction, and cost control. In the composites market, Glass Fiber remains the standard choice for high-volume production where manufacturers prioritize material affordability, established processing familiarity, and dependable performance in a wide range of structural and semi-structural applications.
Carbon Fiber is the fastest-growing product segment in the composites market as demand shifts toward higher-performance materials that deliver greater stiffness and lower weight than conventional alternatives. Its momentum is being aided by applications where performance gains justify the higher material cost, especially as manufacturers increasingly focus on lightweighting, durability, and efficiency targets. Relative to Glass Fiber, Carbon Fiber is seeing wider adoption where technical requirements are more demanding and buyers are willing to pay for superior mechanical performance.
Manufacturing Process Segment Analysis: Layup Process (Largest Segment) vs Compression Molding Process (Fastest-Growing Segment)
By 2025, the Layup Process represented the largest manufacturing process segment in the composites market, with a 36.99% share. Its leadership reflects the process’s wide industry acceptance and practical suitability for producing composite parts without requiring highly standardized production environments. In the composites market, the Layup Process continues to hold its share because it supports manufacturing flexibility, accommodates varied part shapes and sizes, and remains well aligned with applications where production adaptability is more important than maximum throughput.
Compression Molding Process is emerging as the fastest-growing manufacturing process segment in the composites market because it is better aligned with rising demand for faster production cycles and more consistent part quality. Growth is being encouraged by manufacturers seeking processes that can support higher-volume output with tighter repeatability than manual or less automated methods. Compared with the Layup Process, Compression Molding Process is gaining momentum where operational efficiency and scalable production are becoming more critical purchasing and manufacturing considerations.
| Segment | Sub-Segment | Largest Segment | Fastest Growing |
|---|---|---|---|
| Product | Carbon Fiber, Glass Fiber, Natural Fiber, Others | Glass Fiber | Carbon Fiber |
| Manufacturing Process | Layup Process, Filament Winding Process, Injection Molding Process, Pultrusion Process, Compression Molding Process, Resin Transfer Molding Process, Others | Layup Process | Compression Molding Process |
| End-use | Aerospace & Defense, Automotive & Transportation, Construction & Infrastructure, Wind Energy, Electrical & Electronics, Construction and Infrastructure, Pipes & Tanks, Marine, Others | Automotive & Transportation | Wind Energy |
| Resin Type | Thermoset, Thermoplastic | Thermoset | Thermoplastic |
Competitive Landscape and Market Positioning
1. Toray Industries Inc. (Japan)
2. Owens Corning (United States)
3. Hexcel Corporation (United States)
4. Solvay S.A. (Belgium)
5. Teijin Limited (Japan)
6. SGL Carbon SE (Germany)
7. DuPont de Nemours Inc. (United States)
8. PPG Industries Inc. (United States)
9. China Jushi Co. Ltd. (China)
10. Compagnie de Saint-Gobain S.A. (France)
The composites market is advancing through material innovation and lightweight structural applications. Demand from transportation and industrial sectors is driving performance improvements. Continuous research is enhancing strength-to-weight efficiency and durability characteristics.
| Company | Market Share | Company Revenue | Revenue CAGR (%) | Product Portfolio | Geographic Presence | Innovation / R&D Focus | Strategic Developments |
|---|---|---|---|---|---|---|---|
| No companies available. | |||||||
Industry Development/News
| Company Name | Date | Key Development |
|---|---|---|
| Vestas and GE Vernova | Jun-25 | GE Vernova and Vestas moved to acquire assets from the defunct wind blade manufacturer TPI Composites. This transaction secures strategic composite blade manufacturing capacity and aftermarket components for both companies, fostering vertical integration within the wind energy supply chain and improving control over critical turbine manufacturing assets. |
| Touchstone Advanced Composites | Jun-25 | Touchstone Advanced Composites completed a 30% expansion of its Triadelphia, West Virginia facility, tripling its available cleanroom space. This capital project significantly scales production capacity for high-performance composite components, enhancing precision manufacturing capabilities and environmental control to meet the specialized demands of the aerospace and advanced industrial sectors. |
| Advanced Cooling Technologies | May-25 | Advanced Cooling Technologies acquired Canyon Composites, integrating composite material expertise into its existing thermal management portfolio. This strategic acquisition enables the development of high-performance integrated thermal control systems for satellite and aerospace applications, strengthening the company's competitive positioning in mission-critical thermal technology markets. |
| Archer | May-25 | Archer acquired a composite manufacturing facility and associated patent portfolio from Overair to bolster its defense aviation capabilities. The acquisition accelerates the company’s internal production capacity and intellectual property development for advanced composite airframe structures, reinforcing vertical integration for its high-performance aerospace programs. |
| Schütz Group | May-25 | Schütz Group acquired Euro-Composites, significantly expanding its footprint in the aerospace and industrial composite materials sector. The integration of ready-to-assemble composite structures and formed solutions complements Schütz’s existing industrial engineering capabilities, enhancing its global manufacturing reach in advanced materials production. |
| INEOS Enterprises | May-25 | INEOS Enterprises finalized the €1.7 billion sale of its composites business to KPS Capital Partners. This major divestment transfers ownership of a substantial industrial composites unit, reshaping the company's business portfolio while ensuring the continued operation and strategic development of the composites business under new investment leadership. |
| Toray Advanced Composites | May-25 | Toray Advanced Composites acquired Gordon Plastics, gaining specialized assets and intellectual property in continuous fiber-reinforced thermoplastic composites. This acquisition expands Toray's advanced materials portfolio and manufacturing capacity, providing enhanced solutions for high-growth aerospace and industrial applications that require high-performance, lightweight thermoplastic materials. |
| Parker Hannifin | May-25 | Parker Hannifin entered an agreement to divest its North America composites and fuel containment division to SK Capital Partners. As part of a broader corporate portfolio restructuring, this move transfers specialized composite operations, allowing Parker Hannifin to refocus strategic resources on its core industrial technology segments. |
| Bcomp | Apr-25 | Bcomp secured $40 million in Series C funding to accelerate the scale-up of its proprietary flax fiber-based composite technologies. The investment is earmarked for expanding global production capacity and increasing the penetration of sustainable, natural fiber reinforcement solutions within the automotive and industrial manufacturing sectors. |
| Teijin | Sep-24 | Teijin expanded its glass fiber prepreg production capacity at its manufacturing facility in Thailand. This investment serves to solidify the company's market position by increasing output to meet growing demand for composite materials, supporting supply chain requirements for regional and international customers in high-performance application segments. |
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Request Custom ResearchWhat is the market size of composites?
What is the expected industry size of composites by 2035?
How are performance-driven material requirements influencing the shift toward advanced composites in high-value industries?
Why is manufacturing process selection shifting toward more automated composite production methods?
Why is Glass Fiber the largest product segment in the composites market?
Why is the Compression Molding Process the fastest-growing manufacturing process?
Why is Asia Pacific the leading regional market for composites?
What is driving composites market growth in North America?
Which organizations are considered leaders in the composites landscape?
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