Advanced Wind Turbine Blade Material Market Size, Share, and Trends 2026 to 2035

Advanced Wind Turbine Blade Material Market (By Blade Design: Horizontal Axis Blades, Vertical Axis Blades, Hybrid Blades; By Material Type: Carbon Fiber, Glass Fiber, Epoxy Resins, Thermoplastic Composites, Bamboo Composites; By End Use Application: Onshore Wind Farms, Offshore Wind Farms, Small-Scale Wind Turbines; By Production Technology: Prepreg Technology, Infusion Technology, 3D Printing Technology) - Global Industry Analysis, Size, Trends, Leading Companies, Regional Outlook, and Forecast 2026 to 2035

Last Updated : 27 Feb 2026  |  Report Code : 7925  |  Category : Energy and Power   |  Format : PDF / PPT / Excel

Chapter 1. Introduction

1.1. Research Objective

1.2. Scope of the Study

1.3. Definition

Chapter 2. Research Methodology

2.1. Research Approach

2.2. Data Sources

2.3. Assumptions & Limitations

Chapter 3. Executive Summary

3.1. Market Snapshot

Chapter 4. Market Variables and Scope 

4.1. Introduction

4.2. Market Classification and Scope

4.3. Industry Value Chain Analysis

4.3.1. Raw Material Procurement Analysis 

4.3.2. Sales and Distribution Channel Analysis

4.3.3. Downstream Buyer Analysis

Chapter 5. COVID 19 Impact on Advanced Wind Turbine Blade Material Market 

5.1. COVID-19 Landscape: Advanced Wind Turbine Blade Material Industry Impact

5.2. COVID 19 - Impact Assessment for the Industry

5.3. COVID 19 Impact: Global Major Government Policy

5.4. Market Trends and Opportunities in the COVID-19 Landscape

6.1. Market Dynamics

6.1.1. Market Drivers

6.1.2. Market Restraints

6.1.3. Market Opportunities

6.2. Porter’s Five Forces Analysis

6.2.1. Bargaining power of suppliers

6.2.2. Bargaining power of buyers

6.2.3. Threat of substitute

6.2.4. Threat of new entrants

6.2.5. Degree of competition

Chapter 7. Competitive Landscape

7.1.1. Company Market Share/Positioning Analysis

7.1.2. Key Strategies Adopted by Players

7.1.3. Vendor Landscape

7.1.3.1. List of Suppliers

7.1.3.2. List of Buyers

Chapter 8. Global Advanced Wind Turbine Blade Material Market, By Blade Design

8.1. Advanced Wind Turbine Blade Material Market Revenue and Volume Forecast, by Blade Design

8.1.1. Horizontal Axis Blades

8.1.1.1. Market Revenue and Volume Forecast

8.1.2. Vertical Axis Blades

8.1.2.1. Market Revenue and Volume Forecast

8.1.3. Hybrid Blades

8.1.3.1. Market Revenue and Volume Forecast

Chapter 9. Global Advanced Wind Turbine Blade Material Market, By Material Type

9.1. Advanced Wind Turbine Blade Material Market Revenue and Volume Forecast, by Material Type

9.1.1. Carbon Fiber

9.1.1.1. Market Revenue and Volume Forecast

9.1.2. Glass Fiber

9.1.2.1. Market Revenue and Volume Forecast

9.1.3. Epoxy Resins

9.1.3.1. Market Revenue and Volume Forecast

9.1.4. Thermoplastic Composites

9.1.4.1. Market Revenue and Volume Forecast

9.1.5. Bamboo Composites

9.1.5.1. Market Revenue and Volume Forecast

Chapter 10. Global Advanced Wind Turbine Blade Material Market, By End Use Application

10.1. Advanced Wind Turbine Blade Material Market Revenue and Volume Forecast, by End Use Application

10.1.1. Onshore Wind Farms

10.1.1.1. Market Revenue and Volume Forecast

10.1.2. Offshore Wind Farms

10.1.2.1. Market Revenue and Volume Forecast

10.1.3. Small-Scale Wind Turbines

10.1.3.1. Market Revenue and Volume Forecast

Chapter 11. Global Advanced Wind Turbine Blade Material Market, By Production Technology

11.1. Advanced Wind Turbine Blade Material Market Revenue and Volume Forecast, by Production Technology

11.1.1. Prepreg Technology

11.1.1.1. Market Revenue and Volume Forecast

11.1.2. Infusion Technology

11.1.2.1. Market Revenue and Volume Forecast

11.1.3. 3D Printing Technology

11.1.3.1. Market Revenue and Volume Forecast

Chapter 12. Global Advanced Wind Turbine Blade Material Market, Regional Estimates and Trend Forecast

12.1. North America

12.1.1. Market Revenue and Volume Forecast, by Blade Design

12.1.2. Market Revenue and Volume Forecast, by Material Type

12.1.3. Market Revenue and Volume Forecast, by End Use Application

12.1.4. Market Revenue and Volume Forecast, by Production Technology

12.1.5. U.S.

12.1.5.1. Market Revenue and Volume Forecast, by Blade Design

12.1.5.2. Market Revenue and Volume Forecast, by Material Type

12.1.5.3. Market Revenue and Volume Forecast, by End Use Application

12.1.5.4. Market Revenue and Volume Forecast, by Production Technology

12.1.6. Rest of North America

12.1.6.1. Market Revenue and Volume Forecast, by Blade Design

12.1.6.2. Market Revenue and Volume Forecast, by Material Type

12.1.6.3. Market Revenue and Volume Forecast, by End Use Application

12.1.6.4. Market Revenue and Volume Forecast, by Production Technology

12.2. Europe

12.2.1. Market Revenue and Volume Forecast, by Blade Design

12.2.2. Market Revenue and Volume Forecast, by Material Type

12.2.3. Market Revenue and Volume Forecast, by End Use Application

12.2.4. Market Revenue and Volume Forecast, by Production Technology

12.2.5. UK

12.2.5.1. Market Revenue and Volume Forecast, by Blade Design

12.2.5.2. Market Revenue and Volume Forecast, by Material Type

12.2.5.3. Market Revenue and Volume Forecast, by End Use Application

12.2.5.4. Market Revenue and Volume Forecast, by Production Technology

12.2.6. Germany

12.2.6.1. Market Revenue and Volume Forecast, by Blade Design

12.2.6.2. Market Revenue and Volume Forecast, by Material Type

12.2.6.3. Market Revenue and Volume Forecast, by End Use Application

12.2.6.4. Market Revenue and Volume Forecast, by Production Technology

12.2.7. France

12.2.7.1. Market Revenue and Volume Forecast, by Blade Design

12.2.7.2. Market Revenue and Volume Forecast, by Material Type

12.2.7.3. Market Revenue and Volume Forecast, by End Use Application

12.2.7.4. Market Revenue and Volume Forecast, by Production Technology

12.2.8. Rest of Europe

12.2.8.1. Market Revenue and Volume Forecast, by Blade Design

12.2.8.2. Market Revenue and Volume Forecast, by Material Type

12.2.8.3. Market Revenue and Volume Forecast, by End Use Application

12.2.8.4. Market Revenue and Volume Forecast, by Production Technology

12.3. APAC

12.3.1. Market Revenue and Volume Forecast, by Blade Design

12.3.2. Market Revenue and Volume Forecast, by Material Type

12.3.3. Market Revenue and Volume Forecast, by End Use Application

12.3.4. Market Revenue and Volume Forecast, by Production Technology

12.3.5. India

12.3.5.1. Market Revenue and Volume Forecast, by Blade Design

12.3.5.2. Market Revenue and Volume Forecast, by Material Type

12.3.5.3. Market Revenue and Volume Forecast, by End Use Application

12.3.5.4. Market Revenue and Volume Forecast, by Production Technology

12.3.6. China

12.3.6.1. Market Revenue and Volume Forecast, by Blade Design

12.3.6.2. Market Revenue and Volume Forecast, by Material Type

12.3.6.3. Market Revenue and Volume Forecast, by End Use Application

12.3.6.4. Market Revenue and Volume Forecast, by Production Technology

12.3.7. Japan

12.3.7.1. Market Revenue and Volume Forecast, by Blade Design

12.3.7.2. Market Revenue and Volume Forecast, by Material Type

12.3.7.3. Market Revenue and Volume Forecast, by End Use Application

12.3.7.4. Market Revenue and Volume Forecast, by Production Technology

12.3.8. Rest of APAC

12.3.8.1. Market Revenue and Volume Forecast, by Blade Design

12.3.8.2. Market Revenue and Volume Forecast, by Material Type

12.3.8.3. Market Revenue and Volume Forecast, by End Use Application

12.3.8.4. Market Revenue and Volume Forecast, by Production Technology

12.4. MEA

12.4.1. Market Revenue and Volume Forecast, by Blade Design

12.4.2. Market Revenue and Volume Forecast, by Material Type

12.4.3. Market Revenue and Volume Forecast, by End Use Application

12.4.4. Market Revenue and Volume Forecast, by Production Technology

12.4.5. GCC

12.4.5.1. Market Revenue and Volume Forecast, by Blade Design

12.4.5.2. Market Revenue and Volume Forecast, by Material Type

12.4.5.3. Market Revenue and Volume Forecast, by End Use Application

12.4.5.4. Market Revenue and Volume Forecast, by Production Technology

12.4.6. North Africa

12.4.6.1. Market Revenue and Volume Forecast, by Blade Design

12.4.6.2. Market Revenue and Volume Forecast, by Material Type

12.4.6.3. Market Revenue and Volume Forecast, by End Use Application

12.4.6.4. Market Revenue and Volume Forecast, by Production Technology

12.4.7. South Africa

12.4.7.1. Market Revenue and Volume Forecast, by Blade Design

12.4.7.2. Market Revenue and Volume Forecast, by Material Type

12.4.7.3. Market Revenue and Volume Forecast, by End Use Application

12.4.7.4. Market Revenue and Volume Forecast, by Production Technology

12.4.8. Rest of MEA

12.4.8.1. Market Revenue and Volume Forecast, by Blade Design

12.4.8.2. Market Revenue and Volume Forecast, by Material Type

12.4.8.3. Market Revenue and Volume Forecast, by End Use Application

12.4.8.4. Market Revenue and Volume Forecast, by Production Technology

12.5. Latin America

12.5.1. Market Revenue and Volume Forecast, by Blade Design

12.5.2. Market Revenue and Volume Forecast, by Material Type

12.5.3. Market Revenue and Volume Forecast, by End Use Application

12.5.4. Market Revenue and Volume Forecast, by Production Technology

12.5.5. Brazil

12.5.5.1. Market Revenue and Volume Forecast, by Blade Design

12.5.5.2. Market Revenue and Volume Forecast, by Material Type

12.5.5.3. Market Revenue and Volume Forecast, by End Use Application

12.5.5.4. Market Revenue and Volume Forecast, by Production Technology

12.5.6. Rest of LATAM

12.5.6.1. Market Revenue and Volume Forecast, by Blade Design

12.5.6.2. Market Revenue and Volume Forecast, by Material Type

12.5.6.3. Market Revenue and Volume Forecast, by End Use Application

12.5.6.4. Market Revenue and Volume Forecast, by Production Technology

Chapter 13. Company Profiles

13.1. SGL Carbon

13.1.1. Company Overview

13.1.2. Product Offerings

13.1.3. Financial Performance

13.1.4. Recent Initiatives

13.2. Owens Corning

13.2.1. Company Overview

13.2.2. Product Offerings

13.2.3. Financial Performance

13.2.4. Recent Initiatives

13.3. Mitsubishi Chemical Group

13.3.1. Company Overview

13.3.2. Product Offerings

13.3.3. Financial Performance

13.3.4. Recent Initiatives

13.4. Teijin Limited

13.4.1. Company Overview

13.4.2. Product Offerings

13.4.3. Financial Performance

13.4.4. Recent Initiatives

13.5. Mitsubishi Chemical Group

13.5.1. Company Overview

13.5.2. Product Offerings

13.5.3. Financial Performance

13.5.4. Recent Initiatives

13.6. Taishan Fiberglass Inc.

13.6.1. Company Overview

13.6.2. Product Offerings

13.6.3. Financial Performance

13.6.4. Recent Initiatives

13.7. China Jushi Co., Ltd.

13.7.1. Company Overview

13.7.2. Product Offerings

13.7.3. Financial Performance

13.7.4. Recent Initiatives

13.8. Evonik Industries

13.8.1. Company Overview

13.8.2. Product Offerings

13.8.3. Financial Performance

13.8.4. Recent Initiatives

13.9. Westlake Corporation

13.9.1. Company Overview

13.9.2. Product Offerings

13.9.3. Financial Performance

13.9.4. Recent Initiatives

13.10. BASF SE

13.10.1. Company Overview

13.10.2. Product Offerings

13.10.3. Financial Performance

13.10.4. Recent Initiatives

Chapter 14. Research Methodology

14.1. Primary Research

14.2. Secondary Research

14.3. Assumptions

Chapter 15. Appendix

15.1. About Us

15.2. Glossary of Terms

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Frequently Asked Questions

Answer : The advanced wind turbine blade material market size is expected to increase from USD 11.09 billion in 2025 to USD 20.84 billion by 2035.

Answer : The advanced wind turbine blade material market is expected to grow at a compound annual growth rate (CAGR) of around 6.51% from 2026 to 2035.

Answer : The major players in the advanced wind turbine blade material market include Hexcel Corporation, SGL Carbon, Owens Corning, Teijin Limited, Mitsubishi Chemical Group, China Jushi Co., Ltd., Taishan Fiberglass Inc., Arkema S.A., Olin Corporation, Huntsman Corporation, Evonik Industries, Westlake Corporation, and BASF SE

Answer : The driving factors of the advanced wind turbine blade material market are growing due to rising renewable energy installations and demand for durable yet lightweight turbine components.

Answer : North America region will lead the global advanced wind turbine blade material market during the forecast period 2026 to 2035.

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