The global fossil fuel dependency is expected to cause significant social and economic fluctuations. An economy that is based on fossil fuel is highly unsustainable. The efforts taken to reduce such an impact and reduce its usage and dependence has paved way for alternate and renewable sources of energy. Alternate sources, such as wind energy, is one of the most sought after options since it is the least expensive power generating option. Increasing number of locations for capacity additions in newer markets such as Africa, Asia, Central, and South America is driving the wind power generation. Both onshore and offshore wind power generation have contributed to the improvement of wind energy’s economics in varied operating conditions and wind regimes.
According to the report, one driver in market is wind power capacity additions. Wind energy is emerging as a low-cost renewable source of energy for the generation of electricity, with developed regions such as North America and Western Europe accounting for the highest investments in the total wind tower installations across the globe. It is a high-potential application area for carbon fiber composites, with turbine blades being the fastest growing product in this segment. Thermoset prepregs are widely used for the manufacture of wind turbines as these exhibit superior performance characteristics such as high strength-to-weight ratio and durability. An increasing number of vendors in the market are focusing on the R&D of technologically advanced products for such applications. The introduction of new low-cost carbon fiber prepregs for wind energy applications is expected to trigger the manufacture of wind turbine blades that are stronger, lighter, and longer, thereby create more energy as compared with shorter blades.
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The global Wind Turbine Composite Materials market was valued at xx million US$ in 2018 and will reach xx million US$ by the end of 2025, growing at a CAGR of xx% during 2019-2025.
This report focuses on Wind Turbine Composite Materials volume and value at global level, regional level and company level. From a global perspective, this report represents overall Wind Turbine Composite Materials market size by analyzing historical data and future prospect.
Regionally, this report categorizes the production, apparent consumption, export and import of Wind Turbine Composite Materials in North America, Europe, China, Japan, Southeast Asia and India.
For each manufacturer covered, this report analyzes their Wind Turbine Composite Materials manufacturing sites, capacity, production, ex-factory price, revenue and market share in global market.
The following manufacturers are covered:
Molded Fiber Glass
Segment by Regions
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Segment by Type
Segment by Application
Table of Contents
Chapter One: Industry Overview of Wind Turbine Composite Materials
1.1 Definition of Wind Turbine Composite Materials
1.2 Wind Turbine Composite Materials Segment by Type
1.2.1 Global Wind Turbine Composite Materials Production Growth Rate Comparison by Types (2014-2025)
1.2.2 Thermoset Resin
1.2.3 Thermoplastic Resin
1.3 Wind Turbine Composite Materials Segment by Applications
1.3.1 Global Wind Turbine Composite Materials Consumption Comparison by Applications (2014-2025)
1.4 Global Wind Turbine Composite Materials Overall Market
1.4.1 Global Wind Turbine Composite Materials Revenue (2014-2025)
1.4.2 Global Wind Turbine Composite Materials Production (2014-2025)
1.4.3 North America Wind Turbine Composite Materials Status and Prospect (2014-2025)
1.4.4 Europe Wind Turbine Composite Materials Status and Prospect (2014-2025)
1.4.5 China Wind Turbine Composite Materials Status and Prospect (2014-2025)
1.4.6 Japan Wind Turbine Composite Materials Status and Prospect (2014-2025)
1.4.7 Southeast Asia Wind Turbine Composite Materials Status and Prospect (2014-2025)
1.4.8 India Wind Turbine Composite Materials Status and Prospect (2014-2025)
Chapter Two: Manufacturing Cost Structure Analysis
2.1 Raw Material and Suppliers
2.2 Manufacturing Cost Structure Analysis of Wind Turbine Composite Materials
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