Europe Aeroengine Composites Market is experiencing traction, as aerospace companies and aeroengine manufacturers are using more lightweight and high-strength composites in their engines. Factors driving the Europe Aeroengine Composites market include the presence of an extensive aerospace manufacturing sector, investment in future aircraft programs, and efforts to minimize emissions from aviation.
The Europe Aeroengine Composites Market was valued at USD 1.02 Billion in 2025 and is estimated to reach USD 2.65 Billion by 2035 with a CAGR of 9.80% during 2026-2035. Europe held a share of around 29.0% of the global Aeroengine Composites Market in 2025. The global market stood at USD 3.53 Billion in 2025 and is anticipated to reach USD 9.59 Billion by 2035 registering a CAGR of 10.51% due to High Demand for Next Generation Commercial & Military Aircraft Programs.
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Europe Aeroengine Composites Market Analysis
Europe presents a sizable market for composites used in aeroengine due to the extensive presence of leading aerospace OEMs and engine producers throughout the continent. The continuous investment in the development of next generation aircraft that would reduce fuel consumption drives the demand for lightweight engine parts made from composites.
Moreover, the focus of Europe on reducing emissions and developing sustainable technology further pushes the manufacturers to substitute traditional metal parts for composite ones. Composites based on carbon fibers are still widely used due to their high strength-to-weight ratio, resistance to fatigue and proven performance in engine applications. Besides, ceramic matrix composites (CMCs) gain popularity among high temperature applications due to their heat resistance, low density and durability.
Advanced manufacturing processes also play an important role in European use of composites. Automated fiber placement (AFP) provides precision, repeatability and reduction of material usage for complicated composite parts, while resin transfer molding (RTM) becomes more popular due to its cost efficiency and applicability for medium-volume engine parts.
Top 5 Leading Aeroengine Composites Companies in Europe
1. Safran Group

Safran Group is an influential aerospace player with a significant role in aircraft propulsion and aerospace systems. The company plays a central role within the European aerospace industry by enabling the implementation of modern materials and composite technologies in future-generation propulsion systems.
The emphasis of Safran Group on fuel economy, propulsion, and emissions control is in line with the trend towards lightweight and high-performance aeroengines within the European aerospace industry.
2. Rolls-Royce Holdings plc

Rolls-Royce Holdings plc is one of the largest European aero-engine manufacturers that caters to both commercial and military aircraft sectors. The thrust of its business in the propulsion sector is well connected with the trends in the industry regarding lightweight materials, better thermal properties, and fuel efficiency of engines.
Advanced composite and ceramic materials play an increasing role in performance improvement of engines under tough conditions.
3. MTU Aero Engines AG

MTU Aero Engines AG is a key European engine builder and aerospace technology firm. The engagement of the company in the commercial and military propulsion projects places it in the advanced aerospace manufacturing sector within Europe.
The greater utilization of the composite-based engine design is opening new doors for advanced manufacturing processes, lightweight structures, and high temperature materials.
4. GKN Aerospace

GKN Aerospace is an aerospace component manufacturer with proficiency in advanced structures and composites. The capabilities offered by the company can help manufacture lightweight components in aerospace that have stringent performance specifications.
The increasing use of composite material in aeroengine design offers opportunities for GKN Aerospace to take part in future propulsion programs and aircraft designs.
5. Hexcel Corporation

Hexcel Corporation is an advanced-materials supplier to the aerospace industry offering carbon fiber, composite material, and other related technologies. The aerospace legacy of Hexcel Corporation makes the company well placed to develop composite engines.
There are always increasing demands for fuel-efficient aircraft and emission reduction in propulsion systems, which offer opportunities for advanced composite materials in Europe's aerospace industry.
Key Trends Shaping the Europe Aeroengine Composites Market
• Increasing adoption of ceramic matrix composites (CMCs) in high-temperature engine sections.
• Growing use of automated fiber placement (AFP) and advanced composite manufacturing technologies.
• Rising demand for lightweight engine components to improve fuel efficiency and reduce emissions.
• Increasing focus on sustainable and recyclable composite materials.
• Growing adoption of advanced composites in turbine blades, vanes, shrouds, fan blades, and fan cases.
What the Future of Aeroengine Composites Holds in Europe
The future of the European aeroengine composites market is dependent on the continued efforts of the aviation industry towards fuel efficiency, emission reductions, advanced propulsion systems, and light weight engine architecture. Ceramic matrix composites will become a bigger area of interest due to their capacity to operate at high temperatures and their potential to reduce component weights and cooling.
Commercial aircraft will be a key driver in the growth of the European aeroengine composites market due to the efforts of European aerospace organizations aimed at enhancing the operating efficiency and sustainability of their products. Meanwhile, the military aircraft segment becomes another fast-growing application, driven by defense modernization and the need for lightweight and efficient engines.
Innovation in manufacturing will also continue to play its role. Automated fiber placement, resin transfer molding, and other advanced manufacturing methods will help ensure higher consistency, material savings, and scalable manufacturing of composite parts. Due to the ongoing investments into the development of next generation aircraft and propulsion systems, advanced composites will continue to be a key material solution for European aerospace companies.