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Global Aerospace Composites Market Growth, Size, Trends Analysis - By Fiber Type, By Matrix, By Aircraft Type, By Application - Regional Outlook, Competitive Strategies and Segment Forecast to 2034

Published Jul 25, 2025
Length 244 Pages
SKU # SPER20400326

Description

Aerospace Composites Market Introduction and Overview

According to SPER market research, ‘Global Aerospace Composites Market Size- By Fiber Type, By Matrix, By Aircraft Type, By Application – Regional Outlook, Competitive Strategies and Segment Forecast to 2034’ state that the Global Aerospace Composites Market is predicted to reach 101.19 billion by 2034 with a CAGR of 13.03%.

Aerospace composites are special materials made from combining two or more different materials to create a stronger composite with better performance. A key part of these composites is the matrix, which holds the reinforcement fibers in place and supports the overall structure. Common matrix materials include polymers, metals, and ceramics. The reinforcement fibers, usually made from carbon, glass, or aramid fibers, add unique qualities to the composite, making it suitable for tough aerospace conditions.

Restraints: The market is confronted with challenges stemming from an unstable supply chain, notably the restricted availability of critical raw materials like carbon fiber, which can lead to price fluctuations and potential disruptions. Additionally, aerospace composites pose recycling challenges due to their intricate, bonded structures, with conventional methods such as shredding often proving ineffective. The absence of dedicated recycling infrastructure further hampers sustainable disposal and reusability efforts.

Scope of the report:

Report Metric Details
Market size available for years 2021-2034
Base year considered 2024
Forecast period 2025-2034
Segments covered By Fiber Type, By Matrix, By Aircraft Type, By Application

Regions covered

North America, Latin America, Asia-Pacific, Europe, and Middle East & Africa

Companies Covered

Absolute Composites, Aernnova Aerospace, Avior Integrated Products, Collins Aerospace, FDC Composites, General Dynamics, Hexcel, Lee Aerospace, Materion, Mitsubishi Chemical, SGL Carbon, Solvay.

Global Aerospace Composites Market Segmentation:

By Fiber Type:


Based on the Fiber Type, Global Aerospace Composites Market is segmented as; Glass fiber, Carbon fiber, Ceramic fiber, Others.

By Matrix:

Based on the Matrix, Global Aerospace Composites Market is segmented as; Polymer matrix, Thermoplastic polymer matrix, Ceramic matrix, Metal matrix.

By Aircraft Type:

Based on the Aircraft Type, Global Aerospace Composites Market is segmented as; Commercial, Military & defense aircraft, Others.

By Application:

Based on the Application, Global Aerospace Composites Market is segmented as; Exterior, Interior.

By Region:

This research also includes data for North America, Latin America, Asia-Pacific, Europe, Middle East & Africa

Table of Contents

244 Pages
1. Introduction
1.1. Scope of the report
1.2. Market segment analysis
2. Research Methodology
2.1. Research data source
2.1.1. Secondary Data
2.1.2. Primary Data
2.1.3. SPERs internal database
2.1.4. Premium insight from KOLs
2.2. Market size estimation
2.2.1. Top-down and Bottom-up approach
2.3. Data triangulation
3. Executive Summary
4. Market Dynamics
4.1. Driver, Restraint, Opportunity and Challenges analysis
4.1.1. Drivers
4.1.2. Restraints
4.1.3. Opportunities
4.1.4. Challenges
5. Market variable and outlook
5.1. SWOT Analysis
5.1.1. Strengths
5.1.2. Weaknesses
5.1.3. Opportunities
5.1.4. Threats
5.2. PESTEL Analysis
5.2.1. Political Landscape
5.2.2. Economic Landscape
5.2.3. Social Landscape
5.2.4. Technological Landscape
5.2.5. Environmental Landscape
5.2.6. Legal Landscape
5.3. PORTER’s Five Forces
5.3.1. Bargaining power of suppliers
5.3.2. Bargaining power of buyers
5.3.3. Threat of Substitute
5.3.4. Threat of new entrant
5.3.5. Competitive rivalry
5.4. Heat Map Analysis
6. Competitive Landscape
6.1. Global Aerospace Composites Market Manufacturing Base Distribution, Sales Area, Product Type
6.2. Mergers & Acquisitions, Partnerships, Product Launch, and Collaboration in Global Aerospace Composites Market
7. Global Aerospace Composites Market, By Fiber Type (USD Million) 2021-2034
7.1. Glass fiber
7.2. Carbon fiber
7.3. Ceramic fiber
7.4. Others
8. Global Aerospace Composites Market, By Matrix (USD Million) 2021-2034
8.1. Polymer matrix
8.1.1. Thermoset polymer matrix
8.1.2. Thermoplastic polymer matrix
8.2. Ceramic matrix
8.3. Metal matrix
9. Global Aerospace Composites Market, By Aircraft Type (USD Million) 2021-2034
9.1. Commercial
9.1.1. Narrow-body
9.1.2. Wide-body
9.1.3. Business jet
9.1.4. Turboprop
9.2. Military & defense aircraft
9.3. Others
10. Global Aerospace Composites Market, By Application (USD Million) 2021-2034
10.1. Exterior
10.1.1. Fuselage
10.1.2. Engine
10.1.3. Wings
10.1.4. Rotor blades
10.1.5. Tail boom
10.2. Interior
10.2.1. Seats
10.2.2. Cabin
10.2.3. Sandwich panels
10.2.4. Environmental control system (ECS) ducting
11. Global Aerospace Composites Market, (USD Million) 2021-2034
11.1. Global Aerospace Composites Market Size and Market Share
12. Global Aerospace Composites Market, By Region, (USD Million) 2021-2034
12.1. Asia-Pacific
12.1.1. Australia
12.1.2. China
12.1.3. India
12.1.4. Japan
12.1.5. South Korea
12.1.6. Rest of Asia-Pacific
12.2. Europe
12.2.1. France
12.2.2. Germany
12.2.3. Italy
12.2.4. Spain
12.2.5. United Kingdom
12.2.6. Rest of Europe
12.3. Middle East and Africa
12.3.1. Kingdom of Saudi Arabia
12.3.2. United Arab Emirates
12.3.3. Qatar
12.3.4. South Africa
12.3.5. Egypt
12.3.6. Morocco
12.3.7. Nigeria
12.3.8. Rest of Middle-East and Africa
12.4. North America
12.4.1. Canada
12.4.2. Mexico
12.4.3. United States
12.5. Latin America
12.5.1. Argentina
12.5.2. Brazil
12.5.3. Rest of Latin America
13. Company Profile
13.1. Absolute Composites
13.1.1. Company details
13.1.2. Financial outlook
13.1.3. Product summary
13.1.4. Recent developments
13.2. Aernnova Aerospace
13.2.1. Company details
13.2.2. Financial outlook
13.2.3. Product summary
13.2.4. Recent developments
13.3. Avior Integrated Products
13.3.1. Company details
13.3.2. Financial outlook
13.3.3. Product summary
13.3.4. Recent developments
13.4. Collins Aerospace
13.4.1. Company details
13.4.2. Financial outlook
13.4.3. Product summary
13.4.4. Recent developments
13.5. FDC Composites
13.5.1. Company details
13.5.2. Financial outlook
13.5.3. Product summary
13.5.4. Recent developments
13.6. General Dynamics
13.6.1. Company details
13.6.2. Financial outlook
13.6.3. Product summary
13.6.4. Recent developments
13.7. Hexcel
13.7.1. Company details
13.7.2. Financial outlook
13.7.3. Product summary
13.7.4. Recent developments
13.8. Lee Aerospace
13.8.1. Company details
13.8.2. Financial outlook
13.8.3. Product summary
13.8.4. Recent developments
13.9. Materion
13.9.1. Company details
13.9.2. Financial outlook
13.9.3. Product summary
13.9.4. Recent developments
13.10. Mitsubishi Chemical
13.10.1. Company details
13.10.2. Financial outlook
13.10.3. Product summary
13.10.4. Recent developments
13.11. SGL Carbon
13.11.1. Company details
13.11.2. Financial outlook
13.11.3. Product summary
13.11.4. Recent developments
13.12. Solvay
13.12.1. Company details
13.12.2. Financial outlook
13.12.3. Product summary
13.12.4. Recent developments
13.13. Others
14. Conclusion
15. List of Abbreviations
16. Reference Links
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