欧洲航太碳纤维复合材料市场:分析与预测(2023-2033)
市场调查报告书
商品编码
1413715

欧洲航太碳纤维复合材料市场:分析与预测(2023-2033)

Europe Space Carbon Fiber Composite Market: Analysis and Forecast, 2023-2033

出版日期: | 出版商: BIS Research | 英文 77 Pages | 商品交期: 1-5个工作天内

价格

欧洲航太碳纤维复合材料市场预计将从 2023 年的 1.246 亿美元增加到 2033 年的 4.871 亿美元。

主要市场统计数据
预测期 2023-2033
2023年评估 1.246 亿美元
2033年预测 4.871 亿美元
复合年增长率 14.61%

由于多种因素,欧洲太空碳纤维复合材料市场可望显着成长。主要驱动因素之一是对轻型设计小型卫星的需求不断增长,特别是对于通讯和地球观测应用。碳纤维复合材料为减轻卫星重量、增加有效载荷能力和优化整体性能提供了理想的材料解决方案。

此外,欧洲蓬勃发展的商业航太领域也有助于市场扩张。包括Start-Ups公司在内的各种公司都在积极参与太空探勘和卫星部署,对碳纤维复合材料等先进材料的需求不断增加。

可重复使用运载火箭的开发也是推动市场成长的显着因素。这些火箭需要轻质且耐用的材料,因此碳纤维复合材料成为首选。

特别是在欧洲,製造技术和材料的进步正在促进太空应用碳纤维复合材料的生产和采用,进一步支持市场的成长趋势。由于这些因素,欧洲太空碳纤维复合材料市场有望显着发展,为航太的创新和进步提供机会。

本报告对欧洲航太用碳纤维复合材料市场进行了调查,提供了市场概况、市场成长的各种影响因素分析、市场规模趋势和预测、主要国家的详细分析以及主要企业的分析。总结。

市场分类

细分1:按用途

  • 卫星
  • 发射火箭
  • 深空探勘

细分 2:按国家/地区

  • 法国
  • 德国
  • 俄罗斯
  • 英国
  • 其他的

目录

执行摘要

调查范围

第一章 市场

  • 产业展望
    • 太空复合材料:概述
    • 趋势重振市场
    • 正在进行和即将进行的计划
    • 领先的复合材料供应商
  • 业务动态
    • 业务促进因素
    • 业务挑战
    • 经营策略
    • 经营策略
    • 经营策略
    • 商业机会

第二章 欧洲

  • 航太碳纤维复合材料市场(分地区)
  • 欧洲
    • 市场
    • 目的
    • 欧洲(按国家/地区)

第三章市场:竞争基准化分析/公司简介

  • 市场占有率分析
  • 复合材料企业
    • Airborne
    • CarboSpaceTech GmbH
    • Oxeon AB
    • Peak Technology
    • RUAG Group (Beyond Gravity)
    • SGL Carbon SE
    • Thales Group
    • Airbus SAS
    • ArianeGroup

第四章调查方法

Product Code: SAT1804SS

“The Europe Space Carbon Fiber Composite Market Expected to Reach $487.1 Million by 2033.”

Introduction to Europe Space Carbon Fiber Composite Market

The Europe space carbon fiber composite market was valued at $124.6 million in 2023 and is projected to reach $487.1 million by 2033. The market for space carbon fiber composites is anticipated to experience growth primarily due to several key factors. This includes the rising demand for lightweight small satellites, especially for communication and Earth observation purposes. The commercial space sector's expansion and the emergence of reusable launch vehicles are also significant drivers of this market's growth trajectory. Moreover, advancements in manufacturing techniques and materials play a pivotal role in propelling market expansion.

KEY MARKET STATISTICS
Forecast Period2023 - 2033
2023 Evaluation$124.6 Million
2033 Forecast$487.1 Million
CAGR14.61%

Market Introduction

The European space carbon fiber composite market is poised for significant growth driven by several compelling factors. One of the primary drivers is the increasing demand for small satellites designed with a lightweight profile, particularly for applications in communication and Earth observation. Carbon fiber composites provide the ideal material solution for reducing satellite weight, enhancing payload capacity, and optimizing overall performance.

Furthermore, the booming commercial space sector in Europe is contributing to the market's expansion. Private companies and startups are actively participating in space exploration and satellite deployment, leading to a growing need for advanced materials like carbon fiber composites.

The development of reusable launch vehicles is another noteworthy factor fostering market growth. These vehicles require lightweight yet durable materials, making carbon fiber composites a preferred choice.

Advancements in manufacturing technologies and materials, particularly in Europe, are bolstering the production and adoption of space carbon fiber composites, further driving the market's upward trajectory. With these factors in play, the European space carbon fiber composite market is poised for remarkable development, offering opportunities for innovation and progress in the aerospace industry.

Market Segmentation

Segmentation 1: by Application

  • Satellites
  • Launch Vehicles
  • Deep Space Exploration

Segmentation 2: by Country

  • France
  • Germany
  • Russia
  • U.K.
  • Rest-of-Europe

How can this report add value to an organization?

Growth/Marketing Strategy: The space carbon fiber composite market has seen major development activities by key players operating in the market, such as business expansion activities, contracts, mergers, partnerships, and collaborations. The most favored strategy for the companies has been contracts to strengthen their positions in the space carbon fiber composite market.

Competitive Strategy: The study has analyzed and profiled the space carbon fiber composite manufacturers, startups, and emerging players in advanced composite manufacturing in the Europe space carbon fiber composite market. These companies capture the maximum share in the Europe space carbon fiber composite market. Moreover, a detailed competitive benchmarking of the companies and organizations operating in the Europe space carbon fiber composite market has been carried out, which will help the reader to understand how players are performing, exhibiting a clear market landscape. In addition to this, comprehensive competitive strategies such as partnerships, agreements, and collaborations will aid the reader in understanding the untapped revenue pockets in the market.

Key Market Players and Competition Synopsis

The featured companies have been meticulously chosen, drawing insights from primary experts and thorough evaluations of company coverage, product offerings, and market presence.

Some prominent names established in this market are:

  • Airborne
  • CarboSpaceTech GmbH
  • Oxeon AB
  • Peak Technology
  • RUAG Group
  • SGL Carbon SE

Table of Contents

Executive Summary

Scope of the Study

1. Markets

  • 1.1. Industry Outlook
    • 1.1.1. Composite Materials for Space Applications: Overview
    • 1.1.2. Trends Fueling Space Carbon Fiber Composite Market
    • 1.1.3. Ongoing and Upcoming Programs
      • 1.1.3.1. European Union Space Carbon Project
      • 1.1.3.2. NASA's Super Lightweight Aerospace Composites (SAC)
      • 1.1.3.3. Oak Ridge National Laboratory Carbon-Carbon Composites
    • 1.1.4. Key Composite Suppliers
  • 1.2. Business Dynamics
    • 1.2.1. Business Drivers
      • 1.2.1.1. Increase in the Demand for Satellites
      • 1.2.1.2. Growing Number of Deep Space Exploration Programs
      • 1.2.1.3. Increase in the Utilization of Carbon Fiber Composite in Small Launch Vehicles
    • 1.2.2. Business Challenges
      • 1.2.2.1. High Production Costs
      • 1.2.2.2. Utilization of Alternate Materials
    • 1.2.3. Business Strategies
    • 1.2.4. Business Strategies
      • 1.2.4.1. New Product Launch
    • 1.2.5. Corporate Strategies
      • 1.2.5.1. Partnerships
    • 1.2.6. Business Opportunities
      • 1.2.6.1. Opportunities for Satellite Manufacturers
      • 1.2.6.2. Opportunities in the Launch Vehicle Manufacturing
      • 1.2.6.3. Opportunities in Deep Space Exploration

2. Europe

  • 2.1. Space Carbon Fiber Composite Market (by Region)
  • 2.2. Europe
    • 2.2.1. Markets
      • 2.2.1.1. Key Space Carbon Fiber Composite Players in Europe
      • 2.2.1.2. Business Drivers
      • 2.2.1.3. Business Challenges
    • 2.2.2. Application
      • 2.2.2.1. Europe Space Carbon Fiber Composite Market (by Application)
    • 2.2.3. Europe (by Country)
      • 2.2.3.1. Germany
        • 2.2.3.1.1. Markets
          • 2.2.3.1.1.1. Key Space Carbon Fiber Composite Players in Germany
        • 2.2.3.1.2. Application
          • 2.2.3.1.2.1. Germany Space Carbon Fiber Composite Market (by Application)
      • 2.2.3.2. France
        • 2.2.3.2.1. Application
          • 2.2.3.2.1.1. France Space Carbon Fiber Composite Market (by Application)
      • 2.2.3.3. Russia
        • 2.2.3.3.1. Application
          • 2.2.3.3.1.1. Russia Space Carbon Fiber Composite Market (by Application)
      • 2.2.3.4. U.K.
        • 2.2.3.4.1. Market
          • 2.2.3.4.1.1. Key Space Carbon Fiber Composite Players in the U.K.
        • 2.2.3.4.2. Application
          • 2.2.3.4.2.1. U.K. Space Carbon Fiber Composite Market (by Application)
      • 2.2.3.5. Rest-of-Europe
        • 2.2.3.5.1. Market
          • 2.2.3.5.1.1. Key Space Carbon Fiber Composite Players in Rest-of-Europe
        • 2.2.3.5.2. Application
          • 2.2.3.5.2.1. Rest-of-Europe Space Carbon Fiber Composite Market (by Application)

3. Markets - Competitive Benchmarking & Company Profiles

  • 3.1. Market Share Analysis
  • 3.2. Composite Companies
    • 3.2.1. Airborne
      • 3.2.1.1. Company Overview
        • 3.2.1.1.1. Role of Airborne in the Space Carbon Fiber Composite Market
        • 3.2.1.1.2. Customers
        • 3.2.1.1.3. Product Portfolio
      • 3.2.1.2. Business Strategies
        • 3.2.1.2.1. Investment
      • 3.2.1.3. Corporate Strategies
        • 3.2.1.3.1. Partnerships, Collaborations, Agreements, and Contracts
      • 3.2.1.4. Analyst View
    • 3.2.2. CarboSpaceTech GmbH
      • 3.2.2.1. Company Overview
        • 3.2.2.1.1. Role of CarboSpaceTech GmbH in the Space Carbon Fiber Composite Market
        • 3.2.2.1.2. Customers
        • 3.2.2.1.3. Product Portfolio
      • 3.2.2.2. Analyst View
    • 3.2.3. Oxeon AB
      • 3.2.3.1. Company Overview
        • 3.2.3.1.1. Role of Oxeon AB in the Space Carbon Fiber Composite Market
        • 3.2.3.1.2. Customers
        • 3.2.3.1.3. Product Portfolio
      • 3.2.3.2. Business Strategies
        • 3.2.3.2.1. New Product Launches
      • 3.2.3.3. Analyst View
    • 3.2.4. Peak Technology
      • 3.2.4.1. Company Overview
        • 3.2.4.1.1. Role of Peak Technology in the Space Carbon Fiber Composite Market
        • 3.2.4.1.2. Customers
        • 3.2.4.1.3. Product Portfolio
      • 3.2.4.2. Corporate Strategies
        • 3.2.4.2.1. Partnerships, Collaborations, Agreements, and Contracts
      • 3.2.4.3. Analyst View
    • 3.2.5. RUAG Group (Beyond Gravity)
      • 3.2.5.1. Company Overview
        • 3.2.5.1.1. Role of RUAG Group (Beyond Gravity) in the Space Carbon Fiber Composite Market
        • 3.2.5.1.2. Customers
        • 3.2.5.1.3. Product Portfolio
      • 3.2.5.2. Corporate Strategies
        • 3.2.5.2.1. Partnerships, Collaborations, Agreements, and Contracts
      • 3.2.5.3. Analyst View
    • 3.2.6. SGL Carbon SE
      • 3.2.6.1. Company Overview
        • 3.2.6.1.1. Role of SGL Carbon SE in the Space Carbon Fiber Composite Market
        • 3.2.6.1.2. Customers
        • 3.2.6.1.3. Product Portfolio
      • 3.2.6.2. Analyst View
    • 3.2.7. Thales Group
      • 3.2.7.1. Company Overview
        • 3.2.7.1.1. Role of Thales Group in the Space Carbon Fiber Composite Market
        • 3.2.7.1.2. Product Portfolio
      • 3.2.7.2. Corporate Strategies
        • 3.2.7.2.1. Partnerships, Collaborations, Agreements, Investments, and Contracts
      • 3.2.7.3. Analyst View
    • 3.2.8. Airbus S.A.S
      • 3.2.8.1. Company Overview
        • 3.2.8.1.1. Role of Airbus S.A.S in the Space Carbon Fiber Composite Market
        • 3.2.8.1.2. Product Portfolio
      • 3.2.8.2. Corporate Strategies
        • 3.2.8.2.1. Partnerships, Collaborations, Agreements, and Contracts
      • 3.2.8.3. Analyst View
    • 3.2.9. ArianeGroup
      • 3.2.9.1. Company Overview
        • 3.2.9.1.1. Role of ArianeGroup in the Space Carbon Fiber Composite Market
        • 3.2.9.1.2. Product Portfolio
      • 3.2.9.2. Corporate Strategies
        • 3.2.9.2.1. Partnerships, Collaborations, Agreements, Investments, and Contracts
      • 3.2.9.3. Analyst View

4. Research Methodology

  • 4.1. Factors for Data Prediction and Modeling

List of Figures

  • Figure 1: Europe Space Carbon Fiber Composite Market, $Million, 2022 and 2033
  • Figure 2: Europe Space Carbon Fiber Composite Market (by Application), $Million, 2022 and 2033
  • Figure 3: Space Carbon Fiber Composite Market (by Region), $Million, 2023
  • Figure 4: Key Composite Suppliers for Satellite Application
  • Figure 5: Key Composite Suppliers for Launch Vehicle Application
  • Figure 6: Space Carbon Fiber Composite Market: Business Dynamics
  • Figure 7: Global Satellite Launch Forecast, Volume (Unit), 2021-2032
  • Figure 8: Share of Key Market Strategies and Developments, January 2020-April 2023
  • Figure 9: Space Carbon Fiber Composite Market Share (by Company), 2022
  • Figure 10: Research Methodology
  • Figure 11: Top-Down and Bottom-Up Approach
  • Figure 12: Assumptions and Limitations

List of Tables

  • Table 1: Aerospace-Grade Materials Cost
  • Table 2: New Product Development, January 2018-April 2023
  • Table 3: Investments, January 2018-April 2023
  • Table 4: Partnerships, Collaborations, Agreements, and Contracts, 2020-2022
  • Table 5: Mergers and Acquisitions, January 2019-April 2023
  • Table 6: Space Carbon Fiber Composite Market (by Region), $Million, 2022-2033
  • Table 7: Europe Space Carbon Fiber Composite Market (by Application), $Million, 2022-2033
  • Table 8: Germany Space Carbon Fiber Composite Market (by Application), $Million, 2022-2033
  • Table 9: France Space Carbon Fiber Composite Market (by Application), $Million, 2022-2033
  • Table 10: Russia Space Carbon Fiber Composite Market (by Application), $Million, 2022-2033
  • Table 11: U.K. Space Carbon Fiber Composite Market (by Application), $Million, 2022-2033
  • Table 12: Rest-of-Europe Space Carbon Fiber Composite Market (by Application), $Million, 2022-2033
  • Table 13: Airborne: Product Portfolio
  • Table 14: Airborne: Investment
  • Table 15: Airborne: Partnerships, Collaborations, Agreements, Investments, and Contracts
  • Table 16: CarboSpaceTech GmbH: Product Portfolio
  • Table 17: Oxeon AB: Product Portfolio
  • Table 18: Oxeon AB: New Product Launches
  • Table 19: Peak Technology: Product Portfolio
  • Table 20: Peak Technology: Partnerships, Collaborations, Agreements, Investments, and Contracts
  • Table 21: RUAG Group: Product Portfolio
  • Table 22: RUAG Group: Partnerships, Collaborations, Agreements, Investments, and Contracts
  • Table 23: SGL Carbon SE: Product Portfolio
  • Table 24: Thales Group: Product Portfolio
  • Table 25: Thales: Partnerships, Collaborations, Agreements, Investments, and Contracts
  • Table 26: Airbus S.A.S: Product Portfolio
  • Table 27: Airbus S.A.S: Partnerships, Collaborations, Agreements, and Contracts
  • Table 28: ArianeGroup: Product and Service Portfolio
  • Table 29: ArianeGroup: Partnerships, Collaborations, Agreements, Investments, and Contracts