세계의 로켓 엔진용 적층 제조 시장 보고서(2025년)
Additive Manufacturing For Rocket Engines Global Market Report 2025
상품코드 : 1809995
리서치사 : The Business Research Company
발행일 : On Demand Report
페이지 정보 : 영문 250 Pages
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한글목차

로켓 엔진용 적층 제조 시장은 향후 수년간 급성장할 것으로 전망됩니다. 2029년까지 CAGR 17.9%로 51억 9,000만 달러로 성장할 전망입니다. 예측 기간 동안의 성장은 상업용 우주 발사 횟수 증가, 로켓 설계의 재사용성 수요 증가, 디지털 트윈 및 시뮬레이션 툴 채택 증가, 임무 유연성 향상을 위한 신속한 제조 요구 증가, 지속 가능성 및 폐기물 감소에 초점을 맞추고 있습니다. 예측 기간의 주요 동향으로는 설계 최적화를 위한 인공지능(AI)의 통합, 온디맨드 제조 모델, 전자빔 및 레이저 분말 소결 기술의 사용, 디지털 스레드 및 시뮬레이션의 적용 확대, 커스터마이징 및 프로토타이핑의 중시 강화 등이 있습니다.

상업용 우주 발사 서비스에 대한 수요 증가가 향후 로켓 엔진용 적층 제조 시장의 성장을 이끌 것으로 예측됩니다. 상업용 우주 발사 서비스는 다양한 고객을 위해 위성, 화물, 승무원을 우주로 보내는 민간 로켓 발사를 제공하며 정부 운영의 발사에 비해 비용 효율성과 신뢰성을 제공합니다. 이 수요는 위성을 이용한 커뮤니케이션과 지구 관측에 대한 민간 투자 증가로 인해 주요 기업들이 보다 빈번한 임무를 계획하게 되었다는 점에서 뒷받침되고 있습니다. 로켓 엔진용 적층 제조는 경량이며 복잡한 부품의 제조를 가능하게 하고, 엔진 성능과 연료 효율을 향상시킴으로써 상업용 우주 발사 서비스를 지원합니다. 또한 생산 시간과 비용을 줄이고 발사 일정을 가속화하며 전체 임무의 신뢰성을 향상시킵니다. 예를 들어, 2024년 11월 미국 연방 정부 기관인 연방항공국은 상업용 우주 사업이 2023년 30% 이상 증가하여 148회 발사에 이르렀다고 보고했으며, 이 수는 2028년까지 2배 이상이 될 것으로 예측됩니다. 이와 같이 상업용 우주 발사 서비스에 대한 수요 증가가 로켓 엔진용 적층 제조 시장의 성장을 뒷받침하고 있습니다.

로켓 엔진용 적층 제조 시장의 주요 기업은 생산의 확장성을 높이고 비용을 절감하며 로켓 엔진 부품의 성능을 높이기 위해 3D 인쇄 적층 제조 시스템과 같은 첨단 기술에 주력하고 있습니다. 이 3D 프린팅 시스템은 디지털 설계에서 레이어별로 부품을 구축하여 복잡한 부품을 효율적이며 신속하게 제조할 수 있습니다. 예를 들어, 2025년 6월, 한국의 항공우주 및 방위기업인 Innospace사는 독자적인 금속 적층 제조 기술을 사용해, 로켓 엔진과 우주 로켓용의 주요 부품을 제조하는 고급 사내 3D 프린팅 부문을 시작했습니다. 이를 통해 보다 빠르고, 정확하며, 비용 효율적인 제조가 가능하고, 기존 방법에 비해 제조 비용을 최대 50%까지 절감할 수 있어 경쟁력 강화가 기대됩니다. 이 부문에서는 설계부터 품질 검증까지 모든 제조 단계를 관리하고 있으며, 이미 Hanbit 로켓용 산화제 펌프를 포함한 13개의 중요한 부품을 제조하고 있습니다.

목차

제1장 주요 요약

제2장 시장 특징

제3장 시장 동향과 전략

제4장 시장 : 금리, 인플레이션, 지정학, 무역 전쟁과 관세, 그리고 코로나 및 회복이 시장에 미치는 영향을 포함한 거시 경제 시나리오

제5장 세계의 성장 분석과 전략 분석 프레임워크

제6장 시장 세분화

제7장 지역별/국가별 분석

제8장 아시아태평양 시장

제9장 중국 시장

제10장 인도 시장

제11장 일본 시장

제12장 호주 시장

제13장 인도네시아 시장

제14장 한국 시장

제15장 서유럽 시장

제16장 영국 시장

제17장 독일 시장

제18장 프랑스 시장

제19장 이탈리아 시장

제20장 스페인 시장

제21장 동유럽 시장

제22장 러시아 시장

제23장 북미 시장

제24장 미국 시장

제25장 캐나다 시장

제26장 남미 시장

제27장 브라질 시장

제28장 중동 시장

제29장 아프리카 시장

제30장 경쟁 구도와 기업 프로파일

제31장 기타 주요 기업 및 혁신 기업

제32장 세계 시장 경쟁 벤치마킹과 대시보드

제33장 주요 인수합병(M&A)

제34장 최근 시장 동향

제35장 시장의 잠재력이 높은 국가, 부문, 전략

제36장 부록

CSM
영문 목차

영문목차

Additive manufacturing for rocket engines refers to the technique of producing intricate engine components by layering metal powders or other materials using 3D printing technologies. This method allows for the fabrication of complex geometries that are challenging or unfeasible with traditional manufacturing processes. The primary goal is to reduce production time, cost, and weight while enhancing performance and design flexibility.

The main materials used in additive manufacturing for rocket engines include metals, polymers, ceramics, and others. Metals used in this process consist of powders or wires that are fused layer by layer to create engine parts. This technique employs various technologies such as selective laser melting, electron beam melting, fused deposition modeling, among others. It supports diverse applications including prototyping, production, and research and development (R&D), serving key end users like aerospace, defense, and others.

Note that the outlook for this market is being affected by rapid changes in trade relations and tariffs globally. The report will be updated prior to delivery to reflect the latest status, including revised forecasts and quantified impact analysis. The report's Recommendations and Conclusions sections will be updated to give strategies for entities dealing with the fast-moving international environment.

The sharp hike in U.S. tariffs and the associated trade disputes in spring 2025 are notably impacting the aerospace and defense sector by raising costs for titanium, carbon fiber composites, and avionics materials largely sourced from global suppliers. Defense contractors, locked into fixed-price government contracts, absorb these added costs, while commercial aerospace firms face airline pushback on higher aircraft prices. Delays in component shipments due to customs bottlenecks further disrupt tight production schedules for jets and satellites. The industry is responding by stockpiling critical materials, seeking waivers for defense-related imports, and collaborating with allied nations to diversify supply chain.

The additive manufacturing for rocket engines market research report is one of a series of new reports from The Business Research Company that provides additive manufacturing for rocket engines market statistics, including additive manufacturing for rocket engines industry global market size, regional shares, competitors with an additive manufacturing for rocket engines market share, detailed additive manufacturing for rocket engines market segments, market trends and opportunities, and any further data you may need to thrive in the additive manufacturing for rocket engines industry. This additive manufacturing for rocket engines market research report delivers a complete perspective of everything you need, with an in-depth analysis of the current and future scenario of the industry.

The additive manufacturing for rocket engines market size has grown rapidly in recent years. It will grow from $2.27 billion in 2024 to $2.69 billion in 2025 at a compound annual growth rate (CAGR) of 18.2%. The growth during the historic period can be attributed to rising demand for lightweight rocket components, expansion of the private space sector, government-funded aerospace additive manufacturing initiatives, increasing prototyping requirements for engine design iterations, and growing testing of additive-manufactured engines.

The additive manufacturing for rocket engines market size is expected to see rapid growth in the next few years. It will grow to $5.19 billion in 2029 at a compound annual growth rate (CAGR) of 17.9%. The growth during the forecast period can be attributed to the rising number of commercial space launches, increasing demand for reusability in rocket design, growing adoption of digital twin and simulation tools, heightened need for rapid manufacturing to enhance mission flexibility, and initiatives focused on sustainability and waste reduction. Key trends in the forecast period include the integration of artificial intelligence (AI) for design optimization, on-demand manufacturing models, use of electron beam and laser powder bed fusion technologies, expanded application of digital thread and simulations, and increased emphasis on customization and prototyping.

The rising demand for commercial space launch services is expected to drive the growth of the additive manufacturing for rocket engines market going forward. Commercial space launch services involve privately offered rocket launches that deliver satellites, cargo, or crew into space for various clients, providing cost-effective and reliable alternatives to government-operated launches. This demand is fueled by increased private sector investment in satellite-based communication and Earth observation, leading companies to plan more frequent missions. Additive manufacturing for rocket engines supports commercial space launch services by enabling the creation of lightweight, complex components, enhancing engine performance and fuel efficiency. It also reduces production time and costs, speeding up launch schedules and improving overall mission reliability. For example, in November 2024, the Federal Aviation Administration, a US federal agency, reported that commercial space operations grew by over 30% in 2023 to reach 148 launches, with projections indicating this number will more than double by 2028. Thus, the increasing demand for commercial space launch services is fueling the growth of the additive manufacturing for rocket engines market.

Leading companies in the additive manufacturing for rocket engines market are focusing on advancing technologies such as 3D printing additive manufacturing systems to improve production scalability, cut costs, and boost performance of rocket engine components. These 3D printing systems build parts layer by layer from digital designs, enabling complex, efficient, and rapid manufacturing. For instance, in June 2025, Innospace, a South Korea-based aerospace and defense company, launched an advanced in-house 3D printing division dedicated to manufacturing rocket engines and key components for its space launch vehicles using proprietary metal additive manufacturing technology. This initiative is expected to enhance competitiveness by enabling faster, more precise, and cost-effective production, potentially reducing manufacturing costs by up to 50% compared to traditional methods. The division manages all production stages, from design to quality verification, and has already produced 13 critical parts, including oxidizer pumps for the HANBIT launch vehicle.

In July 2023, L3Harris Technologies Inc., a US-based aerospace and defense technology firm, acquired Aerojet Rocketdyne Holdings Inc. for $4.7 billion. Through this acquisition, L3Harris aims to strengthen its propulsion capabilities by incorporating Aerojet Rocketdyne's expertise in rocket engines and energetics, bolstering its position in missile defense, hypersonics, and space propulsion. Aerojet Rocketdyne Holdings Inc., a US aerospace and defense company, utilizes additive manufacturing to enhance rocket engine performance, reduce costs, and speed up production.

Major players in the additive manufacturing for rocket engines market are Northrop Grumman Corporation, General Electric Company, L3Harris Technologies Inc., TRUMPF SE + Co. KG, Space Exploration Technologies Corp., Blue Origin Enterprises L.P., DMG MORI Aktiengesellschaft, United Launch Alliance LLC (ULA), RUAG Holding AG, Sierra Space Corporation, Rocket Lab USA Inc., Firefly Aerospace Inc., MT Aerospace AG, Velo3D Inc., Gilmour Space Technologies Pty Ltd., Ursa Major Technologies Inc., Orbex Ltd., Sintavia LLC, Vast Space Corp., EOS GmbH, Equatorial Space Systems Pty Ltd., and Skyrora Ltd.

North America was the largest region in the additive manufacturing for rocket engines market in 2024. Asia-Pacific is expected to be the fastest-growing region in the forecast period. The regions covered in additive manufacturing for rocket engines report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East and Africa.

The countries covered in the additive manufacturing for rocket engines market report are Australia, Brazil, China, France, Germany, India, Indonesia, Japan, Russia, South Korea, UK, USA, Canada, Italy, Spain.

The additive manufacturing for rocket engines market consists of sales of 3D-printed combustion chambers, 3D-printed injector heads, additively manufactured turbopump components, 3D-printed nozzles, lightweight structural components, and 3D-printed fuel manifolds. Values in this market are 'factory gate' values, that is the value of goods sold by the manufacturers or creators of the goods, whether to other entities (including downstream manufacturers, wholesalers, distributors and retailers) or directly to end customers. The value of goods in this market includes related services sold by the creators of the goods.

The market value is defined as the revenues that enterprises gain from the sale of goods and/or services within the specified market and geography through sales, grants, or donations in terms of the currency (in USD, unless otherwise specified).

The revenues for a specified geography are consumption values and are revenues generated by organizations in the specified geography within the market, irrespective of where they are produced. It does not include revenues from resales along the supply chain, either further along the supply chain or as part of other products.

Additive Manufacturing For Rocket Engines Global Market Report 2025 from The Business Research Company provides strategists, marketers and senior management with the critical information they need to assess the market.

This report focuses on additive manufacturing for rocket engines market which is experiencing strong growth. The report gives a guide to the trends which will be shaping the market over the next ten years and beyond.

Reasons to Purchase

Where is the largest and fastest growing market for additive manufacturing for rocket engines ? How does the market relate to the overall economy, demography and other similar markets? What forces will shape the market going forward, including technological disruption, regulatory shifts, and changing consumer preferences? The additive manufacturing for rocket engines market global report from the Business Research Company answers all these questions and many more.

The report covers market characteristics, size and growth, segmentation, regional and country breakdowns, competitive landscape, market shares, trends and strategies for this market. It traces the market's historic and forecast market growth by geography.

The forecasts are made after considering the major factors currently impacting the market. These include the technological advancements such as AI and automation, Russia-Ukraine war, trade tariffs (government-imposed import/export duties), elevated inflation and interest rates.

Scope

Table of Contents

1. Executive Summary

2. Additive Manufacturing For Rocket Engines Market Characteristics

3. Additive Manufacturing For Rocket Engines Market Trends And Strategies

4. Additive Manufacturing For Rocket Engines Market - Macro Economic Scenario Including The Impact Of Interest Rates, Inflation, Geopolitics, Trade Wars and Tariffs, And Covid And Recovery On The Market

5. Global Additive Manufacturing For Rocket Engines Growth Analysis And Strategic Analysis Framework

6. Additive Manufacturing For Rocket Engines Market Segmentation

7. Additive Manufacturing For Rocket Engines Market Regional And Country Analysis

8. Asia-Pacific Additive Manufacturing For Rocket Engines Market

9. China Additive Manufacturing For Rocket Engines Market

10. India Additive Manufacturing For Rocket Engines Market

11. Japan Additive Manufacturing For Rocket Engines Market

12. Australia Additive Manufacturing For Rocket Engines Market

13. Indonesia Additive Manufacturing For Rocket Engines Market

14. South Korea Additive Manufacturing For Rocket Engines Market

15. Western Europe Additive Manufacturing For Rocket Engines Market

16. UK Additive Manufacturing For Rocket Engines Market

17. Germany Additive Manufacturing For Rocket Engines Market

18. France Additive Manufacturing For Rocket Engines Market

19. Italy Additive Manufacturing For Rocket Engines Market

20. Spain Additive Manufacturing For Rocket Engines Market

21. Eastern Europe Additive Manufacturing For Rocket Engines Market

22. Russia Additive Manufacturing For Rocket Engines Market

23. North America Additive Manufacturing For Rocket Engines Market

24. USA Additive Manufacturing For Rocket Engines Market

25. Canada Additive Manufacturing For Rocket Engines Market

26. South America Additive Manufacturing For Rocket Engines Market

27. Brazil Additive Manufacturing For Rocket Engines Market

28. Middle East Additive Manufacturing For Rocket Engines Market

29. Africa Additive Manufacturing For Rocket Engines Market

30. Additive Manufacturing For Rocket Engines Market Competitive Landscape And Company Profiles

31. Additive Manufacturing For Rocket Engines Market Other Major And Innovative Companies

32. Global Additive Manufacturing For Rocket Engines Market Competitive Benchmarking And Dashboard

33. Key Mergers And Acquisitions In The Additive Manufacturing For Rocket Engines Market

34. Recent Developments In The Additive Manufacturing For Rocket Engines Market

35. Additive Manufacturing For Rocket Engines Market High Potential Countries, Segments and Strategies

36. Appendix

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