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    Aerospace Additive Manufacturing Market

    ID: MRFR/A&D/1022-CR
    134 Pages
    Sejal Akre
    February 2021

    Aerospace Additive Manufacturing Market Research Report Information By Application (Structural, Engine, and Others), By Platform (Spacecraft, Aircraft, and Unmanned Aerial Vehicle), By Technology (Laser Sintering, 3D Printing, Electron Beam Melting, Fused Deposition Modeling, And Stereo Lithography), By Material (Plastic, Rubber, Metal alloy, and Others) And By Region (North America, Europe, As...

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    Aerospace Additive Manufacturing Market Research Report - Global Forecast till 2032 Infographic
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    Table of Contents

    Aerospace Additive Manufacturing Market Summary

    As per Market Research Future Analysis, the Global Aerospace Additive Manufacturing Market was valued at USD 8.29 Billion in 2023 and is projected to reach USD 36.25 Billion by 2032, growing at a CAGR of 20.24% from 2024 to 2032. Key drivers include increased adoption in the defense sector and rising air travel demand. The market is significantly influenced by the need for lightweight components, which enhance fuel efficiency and reduce costs. The integration of AI in the manufacturing process is also contributing to market growth by improving precision and design complexity.

    Key Market Trends & Highlights

    The aerospace additive manufacturing market is witnessing significant growth driven by technological advancements and demand for lightweight components.

    • Market Size in 2023: USD 8.29 Billion.
    • Projected Market Size by 2032: USD 36.25 Billion.
    • CAGR from 2024 to 2032: 20.24%.
    • Engine segment led the market in 2022 due to increased R&D investments.

    Market Size & Forecast

    2023 Market Size USD 8.29 Billion
    2024 Market Size USD 9.97 Billion
    2032 Market Size USD 36.25 Billion
    CAGR from 2024 to 2032 20.24%
    Largest Regional Market Share in 2024 North America.

    Major Players

    Key players include Arcam AB (Sweden), 3D Systems Inc. (U.S.), CRP Technology SRL (Italy), Concept Laser GMBH (Germany), Eos (Germany), and Stratasys Ltd (U.S.).

    Aerospace Additive Manufacturing Market Trends

    The growing need for lightweight parts and components is driving the market growth.

    Market CAGR for aircraft's weight is driven by the rising aircraft design and Development. Lightening an airplane's load decreases its environmental impact, fuel needs, and cost per mile flown. There is no sacrifice in structural integrity or aerodynamic efficiency when using 3D printing to create airplane parts, components, and frames. The lead time and cost for each aircraft are cut by 70–90% compared to other production procedures thanks to the hundreds of guides, fittings, templates, and gauges 3D printed by the makers.

    For this reason, the aerospace and defense additive manufacturing industry is expected to develop in the next years as demand for lightweight and inexpensive parts continues to rise.

    Additionally, low-cost carrier grips, jigs, and fittings are commonly made using aerospace AM. Similarly, the widespread adoption of AM enables fabricating components with premium materials with small production runs and low turnaround times, all of which encourage the expansion of the industry. Engines, brackets, ducting, and seat belt buckles are just a few examples of complicated and individualized parts that can be manufactured with aerospace additive manufacturing.

    Furthermore, the integration of artificial intelligence (AI) with aerospace AM to monitor and adjust the 3D printing process and quickly detect geometrical distortions is providing an injection to the marketplace and the growing adoption of AM in the aerospace industry because it offers a level of precision and helps to attain more intricate designs, which is positively influencing the market growth. The temporary closure of gyms, wellness centers, healthcare facilities, and sports academies also affected industry growth.

    For instance, The Engine Division of Hindustan Aeronautics Ltd (HAL) and Wipro 3D, the metal additive manufacturing (AM) division of Wipro Infrastructure Engineering (WIN), have announced the production of a metal 3D-printed aviation engine component. A crucial aero-engine component used in the hot zone is now being designed, manufactured, and certified for airworthiness as part of the partnership. As a result, it is anticipated that demand for additive manufacturing will increase throughout the projection period due to the rising aircraft design and Development. Thus, driving the aerospace additive manufacturing market revenue.

    The integration of additive manufacturing in the aerospace sector is poised to revolutionize production processes, enhancing efficiency and enabling the creation of complex geometries that were previously unattainable.

    U.S. Department of Defense

    Aerospace Additive Manufacturing Market Drivers

    Market Growth Projections

    The Global Aerospace Additive Manufacturing Market Industry is poised for substantial growth, with projections indicating a rise from 9.97 USD Billion in 2024 to 63.0 USD Billion by 2035. This remarkable increase suggests a compound annual growth rate (CAGR) of 18.25% from 2025 to 2035, reflecting the industry's robust expansion. Factors contributing to this growth include technological advancements, cost reductions, and increasing demand for customized aerospace components. The market's trajectory indicates a shift towards more efficient manufacturing processes, positioning additive manufacturing as a critical component of the aerospace supply chain.

    Sustainability Initiatives

    Sustainability initiatives are becoming a crucial driver for the Global Aerospace Additive Manufacturing Market Industry. As environmental concerns grow, aerospace manufacturers are increasingly adopting additive manufacturing to reduce their carbon footprint. This technology enables the production of lighter components, which can lead to lower fuel consumption and emissions during flight. Moreover, the use of recyclable materials in additive processes aligns with global sustainability goals. The market's growth trajectory, projected to reach 63.0 USD Billion by 2035, reflects the industry's commitment to sustainable practices and the potential for additive manufacturing to contribute positively to environmental objectives.

    Technological Advancements

    The Global Aerospace Additive Manufacturing Market Industry is experiencing rapid technological advancements that enhance production capabilities. Innovations in materials, such as high-performance polymers and metal alloys, enable the creation of complex geometries that were previously unattainable. For instance, the introduction of direct metal laser sintering (DMLS) allows for the production of lightweight yet strong components, which is crucial in aerospace applications. As a result, the market is projected to reach 9.97 USD Billion in 2024, driven by these advancements that improve efficiency and reduce waste in manufacturing processes.

    Cost Reduction in Production

    Cost reduction remains a pivotal driver in the Global Aerospace Additive Manufacturing Market Industry. Additive manufacturing techniques significantly lower production costs by minimizing material waste and reducing the need for extensive tooling. For example, the ability to produce parts on-demand eliminates the costs associated with inventory management. This efficiency is particularly beneficial for aerospace companies, which face high operational costs. As the industry evolves, it is anticipated that the market will grow to 63.0 USD Billion by 2035, reflecting the financial advantages that additive manufacturing offers to aerospace manufacturers.

    Customization and Design Flexibility

    Customization and design flexibility are increasingly recognized as key drivers within the Global Aerospace Additive Manufacturing Market Industry. The ability to produce bespoke components tailored to specific requirements allows aerospace manufacturers to enhance performance and reduce weight. This flexibility is particularly advantageous for the production of specialized parts, such as engine components and brackets, which can be optimized for specific aircraft models. As the demand for customized solutions rises, the market is expected to witness a compound annual growth rate (CAGR) of 18.25% from 2025 to 2035, indicating a robust shift towards additive manufacturing.

    Regulatory Support and Standards Development

    Regulatory support and standards development play a significant role in shaping the Global Aerospace Additive Manufacturing Market Industry. Governments and industry bodies are actively establishing guidelines and standards to ensure the safety and reliability of additive manufactured components. This regulatory framework fosters confidence among manufacturers and encourages the adoption of additive technologies. As these standards evolve, they are likely to facilitate broader acceptance of additive manufacturing in aerospace applications. The anticipated growth of the market to 9.97 USD Billion in 2024 underscores the importance of regulatory support in driving innovation and ensuring compliance within the industry.

    Market Segment Insights

    Aerospace Additive Manufacturing Application Insights

    The aerospace additive manufacturing market segmentation, based on application, includes structural, engine, and others. In 2022, the engine segment led the aerospace additive manufacturing market in revenue because original equipment manufacturers (OEMs) of airplanes are pouring more money into research and development in response to increasing demand.

    Figure 1: Aerospace Additive Manufacturing Market by Application, 2022 & 2032 (USD Billion)

    Source Secondary Research, Primary Research, Market Research Future Database and Analyst Review

    Aerospace Additive Manufacturing Platform Insights

    The aerospace additive manufacturing market segmentation, based on platform, includes spacecraft, aircraft, and unmanned aerial vehicles . The spacecraft category generated the most income (70.5%). Because more and more airplane components, from engines to interior items to air ducts to cast metal parts, are being created via additive manufacturing.

    Aerospace Additive Manufacturing Technology Insights

    The aerospace additive manufacturing market segmentation, based on technology, including laser sintering, 3D printing, electron beam melting, fused deposition modeling, and stereo lithography. The fused deposition modeling category is expected to develop at a CAGR of 20.24% over the projected period, making up the largest market share because it creates superior strength and stability components, uses a wide range of thermoplastics, and has highly precise geometrical structures.

    Aerospace Additive Manufacturing Material Insights

    The aerospace additive manufacturing market segmentation, based on material, includes plastic, rubber, metal alloy, and others. The category with the largest market share is a metal alloy, expected to grow fastest at a CAGR of 20.24% over the next several years. Because the metal alloy is composed of more than one metal, its hardness can be increased significantly.

    Get more detailed insights about Aerospace Additive Manufacturing Market Research Report - Global Forecast till 2032

    Regional Insights

    By region, the study provides market insights into North America, Europe, Asia-Pacific, and the Rest of the World. The North American aerospace additive manufacturing market area will dominate this market because of increased investments in the aviation and defense industries. In addition, increased spending on buying cutting-edge military hardware and a booming aircraft industry in this region.

    Further, the major countries studied in the market report are The US, Canada, German, France, the UK, Italy, Spain, China, Japan, India, Australia, South Korea, and Brazil.

    Figure 2: AEROSPACE ADDITIVE MANUFACTURING MARKET SHARE BY REGION 2022 (USD Billion)

    AEROSPACE ADDITIVE MANUFACTURING MARKET SHARE BY REGION 2022 (USD Billion)

    Source Secondary Research, Primary Research, Market Research Future Database, and Analyst Review

    Europe’s aerospace additive manufacturing market accounts for the second-largest market share because of the growing interest in additive manufacturing, increasing investments in the aviation industry, and the acquisition of cutting-edge defense equipment containing 3D printed components contribute to the expansion of the market in Europe. Further, the German aerospace additive manufacturing market held the largest market share, and the UK aerospace additive manufacturing market was the fastest-growing market in the European region.

    The Asia-Pacific aerospace additive manufacturing market is expected to grow at the fastest CAGR from 2024 to 2032. It is due to rising investments in lightweight component development for the defense and aerospace industries that are the primary driver of this expansion. Moreover, China’s aerospace additive manufacturing market held the largest market share, and the Indian aerospace additive manufacturing market was the fastest-growing market in the Asia-Pacific region.

    Key Players and Competitive Insights

    Leading market players are investing heavily in research and development to expand their product lines, which will help the Aerospace Additive Manufacturing market grow even more. Market participants are also undertaking various strategic activities to expand their footprint, with important market developments including new product launches, contractual agreements, mergers and acquisitions, higher investments, and collaboration with other organizations. To expand and survive in a more competitive and rising market climate, the aerospace additive manufacturing industry must offer cost-effective items.

    Manufacturing locally to minimize operational costs is one of the key business tactics manufacturers use in the aerospace additive manufacturing industry to benefit clients and increase the market sector. In recent years, the aerospace additive manufacturing industry has offered some of the most significant technological advantages.

    Major players in the aerospace additive manufacturing market, including Arcam AB (Sweden), 3d Systems Inc. (U.S.), CRP Technology SRL (Italy), Concept laser GMBH I (Germany), Eos (Germany), CRS Holdings Inc. (U.S.), Optomec (U.S.), Stratasys ltd (U.S.), Exone (U.S.), SLM solution group AG (Germany), and others, are attempting to increase market demand by investing in research and development operations.

    GE Additive, a division of General Electric (NYSE GE), is a frontrunner in metal additive design and manufacturing. Our comprehensive offering of additive expertise, cutting-edge machinery, and premium powders equip our customers to create novel products. Products that address issues in manufacturing boost corporate performance and effect positive social change. Concept Laser and Arcam EBM are two additive machine brands owned by GE Additive and additive powder supplier AP&C. In October 2022, GE Additive's Binder Jet Line and Series 3 printer had more specifications made public.

    After four years of client discovery, collaboration, and testing, the system will be released in the second half of 2023, ready and relevant for modern, high-volume, serial production scenarios.

    In 1986, 3D Systems pioneered the 3D printing business, and ever since then, the Company has been at the forefront of additive manufacturing advancements. From plastics to metals, our Applications Innovation Group provides industry-specific engineering knowledge to support our extensive hardware, software, and material solutions portfolio. We use a collaborative, application-centric approach when resolving your most pressing design and manufacturing issues. Our customers can overcome traditional manufacturing barriers and fully realize the potential of additive manufacturing thanks to the combination of our solutions, expertise, and innovation.

    Founded in 1984 and headquartered in Rock Hill, South Carolina, 3D Systems has expanded its footprint to include offices, manufacturing sites, and Customer Innovation Centers. In December 2022, An additive manufacturing system for producing electrical connectors in compliance with demanding UL regulatory criteria was collaboratively developed by 3D Systems and TE Connectivity, a leader in connectors and sensors.

    Key Companies in the Aerospace Additive Manufacturing Market market include

    Industry Developments

    Future Outlook

    Aerospace Additive Manufacturing Market Future Outlook

    The Aerospace Additive Manufacturing Market is projected to grow at 18.25% CAGR from 2024 to 2035, driven by technological advancements, increased demand for lightweight components, and sustainability initiatives.

    New opportunities lie in:

    • Develop advanced materials for high-performance aerospace applications.
    • Invest in automation technologies to enhance production efficiency.
    • Forge partnerships with aerospace firms to co-develop innovative additive solutions.

    By 2035, the market is expected to be robust, reflecting substantial growth and innovation.

    Market Segmentation

    Aerospace Additive Manufacturing Material Outlook

    • Plastic
    • Rubber
    • Metal alloy
    • Others

    Aerospace Additive Manufacturing Platform Outlook

    • Spacecraft
    • Aircraft
    • Unmanned aerial vehicle

    Aerospace Additive Manufacturing Regional Outlook

    North America
    • US
    • Canada

    Aerospace Additive Manufacturing Technology Outlook

    • Laser sintering
    • 3d printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography

    Aerospace Additive Manufacturing Application Outlook

    • Structural
    • Engine
    • Others

    Report Scope

    Attribute/Metric Details
    Market Size 2023 USD 8.29 Billion
    Market Size 2024 USD 9.967896 Billion
    Market Size 2032 USD 36.25 Billion
    Compound Annual Growth Rate (CAGR) 20.24% (2024-2032)
    Base Year 2022
    Market Forecast Period 2024-2032
    Historical Data 2018- 2021
    Market Forecast Units Value (USD Billion)
    Report Coverage Revenue Forecast, Market Competitive Landscape, Growth Factors, and Trends
    Segments Covered Application, Platform, Technology, Material, and Region
    Geographies Covered North America, Europe, Asia Pacific, and the Rest of the World
    Countries Covered The US, Canada, German, France, UK, Italy, Spain, China, Japan, India, Australia, South Korea, and Brazil
    Key Companies Profiled  Arcam AB (Sweden), 3d Systems Inc (U.S.), Crp Technology SRL (Italy), Concept Laser GMBH I (Germany), Eos (Germany), CRS Holdings Inc. (U.S.), Optomec (U.S.),  Stratasys Ltd (U.S.), Exone (U.S.), SLM solution group AG (Germany)
    Key Market Opportunities Technological Development in Additive Manufacturing
    Key Market Dynamics Rising to Need for Easily Transported Components Concentrating on cleaning up the environment and boosting eco-friendly manufacturing

    Market Highlights

    Author

    Sejal Akre
    Senior Research Analyst

    She has over 5 years of rich experience, in market research and consulting providing valuable market insights to client. Hands on expertise in management consulting, and extensive knowledge in domain including ICT, Automotive & Transportation and Aerospace & Defense. She is skilled in Go-to market strategy, industry analysis, market sizing, in depth company profiling, competitive intelligence & benchmarking and value chain amongst others.

    Leave a Comment

    FAQs

    How much is the aerospace additive manufacturing market?

    The aerospace additive manufacturing market size was valued at USD 8.29 Billion in 2023.

    What is the growth rate of the aerospace additive manufacturing market?

    The market is projected to grow at a CAGR of 17.51% during the forecast period, 2024-2032.

    Which region held the largest market share in the aerospace additive manufacturing market?

    North America had the largest share of the market.

    Who are the key players in the aerospace additive manufacturing market?

    The key players in the market are Arcam AB (Sweden), 3d Systems Inc. (U.S.), CRP Technology SRL (Italy), Concept Laser GMBH I (Germany), Eos (Germany), CRS Holdings Inc. (U.S.), Optomec (U.S.), Stratasys ltd (U.S.), Exone (U.S.), SLM solution group AG (Germany).

    Which platform type led the aerospace additive manufacturing market?

    The spacecraft platform category dominated the market in 2022.

    Which technology had the largest market share in the aerospace additive manufacturing market?

    The fused deposition modeling had the largest share in the market.

    1. '1 Executive Summary
      1. Market Attractiveness Analysis
        1. Global Aerospace Additive Manufacturing Market, By Platform
        2. Global
        3. Global
        4. Global
        5. Global
    2. Market Introduction
      1. Market Definition
      2. Scope Of The Study
      3. Market Structure
      4. Key Buying Criteria
      5. Market Factor
    3. Research Methodology
      1. Research Process
      2. Primary Research
      3. Secondary Research
      4. Market Size Estimation
      5. Forecast Model
      6. List Of Assumptions
    4. Market Insights
    5. Market Dynamics
      1. Introduction
      2. Drivers
      3. Restraints
      4. Opportunities
      5. Challenges
      6. Market/Technological Trends
      7. Patent Trends
      8. Regulatory Landscape/Standards
    6. Market Factor Analysis
      1. Value Chain/Supply Chain Analysis
        1. R&D
        2. Manufacturing
        3. Distribution & Sales
        4. Post-Sales Monitoring
      2. Porter’s Five Forces
        1. Threat Of New Entrants
        2. Bargaining Power
        3. Threat Of Substitutes
        4. Intensity Of
        5. Bargaining Power Of Suppliers
    7. Global Aerospace
      1. Introduction
      2. Aircraft
        1. Market Estimates & Forecast, 2024-2032
        2. Market Estimates & Forecast, By Region, 2024-2032
        3. Fixed-Wing
        4. Rotary-Wing
      3. Unmanned Aerial Vehicle
        1. Market Estimates & Forecast, 2024-2032
        2. Market Estimates
      4. Spacecraft
        1. Market
        2. Market Estimates & Forecast,
    8. Global Aerospace Additive Manufacturing Market, By Technology
      1. Introduction
      2. 3D Prinitng
        1. Market Estimates
        2. Market Estimates & Forecast, By Region,
      3. Stereolithography
        1. Market Estimates & Forecast,
        2. Market Estimates & Forecast, By Region, 2024-2032
      4. Fused Deposition Modelling
        1. Market Estimates & Forecast, 2024-2032
        2. Market Estimates & Forecast, By Region, 2024-2032
      5. Electron
        1. Market Estimates & Forecast, 2024-2032
        2. Market Estimates & Forecast, By Region, 2024-2032
      6. Laser Sintering
        1. Market Estimates & Forecast, 2024-2032
        2. Market Estimates
        3. Direct Metal
        4. Selective
    9. Global Aerospace Additive Manufacturing Market, By Material
      1. Introduction
      2. Metal Alloy
        1. Market Estimates & Forecast, 2024-2032
        2. Market Estimates & Forecast,
      3. Plastic
        1. Market Estimates &
        2. Market Estimates & Forecast, By Region, 2024-2032
      4. Rubber
        1. Market Estimates & Forecast, 2024-2032
        2. Market Estimates & Forecast, By Region, 2024-2032
      5. Others
        1. Market Estimates & Forecast, 2024-2032
        2. Market Estimates
    10. Global Aerospace Additive Manufacturing
      1. Introduction
      2. Engine
        1. Market Estimates & Forecast, 2024-2032
        2. Market Estimates
      3. Structural
        1. Market
        2. Market Estimates & Forecast,
      4. Others
        1. Market Estimates &
        2. Market Estimates & Forecast, By Region, 2024-2032
    11. Global Aerospace Additive Manufacturing Market, By Region
      1. Introduction
      2. North America
        1. Market Estimates
        2. Market Estimates & Forecast,
        3. Market Estimates & Forecast, By Material
        4. Market Estimates & Forecast, By Application, 2024-2032
        5. Market Estimates & Forecast, By Technology, 2024-2032
        6. US
        7. Canada
      3. Europe
        1. Market
        2. Market Estimates &
        3. Market Estimates & Forecast, By
        4. Market Estimates & Forecast, By Application,
        5. UK
        6. Germany
        7. France
        8. Italy
        9. Rest Of Europe
      4. Asia-Pacific
        1. Market Estimates
        2. Market Estimates & Forecast,
        3. Market Estimates & Forecast, By Material
        4. Market Estimates & Forecast, By Application, 2024-2032
        5. Market Estimates & Forecast, By Technology, 2024-2032
        6. China
        7. Japan
        8. India
        9. Australia
        10. Rest Of
      5. Middle East
        1. Market Estimates & Forecast, By Country, 2024-2032
        2. Market Estimates & Forecast, By Platform, 2024-2032
        3. Market
        4. Market Estimates
        5. Market Estimates & Forecast,
        6. UAE
        7. Saudi Arabia
        8. Israel
        9. Rest Of The
      6. Latin America
        1. Market Estimates & Forecast, By Country,
        2. Market Estimates & Forecast, By Platform, 2024-2032
        3. Market Estimates & Forecast, By Material Type, 2024-2032
        4. Market Estimates & Forecast, By Application, 2024-2032
        5. Market Estimates
        6. Brazil
        7. Mexico
        8. Rest Of Latin America
    12. Competitive Landscape
      1. Competitive Overview
      2. Competitor Dashboard
      3. Major Growth Strategies In The Global Aerospace
      4. Competitive Benchmarking
      5. Market Share Analysis
      6. AeroVironment, Inc.: The Leading
      7. Key Developments & Growth Strategies
        1. Material Type Launches/Service Deployments
        2. Mergers & Acquisitions
        3. Joint Ventures
    13. Company Profiles
      1. 3D
        1. Company Overview
        2. Products/Services
        3. Financial Overview
        4. Key Developments
        5. SWOT Analysis
        6. Key Strategies
      2. Arcam AB
        1. Company Overview
        2. Products/Services
        3. Financial Overview
        4. Key Developments
        5. SWOT Analysis
        6. Key Strategies
      3. Concept Laser GmbH
        1. Company Overview
        2. Products/Services
        3. Financial Overview
        4. Key Developments
        5. SWOT Analysis
        6. Key Strategies
      4. CRP Technology S.R.L.
        1. Company Overview
        2. Products/Services
        3. Financial Overview
        4. Key Developments
        5. SWOT Analysis
        6. Key Strategies
      5. CRS Holdings Inc.
        1. Company Overview
        2. Products/Services
        3. Financial Overview
        4. Key Developments
        5. SWOT Analysis
        6. Key Strategies
      6. EOS
        1. Company Overview
        2. Products/Services Offered
        3. Financial Overview
        4. Key Developments
        5. SWOT Analysis
        6. Key Strategies
      7. ExOne
        1. Company Overview
        2. Products/Services Offered
        3. Financial Overview
        4. Key Developments
        5. SWOT Analysis
        6. Key Strategies
      8. Optomec
        1. Company Overview
        2. Products/Services Offered
        3. Financial Overview
        4. Key Developments
        5. SWOT Analysis
        6. Key Strategies
      9. SLM Solution
        1. Company Overview
        2. Products/Services
        3. Financial Overview
        4. Key Developments
        5. SWOT Analysis
        6. Key Strategies
      10. Stratasys Ltd.
        1. Company Overview
        2. Products/Services
        3. Financial Overview
        4. Key Developments
        5. SWOT Analysis
        6. Key Strategies
    14. Appendix
      1. References
      2. Related Reports
      3. List Of Abbreviations
    15. Industry Insights
    16. List Of Tables
    17. List Of Figures

    Aerospace Additive Manufacturing Market Segmentation

    Aerospace Additive Manufacturing Market Application Outlook (USD Billion, 2018-2032)

    • Structural
    • Engine
    • Others

    Aerospace Additive Manufacturing Market Platform Outlook (USD Billion, 2018-2032)

    • Spacecraft
    • Aircraft
    • Unmanned aerial vehicle

    Aerospace Additive Manufacturing Market Technology Outlook (USD Billion, 2018-2032)

    • Laser sintering
    • 3d printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography

    Aerospace Additive Manufacturing Market Material Outlook (USD Billion, 2018-2032)

    • Plastic
    • Rubber
    • Metal alloy
    • Others

    Aerospace Additive Manufacturing Market Regional Outlook (USD Billion, 2018-2032)

    • North America Outlook (USD Billion, 2018-2032)

      • North America Aerospace Additive Manufacturing Market by Application
    • Structural
    • Engine
    • Others
      • North America Aerospace Additive Manufacturing Market by Platform

    • Spacecraft
    • Aircraft
    • Unmanned aerial vehicle
    • North America Aerospace Additive Manufacturing Market by Technology
    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
    • North America Aerospace Additive Manufacturing Market by Material
    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • US Outlook (USD Billion, 2018-2032)

      • US Aerospace Additive Manufacturing Market byApplication

        • Structural
        • Engine
        • Others
      • US Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • US Aerospace Additive Manufacturing Market by Technology
    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • US Aerospace Additive Manufacturing Market by Material
    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • CANADA Outlook (USD Billion, 2018-2032)

      • CANADA Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • CANADA Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • CANADA Aerospace Additive Manufacturing Market by Technology
    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • CANADA Aerospace Additive Manufacturing Market by Material
    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • Europe Outlook (USD Billion, 2018-2032)

      • Europe Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • Europe Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • Europe Aerospace Additive Manufacturing Market by Technology
    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • Europe Aerospace Additive Manufacturing Market by Material
    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • Germany Outlook (USD Billion, 2018-2032)

      • Germany Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • Germany Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • Germany Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • Germany Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • France Outlook (USD Billion, 2018-2032)

      • France Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • France Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • France Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • France Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • UK Outlook (USD Billion, 2018-2032)

      • UK Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • UK Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • UK Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • UK Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • ITALY Outlook (USD Billion, 2018-2032)

      • ITALY Aerospace Additive Manufacturing byApplication

        • Structural
        • Engine
        • Others
      • ITALY Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • ITALY Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • ITALY Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • SPAIN Outlook (USD Billion, 2018-2032)

      • Spain Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • Spain Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • Spain Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • Spain Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • Rest Of Europe Outlook (USD Billion, 2018-2032)

      • Rest Of Europe Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • REST OF EUROPE Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • REST OF EUROPE Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • REST OF EUROPE Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
    • Asia-Pacific Outlook (USD Billion, 2018-2032)

      • Asia-Pacific Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • Asia-Pacific Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • Asia-Pacific Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • Asia-Pacific Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • China Outlook (USD Billion, 2018-2032)

      • China Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • China Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • China Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • China Aerospace Additive Manufacturing Market by Material
    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • Japan Outlook (USD Billion, 2018-2032)

      • Japan Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • Japan Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • Japan Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • Japan Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • India Outlook (USD Billion, 2018-2032)

      • India Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • India Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • India Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • India Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • Australia Outlook (USD Billion, 2018-2032)

      • Australia Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • Australia Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • Australia Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • Australia Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • Rest of Asia-Pacific Outlook (USD Billion, 2018-2032)

      • Rest of Asia-Pacific Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • Rest of Asia-Pacific Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • Rest of Asia-Pacific Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • Rest of Asia-Pacific Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
    • Rest of the World Outlook (USD Billion, 2018-2032)

      • Rest of the World Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • Rest of the World Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • Rest of the World Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • Rest of the World Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • Middle East Outlook (USD Billion, 2018-2032)

      • Middle East Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • Middle East Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • Middle East Aerospace Additive Manufacturing Market by Technology
    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • Middle East Aerospace Additive Manufacturing Market by Material
    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • Africa Outlook (USD Billion, 2018-2032)

      • Africa Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • Africa Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • Africa Aerospace Additive Manufacturing Market by Technology
    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • Africa Aerospace Additive Manufacturing Market by Material
    • Plastic
    • Rubber
    • Metal alloy
    • Others
      • Latin America Outlook (USD Billion, 2018-2032)

      • Latin America Aerospace Additive Manufacturing by Application
        • Structural
        • Engine
        • Others
      • Latin America Aerospace Additive Manufacturing by Platform
        • Spacecraft
        • Aircraft
        • Unmanned aerial vehicle
      • Latin America Aerospace Additive Manufacturing Market by Technology

    • Laser sintering
    • 3D printing
    • Electron beam melting
    • Fused deposition modeling
    • Stereo lithography
      • Latin America Aerospace Additive Manufacturing Market by Material

    • Plastic
    • Rubber
    • Metal alloy
    • Others

    Aerospace Additive Manufacturing Market Research Report - Global Forecast till 2032 Infographic

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