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Growth Of Aerospace And Automotive Industries Driving The Market Due To Increasing Demand For Advanced Materials: An Emerging Driver Transforming The Direct Energy Deposition 3D Printing Technology Market Landscape

06-18-2025 07:04 AM CET | IT, New Media & Software

Press release from: The Business Research Company

Direct Energy Deposition 3D Printing Technology

Direct Energy Deposition 3D Printing Technology

We've updated all our reports with current data on tariff changes, trade developments, and supply chain shifts affecting key industries.

What Is the Projected Growth of the Direct Energy Deposition 3D Printing Technology Market?
Over the past few years, the market size for 3D printing technology using direct energy deposition has seen significant growth. A rise from $4.21 billion in 2024 to $4.95 billion in 2025 is projected, equating to a compound annual growth rate (CAGR) of 17.5%. The notable upturn over the historic period is a result of high demand for low-volume production, growing renown of on-site repair and maintenance, increased necessity for lightweight materials within various industries, heightened emphasis on sustainable manufacturing protocols, and a rise in governmental funding.There is an expectation of swift expansion in the direct energy deposition 3D printing technology market within the upcoming years. This market will surge to $9.33 billion by 2029, signifying a compound annual growth rate (CAGR) of 17.2%. Factors contributing to this growth during the forecast period include heightened integration of 3D printing, escalating demand for 3D printing technology, growing request for personalized manufacturing solutions, increased requirement of high-performance components, and an upsurge in the usage of additive manufacturing. The forecast period will also witness major trends such as the use of laser-based deposition systems, strategic cooperation, integration of artificial intelligence, the advent of hybrid manufacturing systems, and incorporation of environmentally-friendly materials.

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What Are the Different Direct Energy Deposition 3D Printing Technology Market Segments?
The direct energy deposition 3d printing technology market covered in this report is segmented -

1) By Type: Laser, Electron Beam, Plasma Arc
2) By Component: Hardware, Software, Services, Material
3) By End Use Industry: Healthcare, Automotive, Aerospace And Defense, Other End Use Industries

Subsegments:
1) By Laser: Laser Powder Deposition (LPD), Laser Cladding
2) By Electron Beam: Electron Beam Additive Manufacturing (EBAM), Electron Beam Melting (EBM)
3) By Plasma Arc: Plasma Transferred Arc (PTA) Welding, Plasma Arc Additive Manufacturing (PAAM)

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What Are the Primary Drivers Shaping the Direct Energy Deposition 3D Printing Technology Market?
The burgeoning of the aerospace and automotive sectors is predicted to steer the expansion of the direct energy deposition 3D printing technology market. These industries encompass domains that deal with the conception, production, and servicing of aircraft, spacecraft, and automobiles. The growth of these sectors is fueled by increased appetence for advanced transport, technological evolutions, and amplified capital inflow into manufacturing and sustainability. High-precision, featherweight, and robust components required for progressive manufacturing and reparations in these fields spike the demand for direct energy deposition 3D printing technology. Take, for example, the Aerospace Industries Association, a nonprofit trade body based in the US, reported in September 2023 that the aerospace and defense industry added a whopping $418 billion to the US economy in the preceding year, representing 1.65% of the nation's nominal GDP. This statistic portrays nearly a 7% climb from 2021. As seen, the escalating aerospace and automotive industries are indeed bolstering the growth of the direct energy deposition 3D printing technology market.

Which Companies Are Leading in the Direct Energy Deposition 3D Printing Technology Market?
Major companies operating in the direct energy deposition 3d printing technology market are Mitsubishi Heavy Industries Ltd., RPM Innovations Inc., Hexagon AB, TRUMPF SE + Co. KG, KUKA Aktiengesellschaft (AG), Nikon Corporation, DMG MORI Co. Ltd., Phillips Corporation, Fraunhofer Institute for Material and Beam Technology IWS, Höganäs AB, Optomec Inc., Precitec GmbH & Co. KG, DM3D Technology LLC, EWI, RAMLAB, Meltio, Sciaky Inc., InssTek Inc., Synergy Additive Manufacturing LLC, Hybrid Manufacturing Technologies Ltd., Aurora Labs Limited, Procada AB, Norsk Titanium AS

What Are the Major Trends Shaping the Direct Energy Deposition 3D Printing Technology Market?
Key players within the direct energy deposition 3D printing industry are directing their efforts towards the creation of new and innovative products such as the robotic large-scale direct energy deposition. The aim of these enhancements is to improve accuracy, scalability and efficiency in manufacturing. The advanced 3D printing system that utilizes robotics and direct energy depositing technology is instrumental in the creation or refurbishment of large metal components with great precision. For instance, Caracol, a 3D printing company located in Italy, introduced Vipra AM in November 2024. This robotic, direct energy depositing solution, introduced at Formnext, is designed for generating large-scale metal components. The system's ingenious design combines hardware, software, and automation in a unique turnkey system, aimed at optimising control and performance. The introduction of Vipra AM will broaden the horizons of large-format additive manufacturing (LFAM) applications in numerous industries.

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What Are the Top Revenue-Generating Geographies in the Direct Energy Deposition 3D Printing Technology Market?
North America was the largest region in the direct energy deposition 3d printing technology market in 2024. The regions covered in the direct energy deposition 3d printing technology market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa.

Frequently Asked Questions:
1. What Is the Market Size and Growth Rate of the Direct Energy Deposition 3D Printing Technology Market?
2. What is the CAGR expected in the Direct Energy Deposition 3D Printing Technology Market?
3. What Are the Key Innovations Transforming the Direct Energy Deposition 3D Printing Technology Industry?
4. Which Region Is Leading the Direct Energy Deposition 3D Printing Technology Market?

Why This Report Matters:

Competitive overview: This report analyzes the competitive landscape of the 3D imaging software market, evaluating key players on market share, revenue, and growth factors.

Informed Decisions: Understand key strategies related to products, segmentation, and industry trends.

Efficient Research: Quickly identify market growth, leading players, and major segments.

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