“Global Additive Manufacturing with Metal Powders Market – Industry Trends and Forecast to 2029
Global Additive Manufacturing with Metal Powders Market, By Metal Form (Scrap/Recycled Metal, Ores), Production Method (Physical, Chemical, Mechanical), Compaction Technique (Cold Compaction, Hot Compaction), Metal Powder (Ferrous Metal Powder, Non-Ferrous Metal Powder), Country (U.S., Canada, Mexico, Germany, France, U.K., Italy, Spain, Russia, Turkey, Belgium, Netherlands, Switzerland, Luxemburg, Rest of Europe, Japan, China, South Korea, India, Australia And New Zealand, Singapore, Thailand, Malaysia, Indonesia, Philippines, Rest of Asia-Pacific, Brazil, Argentina, Rest of South America UAE, Saudi Arabia, Egypt, Israel, South Africa, And Rest Of Middle East and Africa) Industry Trends and Forecast to 2029.
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**Segments**
– **Technology:** The additive manufacturing with metal powders market can be segmented based on technology into powder bed fusion, directed energy deposition, binder jetting, and sheet lamination. Powder bed fusion technology, including selective laser melting (SLM) and electron beam melting (EBM), is gaining significant traction due to its high precision and efficiency in producing complex metal parts. Directed energy deposition is also seeing growth, especially in industries like aerospace and automotive, where larger parts can be manufactured quickly. Binder jetting and sheet lamination are considered cost-effective alternatives for metal 3D printing.
– **Material Type:** Metal powders used in additive manufacturing can vary based on the type of metal. The market can be segmented into stainless steel, titanium, nickel alloy, aluminum, cobalt-chrome, and others. Stainless steel is one of the most commonly used materials for metal 3D printing due to its strength and corrosion resistance. Titanium is preferred for its high strength-to-weight ratio, making it suitable for aerospace and medical applications. Nickel alloys are used for their heat and corrosion resistance, while aluminum is chosen for its lightweight properties.
– **End-Use Industry:** The market for additive manufacturing with metal powders can also be segmented based on end-use industries such as aerospace, healthcare, automotive, energy, and others. Aerospace remains a key sector driving the adoption of metal 3D printing, where complex geometries and lightweight components are critical. The healthcare industry utilizes metal additive manufacturing for producing customized implants and prosthetics. In the automotive sector, metal 3D printing is used for prototyping, tooling, and even production parts.
**Market Players**
– **EOS GmbH**
– **3D Systems, Inc.**
– **SLM Solutions Group AG**
– **Concept Laser GmbH**
– **Arcam AB (GE Additive)**
– **Renishaw plc**
– **Materialise NV**
– **ExOne Company**
– **Markforged**
The additive manufacturing with metal powders market is experiencing significant growth and evolution, driven by advancements in technology, material types, and end-use industries. In terms of technology, the segments of powder bed fusion, directed energy deposition, binder jetting, and sheet lamination offer diverse options for manufacturers to choose from based on their specific requirements. Powder bed fusion, particularly SLM and EBM, are favored for their precision and efficiency in producing intricate metal parts. Directed energy deposition is gaining traction for its ability to quickly manufacture large components, particularly in sectors like aerospace and automotive. Meanwhile, binder jetting and sheet lamination present cost-effective alternatives for metal 3D printing, catering to different budget constraints and production needs.
Metal powders used in additive manufacturing play a crucial role in determining the characteristics and properties of the final 3D printed parts. Segmentation based on material type includes stainless steel, titanium, nickel alloy, aluminum, cobalt-chrome, and others. Stainless steel is a popular choice due to its strength and corrosion resistance, making it suitable for a wide range of applications. Titanium is valued for its high strength-to-weight ratio, making it ideal for aerospace and medical applications where lightweight yet durable parts are essential. Nickel alloys are preferred for applications requiring heat and corrosion resistance, while aluminum is renowned for its lightweight properties, making it a preferred material in industries where weight reduction is a priority.
The end-use industry segmentation of the additive manufacturing with metal powders market identifies key sectors such as aerospace, healthcare, automotive, energy, and others as significant contributors to the market’s growth. Aerospace remains a primary driver of metal 3D printing adoption, leveraging the technology to produce complex geometries and lightweight components that are crucial for aircraft performance. The healthcare industry benefits from metal additive manufacturing by producing customized implants and prosthetics that offer better patient outcomes and enhanced performance. Automotive applications of metal 3D printing extend to prototyping, tooling, and even the production of end-use parts as manufacturers seek**Segments**
– **Global Additive Manufacturing with Metal Powders Market, By Metal Form (Scrap/Recycled Metal, Ores)**
– **Production Method (Physical, Chemical, Mechanical)**
– **Compaction Technique (Cold Compaction, Hot Compaction)**
– **Metal Powder (Ferrous Metal Powder, Non-Ferrous Metal Powder)**
– **Country (U.S., Canada, Mexico, Germany, France, U.K., Italy, Spain, Russia, Turkey, Belgium, Netherlands, Switzerland, Luxemburg, Rest of Europe, Japan, China, South Korea, India, Australia And New Zealand, Singapore, Thailand, Malaysia, Indonesia, Philippines, Rest of Asia-Pacific, Brazil, Argentina, Rest of South America UAE, Saudi Arabia, Egypt, Israel, South Africa, And Rest Of Middle East and Africa) Industry Trends and Forecast to 2029.**
Global Additive Manufacturing with Metal Powders Market is segmented based on metal form, production method, compaction technique, and metal powder type. The market is witnessing significant growth driven by factors such as technological advancements, increased demand for lightweight and complex metal parts, and expanding applications across various industries. The use of metal powders sourced from scrap/recycled metal or ores, produced through physical, chemical, or mechanical methods, and compacted using cold or hot compaction techniques, is shaping the market’s landscape. The categorization of metal powders as ferrous or non-ferrous
TABLE OF CONTENTS
Part 01: Executive Summary
Part 02: Scope of the Report
Part 03: Research Methodology
Part 04: Market Landscape
Part 05: Pipeline Analysis
Part 06: Market Sizing
Part 07: Five Forces Analysis
Part 08: Market Segmentation
Part 09: Customer Landscape
Part 10: Regional Landscape
Part 11: Decision Framework
Part 12: Drivers and Challenges
Part 13: Market Trends
Part 14: Vendor Landscape
Part 15: Vendor Analysis
Part 16: Appendix
Core Objective of Additive Manufacturing with Metal Powders Market:
Every firm in the Additive Manufacturing with Metal Powders Market has objectives but this market research report focus on the crucial objectives, so you can analysis about competition, future market, new products, and informative data that can raise your sales volume exponentially.
- Size of the Additive Manufacturing with Metal Powders Market and growth rate factors.
- Important changes in the future Additive Manufacturing with Metal Powders Market.
- Top worldwide competitors of the Market.
- Scope and product outlook of Additive Manufacturing with Metal Powders Market.
- Developing regions with potential growth in the future.
- Tough Challenges and risk faced in Market.
- Global Additive Manufacturing with Metal Powders top manufacturers profile and sales statistics.
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