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Metal 3D Printer(cad) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
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Metal 3D Printer Product List

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Mitsubishi Corporation Technos Corporation AMS Business Introduction

Support for development! An experiential development hub that integrates a showroom and additive manufacturing environment.

We not only showcase actual metal 3D printers, but we also have a showroom where you can see them in operation and observe the printing process. Of course, we can also perform contract manufacturing based on your 3D CAD data, or collaborate on design and development. We also offer rental services for metal 3D printers according to your needs. 【Business Activities】 ■ Technical support services for AM design and manufacturing of customer products ■ Sales and after-service of metal 3D printers, materials, and peripheral equipment ■ Development of new technologies and products to meet customer needs *For more details, please refer to the PDF document or feel free to contact us.

  • 3D CAD

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A hybrid processing company that utilizes metal and resin 3D printers along with cutting machining.

Fusion technology of cutting and 3D printing enables hollow and complex shapes to be produced with short lead times and high precision.

The "Hometown Processing Network," composed of distinctive processors from various regions proudly represented by Bandai. Here is an introduction to one of its partners, "Hometown Partner 9: a hybrid processing company utilizing metal and resin 3D printers and cutting." This partner possesses a metal and resin 3D printer (Markforged) and a simultaneous 5-axis machining center (Mazak INTEGREX), establishing a composite processing system that merges cutting and shaping. As a result, it is capable of producing hollow and complex shapes that were previously impossible with traditional cutting methods, all with high precision and short lead times. The metal 3D printer (MetalX), which achieves high-density shaping with a layer pitch of 50μ, supports SUS, titanium, copper, and SKD. It is also equipped with CFRP shaping, Swiss-type CNC lathes, cylindrical grinding machines, and wire electrical discharge machines, providing one-stop solutions from prototyping to finishing. ➡ For more details about "Hometown Partner 9," please check "Download the Catalog"!

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  • Processing Contract
  • Contract manufacturing

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Mitsubishi Corporation Technos Co., Ltd. AMS Business Introduction (Updated August 2023)

We provide a one-stop service for metal AM, from commissioned modeling and technology development to technical support! We also sell laser beam and electron beam metal 3D printers.

We sell metal 3D printers and have actual machines on display. We also have a showroom where you can see the machines in operation and observe the printing process. Based in Tokyo CEC, we can perform contract printing based on your 3D CAD data, as well as collaborate on design and joint development. 【Business Content】 ■ Technical support services for customers' AM design, printing, and measurement ■ Sales of metal 3D printers and materials, AM implementation support, and after-sales service ■ Development of new materials for AM tailored to customer needs *For more details, please refer to the PDF document or feel free to contact us.

  • 3D CAD

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[Explanation] Electron Beam Powder Bed Melting Method Metal 3D Printer

What is the electron beam powder bed fusion method (powder bed fusion)? What is EB-PBF? Let me explain it briefly!

"What is Electron Beam Powder Bed Fusion (EB-PBF)?" "What is EB-PBF?" Let me explain briefly! We provide a schematic diagram explaining Electron Beam Powder Bed Fusion (EB-PBF) for those in charge who have started gathering information on metal 3D printers! The process involves powder supply by a powder dispenser, powder deposition by a recoater (forward motion), vertical movement of the build stage and the recoater's excess powder passage, melting and solidification of the powder by electron beam irradiation, and powder deposition by the recoater (return motion), repeating this series of actions for layered manufacturing. The vertical movement of the build stage and the recoater's excess powder passage help save powder and reduce waste. *The schematic diagram is based on equipment from Wayland Additive and may not necessarily apply to all electron beam powder bed fusion (EB-PBF) metal 3D printers currently sold by various manufacturers.

  • 3D Printer

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ADDITIVE INDUSTRIES / Large Metal 3D Printer

Dutch-made large metal 3D printer capable of everything from prototyping to mass production.

Additive Industries is a high-end metal 3D printer manufacturer based in Eindhoven, Netherlands, established in 2012. With the slogan "Bigger, Better, Faster," we assist customers in various fields, including aerospace, automotive, high-tech, and energy industries, in achieving sustainable and profitable growth. The MetalFABG2 series from Additive Industries in the Netherlands excels in reproducibility, productivity, and flexibility, capable of handling everything from prototyping and development to mass production. Anytime, anywhere, on demand. We propose a new world of industrial metal 3D printing.

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  • 3D Printer

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Industrial metal 3D printing

Keywords: Additive manufacturing, metal materials, dissimilar metals, welding, machining

We are developing technology that enables the shaping of metals using a device known as a 3D printer. This technology allows for the direct creation of target shapes from three-dimensional design data by locally melting and solidifying metal, and it is referred to as Additive Manufacturing (AM). There are several methods within AM technology, but among them, the method that applies welding technology enables low-cost and high-efficiency production suitable for manufacturing large products such as aircraft components and molds. Specifically, it allows for the creation of lightweight and high-strength structures that are difficult to achieve with other processing methods, as well as the manufacturing of products with unprecedented material properties through integrated shaping using multiple types of metal materials. We are engaged in elucidating the shaping principles of AM technology, evaluating shaped objects, developing processing technologies to create products with high added value that are impossible to achieve with existing processing methods, and proposing process design methods that include finishing processes.

  • others

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Introduction of "M400-4"! Supports large-scale modeling of 400x400x400mm.

Introducing the EOS M400-4! Operations will start in March! Achieving high-speed manufacturing with four lasers!

Japan Laminated Manufacturing Co., Ltd. has newly introduced the EOS M400-4. It is scheduled to start operations in March 2022. With the introduction of the EOS M400-4, we can accommodate large-scale manufacturing with a maximum build area of 400x400x400mm. Equipped with four lasers, it enables high-speed manufacturing. *Build speed: 72cm³/h. It supports aluminum alloys and titanium alloys. <List of metal 3D printer equipment used by our company> 【Laser Powder Bed Method】 EOS M400-4 (Quad Laser type) EOS M280 Concept Laser M2 (Dual Laser type) Concept Laser M2 Concept Laser XLINE2000R 【Electron Beam Powder Bed Method】 Arcam Q20 Arcam Q20+ Arcam A2X For more details, please refer to the downloadable materials or feel free to contact us.

  • 3D Printer

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Digital Metal: Its Process and Components of Manufacturing Costs

Metal 3D printing creates products by layering materials from CAD data. This document introduces the elements of each process and the cost factors for part manufacturing.

Metal 3D printing, unlike traditional methods that use molds or cutting tools to carve out material from a solid block, directly shapes products by adding layers of material from CAD data. Additionally, Digital Metal's binder jetting (BJT) method differs from other methods such as laser techniques, as it does not melt the material during the entire process. Instead, it imparts the necessary characteristics of the final product during the sintering process, which occurs below the melting point of the material after shaping. This document introduces each step of the process and the factors affecting the cost of component manufacturing. The greatest benefits can be obtained by not viewing metal 3D printing as an extension of traditional methods, but by discovering products that can only be realized through metal 3D printing.

  • Other machine tools

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