We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Metal 3D Printer.
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Metal 3D Printer Product List and Ranking from 31 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

Metal 3D Printer Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. 日本積層造形 Miyagi//Manufacturing and processing contract
  2. システムクリエイト Osaka//Industrial Machinery
  3. マークフォージド・ジャパン Tokyo//Industrial Machinery
  4. 4 フジ Saitama//Machine elements and parts
  5. 5 三菱商事テクノス 本社 Tokyo//Trading company/Wholesale

Metal 3D Printer Product ranking

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. Metal 3D Printer AVIMETAL MT-Series システムクリエイト
  2. Examples of using metal 3D printers in jigs and tools. 日本積層造形
  3. Metal 3D Printer Digital Metal DM P2500 マークフォージド・ジャパン
  4. 4 Meltio series metal 3D printers
  5. 4 Introduction of "M400-4"! Supports large-scale modeling of 400x400x400mm. 日本積層造形

Metal 3D Printer Product List

1~30 item / All 126 items

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Problem-Solving Materials: Utilizing 3D Data Edition 1-2 | Deformation in Metal 3D Printing

The unavoidable issue of "deformation" in metal 3D printers... What are the countermeasures? A resource for identifying and solving problems in production sites.

This document is a series that proposes solutions to various challenges faced in production sites, from identifying issues to finding resolutions. In the "3D Data Utilization Edition," we will introduce various solutions to manufacturing challenges through the use of 3D data. This document focuses on the theme of "deformation in metal 3D printing," explaining the mechanisms behind deformation in printed objects and methods for alleviating it. [Document Overview] Metal 3D printers, capable of creating complex shapes that cannot be produced by other processing methods, are seeing active technological development not only in Western countries but also within Japan. However, an inevitable challenge that arises with metal 3D printed objects is "deformation," which cannot be avoided due to the nature of the process. To achieve accurate printing as per the design, it is essential to understand the causes of deformation and to implement appropriate measures throughout the entire printing process. This document serves as the first installment in introducing solutions to the "deformation" challenge, explaining the mechanisms behind deformation and effective methods for its resolution. *You can download the document using the button below.*

  • simulator
  • Stress Analysis
  • 3D Printer
  • Metal 3D Printer

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Problem-Solving Materials | Advantages and Challenges of Metal 3D Printers and Their Operation

Operating a metal 3D printer with a small start! What are the benefits and challenges of its utilization? A resource for discovering and solving issues in the production site.

This document is a series that proposes solutions to various challenges faced in production sites, from identifying issues to finding resolutions. In the "3D Data Utilization" edition, we will introduce various solutions to challenges in manufacturing through the use of 3D data. This document will explain three specific benefits of using metal 3D printers, along with examples, and will also highlight the challenges that arise when advancing towards practical application. Furthermore, as a solution section, we will focus on "limitations of precision," "material restrictions," and "cost issues," providing detailed explanations of the points for resolving each challenge, and introducing methods for starting the operation of metal 3D printers on a small scale. [Document Overview] Metal 3D printers are expected to be utilized in the field of metal products due to advantages such as the production of high value-added products and cost reduction in small-scale manufacturing. This document will present the scenarios in which the benefits of metal 3D printers can be realized and the challenges for practical use from three perspectives: "more flexible design," "reduction of prototyping and manufacturing time," and "reduction of production costs." *You can download the document using the button below.

  • 3D Printer
  • 3D CAD
  • Machining Center
  • Metal 3D Printer

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I tried 3D printing stainless steel with a metal 3D printer!

【Mitarepo】I tried 3D printing stainless steel with a metal 3D printer!

"Mitarepo" is a series based on the concept of "I tried doing this!" where we introduce what can be done using various products. We provide useful information each time from the wide range of product categories handled by System Create. The theme of Vol. 5 is "Trying to create stainless steel with a metal 3D printer." This time, we used a small metal 3D printer to create a block-shaped model in stainless steel. We are verifying the finish and accuracy of the created model using the type of printer we usually use for our contracted work. - Is support necessary? - What can actually be created? - What is the dimensional accuracy of the finished model? We explain these frequently asked questions from customers regarding "support and finish," along with comments from the person in charge and actual images. *You can download the materials from the button below.

  • 3D Printer
  • stainless
  • Other contract services
  • Metal 3D Printer

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Metal 3D printer "XactMetal"

"XactMetal" is a metal 3D printer developed to make metal 3D printing more accessible. *Demo available.

[Features] ■ Overwhelming Speed Efficiency The standard-equipped galvanometer meter has a maximum speed of 20.7 m/s. The high-speed operation of the galvanometer mirror controls the laser irradiation position through reflection, allowing for a maximum build volume of 9 cm³ per hour. Additionally, two galvanometer lasers can be installed as an option, enabling simultaneous irradiation for even more efficient building. ■ Flexible Printing with Open Material Parameters We adopt an open parameter system that allows real-time adjustments of laser output, speed, bed temperature, and more. This provides access to all basic functions and enables the development of exposure parameters for custom materials. ■ Compatibility with a Wide Range of Materials In addition to manufacturer-recommended materials, it is also possible to use readily available commercial industrial metal powders, including stainless steel, tool steel, superalloys, copper, titanium, and aluminum. *For more details, please request a catalog or view the PDF data via the download button below.

  • 3D Printer
  • Other metal materials
  • Metal 3D Printer

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Directed Energy Deposition (DED) Metal 3D Printer [RPMI]

Metal additive manufacturing with a maximum height of 2100 mm is possible! Directed Energy Deposition (DED) metal 3D printer from RPMI.

This is a directed energy deposition (DED) metal 3D printer from RPM Innovations (South Dakota, USA). It has a proven track record and high reliability across a wide range of industries, including aerospace, military, power generation, mining, gas and oil, and automotive. The "RPMI 557XR" model, which has the largest build size, can achieve metal additive manufacturing up to 2100 mm. It allows for free-form shaping with 5-axis control (X, Y, Z axes / tilt and rotation table), part repair through laser cladding, and additive manufacturing on existing metal products. 【Equipment Lineup】  ■RPMI 557XR  ■RPMI 222XR

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Metal 3D Printer [Wayland Calibur3] Electron Beam

Stable processes using new "electron" beam technology. Free parameter open access. Capable of shaping diverse materials.

This is a metal 3D printer using neutral "electron" beam technology that enables large-scale fabrication free of residual stress. It offers high-speed manufacturing, simplification of post-processing steps, and provides a more stable platform compared to other technologies. Thanks to its unique charge neutralization, it allows for stable processes without smoke generation, enabling the fabrication of large parts without being affected by stress. It supports 3D printing with a variety of metals and alloys, including Ni alloys, Ti alloys, Cu alloys, CoCr alloys, pure copper, copper alloys, cemented carbide (Vibenite 280/290), and high melting point metal materials. With fewer required post-processing steps, it allows for short production times and energy savings. Advanced in-process monitoring and control promote the development of a wide range of applications.

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Directional Energy Deposition Method Metal 3D Printer RPMI 222 XR

Shape size: X 600 mm × Y 600 mm × Z 600 mm + tilt & rotation table.

The Directional Energy Deposition (DED) metal 3D printer RPMI XR series includes the "smallest" model, the RPMI 222 XR, which ensures a build size of [X 600 mm × Y 600 mm × Z 600 mm]. With 5-axis control through X, Y, Z + tilt and a rotating table, it allows for free-form shaping, part repair, and cladding (build-up) with ease.

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  • Metal 3D Printer

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Directional Energy Deposition Method Metal 3D Printer 557XR 222XR

Proven track record of implementation in Japan. 557XR maximum build size: [X 1500 mm × Y 1500 mm × Z 2100 mm]

Directed Energy Deposition (DED) Metal 3D Printer RPMI XR Series, RPMI 557XR and RPMI 222XR. RPMI 557 XR Build Size: [X 1500 mm × Y 1500 mm × Z 2100 mm] RPMI 222 XR Build Size: [X 600 mm × Y 600 mm × Z 600 mm] With 5-axis control using X, Y, Z + tilt and rotating table, free-form shaping, part repair, and cladding (build-up) are possible.

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  • Metal 3D Printer

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Metal 3D Printer [AconityMIDI]

The second process chamber can have an optional preheating at 1200°C added.

AconityMIDI is a new approach by Aconity3D aimed at a flexible production system. This system, which can be equipped with a second process chamber as an option, allows for the preparation of the next setup to be carried out simultaneously while the main system is still in production, saving time. Additionally, this system can also have options for process monitoring or high-temperature preheating up to 1200°C. Like all Aconity3D devices, the AconityMIDI device is equipped with the control software AconitySTUDIO, which allows Aconity3D service engineers to remotely access all relevant process parameters and machine components, enabling timely support for customers.

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  • Metal 3D Printer

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Metal 3D Printer [AconityMINI]

Entry-level lab system. By utilizing the Φ55mm reduction component (optional), process development is possible even with small amounts of powder materials!

AconityMINI is an entry-level lab system from Aconity3D. The build space can be reduced from a standard diameter of 140mm to 55mm, and this system, which provides complete access to all relevant process parameters, is designed for efficient material research. Furthermore, this system allows for flexible configuration of the equipment by selecting optional features such as preheating, process monitoring, and laser output to best meet the customer's needs. Like all Aconity3D devices, the AconityMINI is equipped with the control software AconitySTUDIO, which allows Aconity3D service engineers to remotely access all relevant process parameters and machine components, providing timely support to customers.

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  • Metal 3D Printer

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[Explanation] Laser Powder Bed Fusion (LPBF) Metal 3D Printer

This is a schematic diagram explaining the laser powder bed fusion method (laser powder bed process) for metal 3D printers!!

"What is the laser powder bed fusion method (laser powder bed process)?" "What is LPBF?" We provide an explanatory diagram of the laser powder bed fusion method (laser powder bed process) for those in charge who have started gathering information on metal 3D printers! A series of operations is repeated for layered manufacturing: the recoater deposits powder, the laser irradiates to melt and solidify the powder, the build stage descends, the powder reservoir rises, and again, the recoater deposits powder. Excess surrounding powder from the recoater's deposition operation falls into a collection tank through the overflow opening, is sifted, and recycled during the manufacturing process. *The diagram is based on Aconity3D's equipment and may not necessarily apply to all laser powder bed fusion (laser powder bed process) metal 3D printers currently sold by various manufacturers.

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  • Metal 3D Printer

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Directional Energy Deposition (DED) Metal 3D Printer

What is directional energy deposition method? What is DED? Let me explain it simply!

What is Directed Energy Deposition (DED)?" "We will provide an explanatory diagram of Directed Energy Deposition (DED) for those in charge who have started gathering information on metal 3D printers! Directed Energy Deposition is a process where metal powder is injected into a melt pool created by a laser heat source, and while moving the melt pool along with the laser head, it repeats melting and solidifying to build up layers. Unlike typical metal 3D printers that have a powder bed, it fixes the base plate or pipes on a table with tilting (90°) and rotating (360°) functions for fabrication. 1. Free-form fabrication 2. Free-form fabrication of curved shape parts 3. "Additive" fabrication to conventional machined parts 4. "Build-up" repair for worn-out parts (+ regrinding*) (*The diagram is based on the equipment from RPM Innovations and may not necessarily apply to all metal 3D printers using Directed Energy Deposition currently sold by various manufacturers. Please note.)

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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.

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Metal 3D printer

The key to the future, innovative manufacturing solutions that enhance creativity and efficiency.

Accelerate your business with revolutionary metal 3D printers. They can precisely reproduce complex designs and quickly manufacture robust products. Improve the speed from research to product development and strengthen your competitiveness. Streamline the production of custom products and prototypes, creating new revenue opportunities. Achieve cost reductions with sustainable manufacturing processes. Future-oriented technology realizes visions and drives innovation. Respond to the needs of the times and establish leadership in an evolving business environment.

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  • Metal 3D Printer

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What is a metal 3D printer? Explanation of features, applications, and examples of use.

Basic principles, features, applications, advantages and disadvantages of introduction, and a detailed explanation of simple die casting!

Metal 3D printers are an innovative manufacturing technology that creates three-dimensional objects using metal powder. In recent years, they have gained attention in the domestic manufacturing industry as a new option alongside simple die casting, simple molds, and gypsum casting. They particularly demonstrate high performance in applications such as rapid prototyping, the creation of complex shapes in one piece, and mass production of customized products. Metal 3D printers are utilized across a wide range of industries, including automotive, aerospace, and medical fields, and it is expected that the market size will expand in Japan by 2025. This article will provide a detailed explanation of the basic principles, features, applications, advantages and disadvantages of introducing metal 3D printers, as well as simple die casting. It also covers key points for sales representatives when making introduction proposals, so please use it as a reference. *For detailed content of the article, please refer to the PDF materials. For more information, feel free to contact us.*

  • 3D Printer
  • Metal 3D Printer

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Integrated manifold also metal 3D printer

The integration of pipe shapes can be quickly turned into products with a metal 3D printer.

The metal 3D printer used by J・3D Co., Ltd. employs a powder sintering layered manufacturing method, allowing for the rapid and accurate creation of integrated pipe shapes. Materials that can be used include aluminum, stainless steel, maraging steel, Inconel 718, and titanium 64, and we can accommodate orders starting from one piece. We can also meet special needs such as heat-resistant pipes, corrosion-resistant pipes, and lightweight pipes. 【Features】 ■ Specialized in metal 3D printing ■ Timely manufacturing ■ Production of various metal parts ■ Prototyping and mold-less cast products (parts) ■ Support for small-batch production of various types

  • 3D Printer
  • Metal 3D Printer

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Development of new materials also involves metal 3D printers.

Material development for use in metal 3D printers is also conducted by J-3D Corporation.

The metal powders released for metal 3D printers are limited to a few types, but our company is also involved in the development of those parameters. Our methods and experience set us apart from other companies, resulting in a situation where we receive requests from new customers almost every month. As manufacturing using metal 3D printers gains attention, powders that can only be used by your company can become a significant advantage. Let’s expand the possibilities of metal 3D printing together! Currently released parameters: - Maraging steel - Aluminum (ALSi10Mg) - Inconel 718 - Titanium 64 - Stainless steel (SUS316L, SUS630) - Cobalt chrome Newly developed parameters: - Pure titanium - Tungsten carbide - SUS304

  • Other metal materials
  • Metal 3D Printer

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Metal 3D printer capable of ultra-short lead time prototyping.

When looking at the total cost, it is by no means high.

What our company excels at is creating prototypes with extremely short lead times. Inside our factory, there are four metal 3D printers lined up, ready to start at any time. Typically, there is a waiting time for material delivery, but with metal 3D printers, we can begin production as soon as the order is confirmed. Therefore, for complex shapes, it is actually faster and cheaper to produce products using 3D printers. Instead of just looking at the purchase price, please consider the waiting time and the days involved in monetary terms. Without a doubt, metal 3D printing will be more cost-effective. Moreover, it leads to a reduction in development time. If you can develop faster and cheaper than your competitors, I believe it is incredibly valuable. Please give ultra-short lead time prototyping a try!

  • 3D Printer
  • Prototype Services
  • Metal 3D Printer

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Metal 3D Printer "LAMDA"

Product performance improved! Quality assurance of metal materials (oxidation suppression) is possible with the local shield nozzle.

"LAMDA" is a metal 3D printer that employs the Powder DED method. It controls the intrusion of atmospheric molding positions with optimized shielding gas. Additionally, it adjusts the molding conditions in real-time according to changes in the melt pool state. This enables material design that was previously difficult, leading to improved product performance through the adoption of high-functionality components. 【Features】 ■ Reduced lead time ■ Lower operating costs ■ Enhanced product performance *For more details, please refer to the PDF materials or feel free to contact us.

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Metal 3D Printing by Togane Metal Industry Realizing Complex Shapes

Realizing free modeling through metal additive manufacturing! Proposing lightweight and high functionality.

The "Metal 3D Printing" proposed by Toh Metal Industry enables weight reduction through topology optimization technology, allowing for lightweight and high rigidity without changing the material. With additive manufacturing using metal 3D printers, we can achieve complex shapes that are impossible with traditional methods such as machining, enhancing the functionality of parts. From the design consideration stage of incorporating 3D printing methods, we will propose ways to realize the high functionality of parts. 【Features】 ■ Weight reduction through topology optimization technology - Lightweight and high rigidity without changing the material ■ Creation of complex shapes - Achieving complex shapes that are impossible with traditional methods such as machining ■ Internal piping (heat & cool mechanism) structure - Realizing free piping within the structure ■ We are also actively working on accommodating new materials. *For more details, please refer to the catalog or feel free to contact us.

  • 3D Printer
  • Other metal materials
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  • Metal 3D Printer

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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
  • Metal 3D Printer

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Automation of the welding process: LASERTEC 65 DED hybrid

To concerns such as 'Welding by hand takes time!' We will solve it with a metal 3D printer.

The "LASERTEC 65 DED hybrid" is a metal 3D printer capable of automating the welding process. In conventional TIG welding, manual work is required, which takes a significant amount of time, and in recent years, the shortage of skilled welders has become a problem. TIG welding that takes 10 hours by hand can be completed in just 1 hour using laser welding with this product. Welding area, bead size, heat input, and other parameters can be controlled numerically through programming, eliminating the need for rework due to insufficient welding, and allowing for welding on the machine without the need for setup changes. 【Features】 ■ TIG welding that takes 10 hours by hand can be done in 1 hour ■ Welding area, bead size, heat input, etc., can be controlled numerically through programming ■ No rework due to insufficient welding ■ Welding on the machine eliminates the need for setup changes *For more details, please refer to the related links or feel free to contact us.

  • 3D Printer
  • Metal 3D Printer

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The lifecycle of the repaired mold has improved nearly threefold - DED method for mold restoration.

We can consistently perform the processes of "removal processing," "additive manufacturing with tool steel powder (laser welding)," and "finishing processing."

The "LASERTEC 65 DED hybrid" is a hybrid machine that combines mold maintenance recognized by major casting companies. It reduces thermal fatigue compared to conventional TIG welding, achieving three times the mold lifespan and enabling significant cost and lead time reductions with exceptional repair quality. In addition to maintenance, it is capable of processing hollow products, 5-axis machining, and joining dissimilar metals. 【Features】 ■ Reduction of repair costs for existing molds ■ Reduction of lead time ■ Achieves three times the mold lifespan ■ Hybrid machine for metal layering and machining with simultaneous 5-axis ■ Joining of dissimilar metal materials using a twin powder feeder ■ Functionally graded materials with varying ratios of layered materials

  • Mold Design
  • Metal 3D Printer

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"Global 3D Printing: Latest Industry Report" (Published in 2023)

This is a report that investigates the market size forecasts for various 3D printers and materials in the world for 2025, as well as the strategic trends of material manufacturers and business aspects.

■Issued: October 30, 2023 We primarily investigated companies involved in the business and technology of 3D printers worldwide. This report is connected to next-generation business opportunities with an eye on future developments. 【Features of this report】 ➢ Investigated industry analysis of components adopted in engineering plastics such as PC, PA, PET, and PTEG. ➢ Strategies of material manufacturers developing and proposing medical and welfare materials used in 3D printers. ➢ The global market for 3D printing materials in 2025 is projected to be ● billion yen, exploring trends among material manufacturers. ➢ The market size for metal printers worldwide in 2025 is forecasted to be ● billion yen, with metal materials expected to reach ● billion yen. ➢ The global market for bio 3D printers in 2025 is projected to be ● billion yen, with bio inks estimated at ● billion yen. ➢ The global market for dental 3D printers in 2025 is forecasted to be ● billion yen, with the materials used estimated at ● billion yen. ➢ Strategies of companies focusing on ceramics 3D printers, developments in materials of interest, and applications are included. ➢ Trends in materials such as TPU, silicone, graphene, HIPS, quartz glass, and support materials are introduced. ➢ Explored the background and methods of adopting metals like copper, aluminum, and titanium in metal 3D printers.

  • 3D Printer
  • Metal 3D Printer

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Wire DED method metal 3D printer, Meltio M450

A metal 3D printer that is safe and easy to shape.

The Meltio M450 is equipped with everything necessary for a metal 3D printer, making it user-friendly and allowing anyone to start printing right away. The metal wires used are compatible with various materials, including pre-made materials like welding wire, stainless steel, and titanium. It can produce small to medium-sized prints with strength equivalent to forged products, making it ideal for research on bimetallic products. It offers high safety without the need for surrounding equipment or protective gear with strict installation requirements, making it recommended for companies and educational institutions like universities that are introducing metal 3D printers for the first time. Our factory also offers a valuable opportunity to experience actual machine demonstrations and handle parts that have been printed. Please apply here: https://www.3dpc.co.jp/factory-tour

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Large metal 3D printer with wire DED method that can be used immediately after installation.

A large metal 3D printer that eliminates the need for preparation processes after installation and is ready to use immediately.

The "Meltio Robot Cell," which is equipped with all the necessary ancillary equipment for operation, has arrived. This large metal 3D printer using the DED method can create and repair parts and products with strength equivalent to forged items, as well as perform cladding. It is expected to solve many challenges, including reducing manufacturing time, addressing labor shortages, and cutting costs. At our factory, we also offer a valuable opportunity to experience the actual machine and handle parts that have been created. Please be sure to apply. - Apply here: https://www.3dpc.co.jp/factory-tour

  • Other machine tools
  • Metal 3D Printer

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Strength of Metal 3D Printers

Introducing the strength of various metal 3D printed objects, such as "Inconel" from "titanium alloy"! Please compare it with the strength of other manufacturing methods!

Our company uses both electron beam and laser metal 3D printers for manufacturing, accommodating a wide range of steel types. We will compare and introduce the strength of materials produced by metal 3D printers with those made using traditional methods (casting and forging) for each steel type. 【Featured Steel Types】 ■ Titanium Alloy (Ti6Al4V) ■ Pure Titanium (Grade-2) ■ Nickel-Based Alloys (IN625 / IN718) ■ Stainless Steel (SUS316L) ■ Maraging Steel ■ Aluminum Alloy (AlSi10Mg) ■ Cobalt-Based Alloys (CoCr) For more details, please download the materials or check the related links. Feel free to contact us for prototypes, delivery times, estimates, or any questions.

  • Other metal materials
  • Metal 3D Printer

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Would you like to consider reducing costs with large metal 3D printing?

With the large machine XLINE 2000R, it is possible to create objects up to a maximum size of 800 x 400 x 500 mm using a metal 3D printer.

Have you ever considered using a metal 3D printer for your manufacturing needs but gave up due to size constraints? With the XLINE2000R, you can create objects up to a maximum size of 800 x 400 x 500 mm, and for smaller items, you can increase the number of pieces produced at once, potentially reducing your manufacturing costs compared to before. Our company is the only one in Japan that owns the XLINE2000R at a service bureau (metal 3D printing contractor), so if you are considering large-scale manufacturing or mass production of small items, please feel free to consult with us.

  • 3D Printer
  • Metal 3D Printer

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[Presentation of explanatory materials] What is a metal 3D printer?

It is possible to create complex shapes! We will explain the advantages of manufacturing and what can be made!

In recent years, "metal 3D printers" have been gaining attention in the metal processing and manufacturing industries. Although the technology is said to still be in development, improvements are being made, and adoption is progressing, particularly in Europe and the United States. With the increase in cost-effectiveness, companies that had previously hesitated to adopt this technology may now find it easier to get involved. In this document, we will introduce an overview of metal 3D printers, their manufacturing methods, and their advantages and disadvantages. If you are considering the introduction of a metal 3D printer, please take a moment to read this. [Contents] ■ Metal 3D printers that can create shapes that could not be made before ■ Representative manufacturing methods ■ Advantages and disadvantages ■ Examples of items that can be made with metal 3D printers *For more details, please refer to the PDF document or feel free to contact us.

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