3D Printer Product List and Ranking from 42 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Jul 23, 2025~Aug 19, 2025
This ranking is based on the number of page views on our site.

3D Printer Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jul 23, 2025~Aug 19, 2025
This ranking is based on the number of page views on our site.

  1. 久宝金属製作所 Osaka//Building materials, supplies and fixtures manufacturers
  2. null/null
  3. シーメット Kanagawa//Mining 本社
  4. 4 エイチ・ティー・エル Tokyo//Trading company/Wholesale HTL(エイチティーエル)
  5. 4 DOHO Tokyo//Trading company/Wholesale 本社

3D Printer Product ranking

Last Updated: Aggregation Period:Jul 23, 2025~Aug 19, 2025
This ranking is based on the number of page views on our site.

  1. 3D printer "Qholia" 久宝金属製作所
  2. BigRep's large 3D printer "BigRep ONE"
  3. Explanation: Laser Powder Bed Fusion (LPBF) Metal 3D Printer エイチ・ティー・エル HTL(エイチティーエル)
  4. 3D printer 雲工工業テクノロジー(深セン) 深セン本社
  5. 4 Reduce lead time and costs for sand casting with a 3D printer for casting. シーメット 本社

3D Printer Product List

1~15 item / All 139 items

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3D printer × jig: Precision assurance is also possible through secondary processing!

Guaranteeing a precision of ±0.05 in machining after shaping.

By performing machining after shaping, the guaranteed precision can be improved. Dimensional tolerance ±0.05mm Surface roughness Ra1.6 to 3.2 Other secondary processing options available: blasting, barrel polishing, chemical etching *Black matte finish treatment for optical components is also possible.

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We will exhibit at JIMTOF2022 in the AM area (3D printers).

First exhibition at JIMTOF! "Building a new manufacturing process with 3D printing technology" We will be exhibiting at the AM area, booth AM129.

"Building a new manufacturing process with 3D printing technology" is the concept behind our exhibition, where you can directly view the sand mold 3D printers and photopolymerization printer technologies we handle, along with samples produced using each technology. We will also be available for consultations regarding 3D printers. We look forward to your visit at the Additive Manufacturing area "AM129 booth." ◆ Event Overview ◆ Dates: November 8 (Tuesday) - November 13 (Sunday), 2022, 6 days Time: 9:00 AM - 5:00 PM Venue: Tokyo Big Sight (International Exhibition Center) South Hall Booth Location: AM129 (3D Printer Zone) Official Website: https://www.jimtof.org/jp/index.html Please check the "Basic Information" section below for highlights.

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Pellet Fusion Deposition Modeling 3D Printer 'GEM444'

Equipped with an extrusion head that enables a maximum discharge rate of 3 kg/h! It can be used for a wide range of applications from material development to large-scale modeling.

The "GEM444" is a next-generation 3D printer that can create three-dimensional shapes using pellets of the grade desired by the user. Equipped with an extrusion head capable of a maximum output of 3kg/h, it is a lab machine that can be used for a wide range of applications, from material development to large-scale modeling. We also offer a super engineering plastic version that can operate at temperatures up to 400°C. 【Features】 ■ Capable of three-dimensional modeling with pellets of the desired grade ■ Equipped with an extrusion head capable of a maximum output of 3kg/h ■ Super engineering plastic version available that can operate at temperatures up to 400°C ■ Complete with design, parts processing, assembly, and after-sales service *For more details, please refer to the PDF document or feel free to contact us.

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What is the difference between resin pellet type and filament type 3D printers?

Points to note when using pellet and filament types, examples of "PLA" and "Elastomer" molding samples, comparison tables, and more are included! Materials are being distributed.

This document includes a comparison of the mechanisms and specifications of Slab's uniquely developed resin pellet-type 3D printer and filament-type 3D printer. It also features material modeling samples such as "PLA" and "elastomers" along with photographs. Additionally, we offer special options such as a 400°C specification. We also conduct modeling tests and equipment rentals, so please feel free to contact us when needed. [Contents] ■ Mechanisms of the two types of 3D printers sold by Slab ・Filament melting layering method FFF/FDM ・Pellet melting layering method GEM ■ What is Granules Extrusion Modeling ■ Modeling samples ■ Specification comparison table *For more details, please refer to the PDF document or feel free to contact us.

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Metal 3D Printer [Wayland Calibur3] Electron Beam

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

This is a metal 3D printer using electron beam powder bed technology that adopts neutral "electron" beam technology, enabling 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 fabrication processes without smoke generation, enabling the production of large parts without being affected by stress. It is capable of 3D printing with a variety of metals and alloys, including Ni alloys, Ti alloys, Cu alloys, CoCr alloys, pure copper, copper alloys, hard metals (Vibenite 280/290), and high melting point metal materials. With fewer necessary post-processing steps, it allows for short and energy-efficient manufacturing. 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 and rotating table.

Directed Energy Deposition (DED) Metal 3D Printer RPMI XR series features the "smallest" size 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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Directional Energy Deposition Method Metal 3D Printer RPMI 557 XR

Shape size: [X 1500 mm × Y 1500 mm × Z 2100 mm] "Largest" size within the RPMI XR series.

Directed Energy Deposition (DED) Metal 3D Printer RPMI XR series, featuring the "largest" size RPMI 557 XR. Build size [X 1500 mm × Y 1500 mm × Z 2100 mm]. With 5-axis control through X, Y, Z + tilt and rotating table, free-form shaping, part repair, and cladding (build-up) are possible.

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

Proven track record of domestic 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 Device Series RPMI 557XR, RPMI 222 XR. 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 through X, Y, Z + tilt and rotating table, free-form fabrication, part repair, and cladding (build-up) are possible.

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Metal 3D Printer [AconityMIDI]

The second process chamber can optionally add preheating at 1200°C.

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 proceed simultaneously while the main system is still in production, saving time. Additionally, this system can also optionally include process monitoring or high-temperature preheating up to 1200°C. Like all Aconity3D devices, the AconityMIDI device is equipped with the control software AconitySTUDIO, allowing 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 [AconityMINI]

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

AconityMINI is an entry-level lab system from Aconity3D. The build space can be reduced from a standard Φ140mm to Φ55mm, and this system, which provides complete access to all relevant process parameters, is designed for efficient materials 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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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 (LPBF) method?" For those in charge of gathering information on metal 3D printers, we provide an explanatory diagram of the Laser Powder Bed Fusion method! 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 and is sieved for recycling during the manufacturing process. *The diagram is based on Aconity3D's equipment and may not necessarily apply to all laser powder bed fusion metal 3D printers currently sold by various manufacturers.

  • Special Construction Method

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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 provide an explanatory diagram of Directed Energy Deposition (DED) for those responsible for gathering information on metal 3D printers! Directed Energy Deposition involves spraying metal powder into a melt pool created by a laser heat source, moving the melt pool along with the laser head, and repeatedly melting and solidifying to create a layered structure. Unlike typical metal 3D printers that have a powder bed, it fixes the base plate or pipes on a table with tilt (90°) and rotation (360°) functions for manufacturing. 1. Free-form manufacturing 2. Free-form manufacturing of complex shapes 3. "Additive" manufacturing to conventional machined parts 4. "Build-up" repairs (+ regrinding*) for worn-out parts (*The diagram is based on 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 simply!

"What is Electron Beam Powder Bed Fusion (EB-PBF)?" "What is EB-PBF?" Let me explain briefly! We provide a schematic explanation of 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 passing motion, melting and solidification of the powder by electron beam irradiation, and powder deposition by the recoater (return motion). This series of actions is repeated to create layered structures. The vertical movement of the build stage and the recoater's excess powder passing motion help save powder and reduce waste. *The schematic 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 creativity and efficiency, next-generation manufacturing solutions.

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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3D printer showroom

One of the largest in Kanto!! If you are planning to introduce a 3D printer, please come and visit us!

In November 2021, we opened a showroom for 3D printers at the Hotti Polymer factory in Kuki, Saitama. Focusing on the MEX method, it is possible to view various types of 3D printers, including light curing and LAM (liquid additive manufacturing), as well as models from different manufacturers within the same method all at once. Additionally, you can also see our in-house printer "Silicom," which can create 100% silicone rubber, a rarity even on a global scale. We invite you to visit us. 【Exhibited 3D Printers】 ■ MEX (resin extrusion additive manufacturing) 3D printer ■ Light curing LCD method (transmissive liquid crystal method) 3D printer ■ Light curing SLA method (laser method) 3D printer ■ LAM (liquid additive manufacturing) 3D printer ■ Poly Jet (inkjet) method 3D printer * New models will be added as they become available. * For more details, please refer to the PDF document or feel free to contact us.

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