We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for 3D Printing.
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3D Printing Product List and Ranking from 14 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.

3D Printing Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.

  1. エイチ・エー・ティー Tokyo//Manufacturing and processing contract
  2. エイチ・ティー・エル HTL(エイチティーエル) Tokyo//Industrial Machinery
  3. CSプロデュース Niigata//Manufacturing and processing contract
  4. 4 システムクリエイト Osaka//Industrial Machinery
  5. 5 プラスチック ミツワ 東京都足立区 Tokyo//Resin/Plastic

3D Printing Product ranking

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.

  1. 3D printer processing (resin) *Food Sanitation Law compliant resin エイチ・エー・ティー
  2. Contract Manufacturing: Ultra-small and Micro Parts Metal 3D Printing エイチ・ティー・エル HTL(エイチティーエル)
  3. 3D Printing [A company in Tsubame City, Niigata Prefecture that specializes in secondary processing/contract processing] CSプロデュース
  4. 4 Light-based 3D printed products (3D printing manufacturing / Adachi Ward, Tokyo) プラスチック ミツワ 東京都足立区
  5. 5 Marsgo can 3D print with pellets despite being desktop-sized. システムクリエイト

3D Printing Product List

1~25 item / All 25 items

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3D Printing "Inkjet (Powder Binding Layering Method)"

The reality that can only be expressed in full color! It conveys your product image more vividly.

Our 3D printing service, "Inkjet," delivers full-color gypsum models with millions of color combinations, allowing us to convey your product image more vividly. Since gypsum powder serves as a support material, we can accurately create hollow structures and complex shapes. Even aerial models of single-family homes can be realized with detailed textures of each room's interior, enabling you to present a model that closely resembles the actual product, which helps convey your vision more accurately and facilitates smoother business negotiations. 【Features】 ■ Full-color gypsum models can convey product images more vividly. ■ Hollow structures and complex shapes can be realized with precision. ■ Detailed textures of each room's interior can be accurately represented. ■ Business negotiations can proceed smoothly. *For more details, please refer to the PDF document or feel free to contact us.

  • 3D Printer
  • Contract manufacturing
  • 3D Printing

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3D printing "FDM (Fused Deposition Modeling)"

Various models are realized with real materials ranging from ABS and PC to ULTEM1010 (PEI) and Antero800NA (PEKK).

Our company's 3D printing 'FDM' models three-dimensional objects by layering resin materials that are melted by heat. Various resin materials can be selected according to the application and purpose. It is capable of large-scale modeling with a build area of x910×y605×z910mm, and finishing processes such as painting, bonding, and machining are possible. 【Features】 ■ Various resin materials can be selected according to the application and purpose (real materials) ■ Internal structures (solid, sparse) can be modified ■ Large-scale modeling is possible (build area x910×y605×z910mm) ■ Finishing processes are possible (painting, bonding, machining) *For more details, please refer to the PDF document or feel free to contact us.

  • 3D Printer
  • Contract manufacturing
  • 3D Printing

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3D printing "PBF (Powder Bed Fusion)"

Achieving 3D printing with PPS material, which excels in strength, heat resistance, and dimensional stability! It is particularly suitable for hollow structure fabrication.

Our 3D printing 'PBF' uses TreMill PPS, a PPS resin microparticle with suitable fluidity and polymer characteristics for the powder bed fusion method, thanks to Toray Industries' unique polymer design technology. It is also possible to select heat-resistant and strength-enhanced materials, such as those containing carbon fiber or glass fiber. The parts to be formed are melted and sintered by a laser, while the unsintered powder material serves as a support material, making it particularly suitable for hollow structure fabrication. 【Features】 ■ The powder serves as a support material, allowing for hollow structures and complex shapes. ■ Multiple products with different shapes can be fabricated simultaneously. ■ Finishing processes are possible (painting, dyeing, machining). ■ TreMill PPS, suitable for fabrication, is used based on Toray Industries' polymer design. *For more details, please refer to the PDF document or feel free to contact us.

  • 3D Printer
  • Contract manufacturing
  • 3D Printing

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3D printing "SLS (Selective Laser Sintering)"

Achieve more detailed models with nylon 12 material that has toughness and heat resistance! Autoclave sterilization is also possible.

Our 3D printing 'SLS' uses nylon 12 material with toughness and heat resistance, enabling the creation of more detailed models. Due to its toughness and heat resistance, autoclave sterilization is also possible. Since the nylon powder serves as a support material, intricate structures and complex shapes can be precisely realized. 【Features】 ■ The powder acts as a support material, allowing for hollow structures and complex shapes. ■ Multiple products with different shapes can be created simultaneously. ■ Large size printing is possible (printing area x670×y360×z560mm). ■ Finishing processes are available (painting, dyeing, machining). *For more details, please refer to the PDF document or feel free to contact us.

  • 3D Printer
  • Contract manufacturing
  • 3D Printing

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3D Print "HP Multi Jet Fusion"

Exhibits effectiveness during mass production with low anisotropy! In addition to PA12 and PA12 glass beads, we have started accepting orders for PP molding.

Our 3D printing technology, "HP Multi Jet Fusion," is characterized by its fast printing speed, which is effective during mass production, and its low anisotropy in the printed structures. Since the powder serves as a support material, it allows for hollow structures and complex shapes. In addition to PA12 and PA12 with glass beads, we also accept orders for PP printing. 【Features】 ■ The powder serves as a support material, enabling hollow structures and complex shapes. ■ Multiple products with different shapes can be printed simultaneously. ■ There is low anisotropy in strength in the XYZ directions. ■ Post-processing is possible (painting, dyeing, machining). ■ PA12 is certified for biocompatibility (compliant with UPS Class I-VI and ISO 10993). *For more details, please refer to the PDF document or feel free to contact us.

  • 3D Printer
  • Contract manufacturing
  • 3D Printing

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Moldless Casting vs. Metal 3D Printing [Digital Sintering Version]

Moldless lost-wax casting "Digital Cast" and metal 3D printing "Digital Sinter," what is the optimal solution for your needs?

★Comparison of the Differences and Advantages between Moldless Casting "Digital Cast" and Metal 3D Printing "Digital Sinter"! In recent years, manufacturing technology for metal parts has evolved dramatically. Moldless casting methods and metal 3D printing are particularly attracting attention in our technology category. 【Advantages of Metal 3D Printing: Digital Sinter】 ■ Overwhelming Speed Digital Sinter has a lead time of about one week (with the shortest record being two days), making it very advantageous for prototypes and small-scale production that require urgent responses. ■ Strong in Producing Complex Shapes and Small Parts The maximum size it can accommodate is 80mm on each side, but it excels in manufacturing small and complex-shaped parts. It is ideal for small components in medical devices and electronic devices, as well as for developing very small quantities of parts. ■ Specific Steel Type Compatibility The materials that can be used are limited to SINTER T (SUS316L) and SINTER D (pure copper, SUS316L, SUS630). This allows for the rapid provision of difficult-shaped items. *This is a guideline for the maximum size and steel types based on our metal 3D printing service. 【What is the Best Metal Forming for Your Needs?】 We provide the optimal manufacturing method for your project, along with VE proposals, based on the purpose of part procurement (QCD) and specification conditions.

  • Machine elements
  • Other electronic parts
  • gear
  • 3D Printing

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Light-based 3D printed products (3D printing manufacturing / Adachi Ward, Tokyo)

We are conducting prototype modeling using the LFS method with Form3+.

Additionally, we have in-house designers, so we can carry out everything from 3D modeling to prototyping consistently. ■ 3D Modeling - SOLIDWORKS * The following methods are available: 〇 Provide 3D model data (STEP or STL) 〇 Create from 3D model in-house ■ Materials Used - Standard Resin - Draft Resin - Tough 2000 Resin - Tough 1500 Resin - Durable Resin - Flexible 80A Resin - Elastic 50A Resin - Gray Pro Resin - Rigid 4000 Resin - Rigid 10K Resin - High-Temp Resin - Castable Wax Resin - Castable Wax 40 Resin - ESD Resin ■ Advantages of Prototyping - Prototyping can be done without creating molds or jigs. - Product shape confirmation and fitting verification can be done without incurring upfront costs.

  • 3D Printer
  • 3D Printing

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I scanned a grain of rice and made it 100 times its actual size!

[Mitarepo] Ultra-small 3D scan × large print! Scanned 5mm rice and printed it at 500mm!

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" We deliver useful information each time from the wide range of product genres handled by System Create. The theme of Vol.19 is "We 3D scanned a grain of rice and made it 100 times its actual size!" Mitarepo has tackled various projects so far, but Vol.19 is taking on a unique and unconventional theme! As mentioned above, we are 3D scanning a grain of rice, scaling it up, and then 3D printing it. This is the first time we are scanning and printing something so small, but it should definitely result in something impressive...! So this time, we scanned a grain of rice that is only 5mm in size. We enlarged the data to 100 times its height and attempted to print it. "How well can we scan ultra-small objects?" "Was the 100 times larger rice successfully completed?" Please pay attention to each step as you watch. *You can download the materials from the button below.

  • 3D measuring device
  • 3D Printer
  • Data conversion software
  • 3D Printing

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[Marsugo] Freely arrange carbon materials with 3D printing 'mask function'

The key to utilizing carbon 3D printing with "Malsugo" is the "arrangement of carbon"! We will explain the amazing "mask function" that allows for the free arrangement of carbon materials.

Marsgo is a document that picks up the functions and features of various products and introduces the "amazing" aspects of them. This time, we will introduce the "mask function" of the carbon 3D printer "Anisoprint Composer," which allows you to place carbon material only in areas where strength is required. To make the most of carbon 3D printed models, it is important to determine whether you can appropriately utilize the strength of the carbon material. One key point is to focus on the "placement of carbon material" within the model. If you place carbon material equally in areas under load and those that are not, you will not be able to effectively gain the benefits. This is where the "mask function" we are introducing comes in handy. By using the mask function, you can freely place carbon material on the model, allowing you to focus on reinforcing the areas that require strength. If you have 3D data, you can easily create a mask, enabling you to achieve a "convenient and waste-free" increase in strength. It's a very useful function, so if you're concerned about the strength of your printed model, please take a look! ★ *You can download the document from the button below.

  • 3D Printer
  • Composite Materials
  • plastic
  • 3D Printing

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3D printer processing (resin) *Food Sanitation Law compliant resin

We provide a comprehensive service from 3D model creation to shaping based on flat drawings!

We offer 3D printing services (resin) at our company. We can accommodate requests such as "I want to create something for confirmation before making the actual product" and "I want to easily create one-of-a-kind items like jigs." We provide a comprehensive service from 3D model creation from flat drawings to the actual printing. Please feel free to contact us with your requests. 【We can respond to the following requests】 ■ I want to create something for confirmation before making the actual product ■ I want to easily create one-of-a-kind items like jigs ■ I want to create educational samples ■ I want to make a nameplate with raised letters *For more details, please refer to the PDF materials or feel free to contact us.

  • 2.PNG
  • Processing Contract
  • 3D Printing

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3D printing

Supports five methods including "inkjet method," "FDM method," and "light curing"!

Introducing "3D Printing" at Mtopia. We offer five methods including "Inkjet method" using acrylic-based two-component UV-curable resin, as well as "FDM method" and "SLA" (Stereolithography), "Powder printing," and "Glass-filled powder printing," which allow for the use of real materials like ABS and PC. If you are facing issues such as "not being able to choose the same material as the real thing," please feel free to consult us about any concerns, no matter how small. 【Available Methods】 ■ Inkjet method ■ FDM method ■ SLA (Stereolithography) ■ Powder printing ■ Glass-filled powder printing *For more details, please refer to the related link page or feel free to contact us.

  • 3D Printer
  • 3D Printing

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3D Printing [A company in Tsubame City, Niigata Prefecture that specializes in secondary processing/contract processing]

Let's create the things we want from scratch! Let's bring our ideas to life and enjoy making things together! ♪

- Our company handles everything from modeling to production using 3D printers and 3D CAD! - Since we can create data from modeling to finished production with a 3D printer, we can produce completely original products.

  • Processing Contract
  • 3D Printing

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3D Print "PolyJet (UV Curing Method)"

The ultimate reality model made possible by full color! Achieving realistic models with textures and simultaneous soft and hard material shaping.

Our 3D printing 'PolyJet' offers color variations with over 360,000 colors, enabling the reproduction of texture mapping. We consolidate the two processes of prototyping and painting into one, reducing lead time. Simultaneous molding of rubber-like and rigid materials is possible, and post-processing polishing is available as an option. 【Features】 ■ Consolidation of the two processes of prototyping and painting into one to reduce lead time ■ Simultaneous molding of rubber-like and rigid materials ■ Ability to reproduce texture mapping ■ Post-processing polishing option available ■ Layer pitch of 14–16μm / 27–30μm *For more details, please refer to the PDF document or feel free to contact us.

  • 3D Printer
  • Prototype Services
  • Contract manufacturing
  • 3D Printing

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World's smallest level! Ultra-fine 3D printing

Minimum shape dimension 0.2μm Innovate your business with ultra-fine 3D printing services!!

This is a contract service specializing in prototyping micro lenses, diffractive optical elements, microneedles, MEMS, etc., using the world's highest precision 3D photolithography technology. The ultra-fine 3D printing service is a fabrication service utilizing the Nanoscribe system, a 3D photolithography device developed through collaborative research between Castem and Kyoto University of Advanced Science. By employing two-photon polymerization 3D printing technology and IP resin with sub-micron resolution, this system can produce shapes and precision that are impossible with conventional methods. The ultra-fine 3D printing service is actually utilized in research and industrial fields such as: ■ Mechatronics ■ Biotechnology ■ MEMS ■ Microelectronics ■ Optics ■ Medical ■ Materials Engineering

  • lens
  • Microscope
  • Microarrays and DNA chips
  • 3D Printing

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Moldless Casting vs. Metal 3D Printing [Digital Cast Version]

Moldless casting "Digital Cast" and metal 3D printing "Digital Sinter," what is the optimal solution for your needs?

★Comparison of the Differences and Advantages between Moldless Casting "Digital Cast" and Metal 3D Printing "Digital Sinter"! In recent years, manufacturing technologies for metal parts have evolved dramatically. Moldless casting methods and metal 3D printing are particularly attracting attention in our technology category. 【Advantages of Moldless Casting: Digital Cast】 ■Short Lead Time The lead time is only 2 weeks (with the shortest turnaround time being just 5 days). This helps shorten development periods and construction times. ■Wide Range of Metal Materials Available Digital Cast allows for the selection of over 70 types of materials (casting materials). It can accommodate a wide range of needs, including iron, stainless steel, aluminum, copper (including pure copper), special alloys (such as duralumin A7075 and Inconel), heat-resistant steel, tool steel, and high-speed steel. This provides designers with more flexible options. ■Manufacturing Capable from Small to Medium to Large Parts It can accommodate sizes up to 500 mm square. It is ideal for manufacturing small to medium and large parts. ■Rational Prototype Verification with an Eye on Mass Production Casting During mass production repeats, products are formed using the lost-wax precision casting method (our core technology), and it is a rational verification method to prototype and verify similar cast products before manufacturing, especially in terms of evaluating mechanical properties (such as strength confirmation).

  • gear
  • joint
  • nozzle
  • 3D Printing

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Problem-Solving Materials: Utilizing 3D Data Edition 1-2-1 | Pre-Deformation of Print Data

What are the tips for successfully achieving "pre-deformation" to eliminate distortion in metal 3D printing? A resource for discovering and solving challenges in the production field.

This document is a series that proposes solutions to various challenges faced in production sites, from identifying issues to finding solutions. In the "3D Data Utilization Edition," we will introduce various solutions to manufacturing challenges through the use of 3D data. This document specifically focuses on the theme of "pre-deformation of print data," detailing methods to eliminate deformation in metal 3D printing. [Document Overview] Metal 3D printing is still a relatively new manufacturing technology compared to traditional manufacturing methods, and as such, the know-how has not yet been established. One of the challenges that frequently arises in metal 3D printing is "model deformation," and a method currently gaining attention for addressing this issue is "pre-deformation." Pre-deformation involves anticipating model deformation and designing the model based on analysis results to be "pre-deformed." As the use of metal 3D printers expands, this method is expected to gain even more attention in the future. This document explains the concept of introducing pre-deformation and provides easy-to-implement methods for anyone. *You can download the document using the button below.

  • simulator
  • Stress Analysis
  • 3D Printer
  • 3D Printing

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Marsugo: 3D printing that enables environmentally friendly operations with zero material waste.

Zero material waste! We will explain the amazing features of "Fuse 1 & Fuse Sift," which can operate in an environmentally friendly manner for both users and the environment.

Marsugo is a document that picks up the functions and features of various products and introduces the "amazing" aspects of them. This time, we will introduce the powder bed fusion 3D printer "Fuse 1 & Fuse Sift," which enables eco-friendly operations with almost zero waste materials. Nowadays, companies around the world are engaging in activities aimed at achieving the SDGs. In this context, manufacturing with 3D printers has been recognized early on as a concept aligned with the SDGs, as it allows for the production of only the necessary items in the required quantities. However, it is true that conventional 3D printing requires "support materials," and the materials used for supports must be discarded, raising environmental concerns. That’s why we are introducing the "Powder Bed Fusion 3D Printing System Fuse 1 & Fuse Sift." This amazing 3D printing system allows for operations that are friendly to both the environment and users, with "almost zero material waste." Furthermore, the products created have the characteristics of "high functionality and high quality," which can further expand the range of applications for 3D printed products. *You can download the document from the button above.

  • 3D Printer
  • Composite Materials
  • plastic
  • 3D Printing

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Marsgo can 3D print with pellets despite being desktop-sized.

3D Printing with Pellets on Your Desktop! Explaining the Amazing Features of the "Tumaker NX・BIGFoot Series" Print Head | System Create

Marsugo is a document that picks up the functions and features of various products and introduces the "amazing!" aspects. 3D printers that can create shapes using pellet materials are gaining attention. However, due to structural limitations, most of them are large in size... Have you ever thought that it would be more convenient if there were smaller printers available? Introducing the newly launched desktop 3D printer "Tumaker NX Pro・BIGFoot Pro series," which can use both pellet and filament materials. To set up the materials, simply load the pellet material into the hopper. After that, you can use it with a user experience that is almost the same as a typical FDM 3D printer. In this document, we provide a detailed explanation of the unique structure and mechanism of the print head that enables stable printing with pellets, so please take a look. *You can download the document using the button below.

  • 3D Printer
  • plastic
  • 3D Printing

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Contract Manufacturing: Ultra-small and Micro Parts Metal 3D Printing

The design freedom of metal micro-parts will greatly expand!

Introducing our contract manufacturing service for ultra-small and micro parts using metal 3D printers! 3D Micro Print GmbH (Germany) has over 10 years of experience in contract manufacturing across various fields and mass production. 【Adopted Fields】 Medical and robotics industries, automotive, aerospace and defense, watches and jewelry, power engineering, fluid technology, electronics, etc. 【Features】 1. It is possible to simultaneously manufacture movable parts as a single unit in advance. 2. Capable of producing lattice structures and hollow components. 3. Easy design modifications allow for shortened development cycles. 【Manufacturing Materials】 • Stainless Steel: 1.4404 (316L), 1.4542 (17-4PH) • Nickel Alloy: Inconel 718 • Titanium Alloy: 3.7164 (Ti6Al4V) Gd 5/23 • Pure Titanium: Gd 1 / Gd 2 / Gd 4 • Copper: Pure Copper (PureCu) / CuCrZr 【Manufacturing Space】 Manufacturing space: X 60 x Y 60 x H 40 mm

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Aluminum metal 3D printing

Get cast products in your hands quickly without the need for molds.

I believe that aluminum castings are used in many automotive industry parts. Our company has successfully shortened delivery times by using metal 3D printers to create aluminum without the need for molds. As a result of shorter construction periods and faster development cycles, we have been able to serve more customers. Features: ■ Short delivery times ■ Uses ALSi10Mg (high strength) ■ Mold-free ■ Shortened development cycle

  • Engine parts
  • 3D Printing

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[Production Example] 3D Printer (SLA) 'Shachihoko/Skeleton'

The moldable size is [X]850mm × [Y]650mm × [Z]400mm! Sizes larger than this can also be produced by dividing them.

We would like to introduce examples of photopolymer production by our company. The "shachihoko" was created by converting a photo into 3D data and then fabricated. Since we planned to incorporate a movable unit inside, it was produced in two parts that are split at the center. Additionally, the "skull" is a medical mock-up produced as a complete integrated model. The interior of the skull is hollow, and the layer pitch is 100μm. 【Shachihoko Case Overview】 ■ Layer Pitch: 100μm ■ Size: 220mm × 100mm × Height 250mm ■ Final Finish: Layer polishing removal, coating material spraying (Our produced items: standard finish) *For more details, please refer to the related links or feel free to contact us.

  • Printer
  • 3D Printing

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3D print output

We will create high-strength, heat-resistant, and resilient structures using the high-performance filament "ONYX."

【3D Printing Output Service】 This is a 3D printing service using the Markforged 3D printer "ONYX ONE." The "ONYX ONE" features high-performance filament "ONYX" (the industry's first carbon short fiber), providing high strength, heat resistance, stability, and resilience, making it suitable for jigs and end parts. If you have an STL file, output is possible. *Please note that depending on the data, output accuracy and the ability to create models may vary. 【3D Model Creation】 If you need to create a 3D output model, please contact us.

  • 3D Printer
  • 3D Printing

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Metal 3D printing (Metal Binder Jet 3D Printing)

<Materials explaining the manufacturing process are now available> No mold costs required! For metal binder jet 3D printing, trust INDO-MIM.

Introducing the "Metal 3D Printing Business" of INDO-MIM Private Ltd. "Metal Binder Jet Printing" can solve almost all the problems currently faced by metal 3D printing. It adopts energy-efficient sintering compared to laser sintering, and in the future, a wide range of materials including steel alloys, nickel superalloys, copper, aluminum, titanium alloys, and tungsten alloys will be available. 【Features】 ■ Production process design capable of mass production ■ Achieving a production capacity of approximately 10,000 parts per day within the next few years ■ Capable of accommodating very low production volumes (10 to 100 parts) at an affordable price ■ Uses low-cost MIM powder ■ Expected to reduce part costs to one-fifth of those using direct laser metal sintering methods INDO-MIM's MIM parts are active in various fields around the world! We provide information in Japanese for Japanese companies, so please feel free to contact us. *Please view white papers and reference materials from the PDF download.

  • Processing Contract
  • 3D Printing

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Large-scale 3D Printing Vision Proposal

Large-scale 3D printing landing operation. Future city concept through infrastructure development.

Our company aims to expand the field of DfAM and present its vision to society. As the first phase to demonstrate the vision of "practical application of 3D printed houses" using a concrete shaping machine, which is rare in the country, we are planning a "3D printing development project for water infrastructure" utilizing a vast port area. We are also considering the realization of housing and urban construction through applications of water development. 【Future City Concept through 3D Printed Water Infrastructure Development】 ■ Water Mobility Development - Marine transportation, EV vessels, streamlined shapes, lightweight design ■ Water Resort House Concept - Preceding research on 3D printed houses, solar power, off-grid ■ Port Development and Wave-Absorbing Blocks - Artificial coral reefs, wave protection, marine environmental conservation, promotion of fisheries *For more details, please refer to the PDF materials or feel free to contact us.

  • 3D Printer
  • 3D Printing

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[Research Material] Global Market for 3D Printing of Metal Materials

World Market for 3D Printing of Metal Materials: Iron-based, Titanium, Nickel, Aluminum, Others, Aerospace & Defense, Tool & Die Manufacturing, Automotive, ...

This research report (Global Metal Material Based 3D Printing Market) investigates and analyzes the current state and outlook for the global market for 3D printing with metal materials over the next five years. It includes information on the overview of the global metal material 3D printing market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the metal material 3D printing market include iron-based, titanium, nickel, aluminum, and others, while the segments by application cover aerospace and defense, tool and mold manufacturing, automotive, medical, and academic institutions. The regional segments are divided into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa, to calculate the market size for metal material 3D printing. It also includes the market share of major companies in metal material 3D printing, product and business overviews, and sales performance.

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