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  3. DMM.com DMM.make 3Dプリント事業部
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DMM.com DMM.make 3Dプリント事業部

number of employees4000
addressTokyo/Minato-ku/24th Floor, Sumitomo Real Estate Roppongi Grand Tower, 3-2-1 Roppongi
phone03-3252-2380
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last updated:May 29, 2024
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[Free Sample Available] 3D Print Material "MJF" Sample Set

This is a sample of the 3D printing material "MJF"!

DMM.make's 3D printing service provides comprehensive support for a wide range of manufacturing, from mass production assistance to prototyping, without the use of molds. We offer a variety of materials, from those with strength comparable to injection molding to softer materials like rubber and silicone. We have received feedback from many companies expressing, "We want to introduce 3D printing technology, but we don't know where to start or what materials are optimal." DMM.make has been providing services since the dawn of 3D printing technology in Japan. We promise to support you in realizing your ideas. First, we will discuss your intended use, requests, and budget in a meeting, and we will also provide samples free of charge. Please feel free to contact us. *The sample plates of the materials listed below (a total of 3) are included. PA12W White | MJF PA12 | MJF PA11 | MJF

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[Free Sample Available] 3D Print Material "LFS" Sample Set

This is a sample of the 3D printing material "LFS"!

DMM.make's 3D printing service provides comprehensive support for a wide range of manufacturing, from mass production assistance to prototyping, without the use of molds. We offer a diverse selection of materials, from those with strength comparable to injection molding to softer materials like rubber and silicone. We have received feedback from many companies expressing, "We want to introduce 3D printing technology, but we don't know where to start or which materials are optimal." DMM.make has been providing services since the dawn of 3D printing technology in Japan. We promise to support you in realizing your ideas. First, we will discuss your intended use, requirements, and budget in a meeting, and we will also provide samples for free. Please feel free to contact us. *The following sample plates (a total of 4) are included: Rubber-like | LFS Gray resin | LFS Gray tough resin | LFS PP-like | LFS The holes and thickness change every 1 mm.

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[Free Sample Available] 3D Print Material "AGILISTA" Set

This is a sample of the 3D printing material "AGILISTA"!

DMM.make's 3D printing service provides comprehensive support for a wide range of manufacturing, from mass production assistance to prototyping, without the use of molds. We have received feedback from many companies expressing, "We want to introduce 3D printing technology, but we don't know where to start or which materials are optimal." DMM.make has been providing services since the dawn of 3D printing technology in Japan. We promise to support you in realizing your ideas. First, we will discuss your intended use, requests, and budget in a meeting, and we will also provide samples free of charge. Please feel free to contact us. The samples introduced on this page are scale samples that show thickness. They are plates made of: Clear Acrylic | MJT | AGILISTA, High-Heat Resistant Acrylic | MJT | AGILISTA, High-Hardness Silicone Rubber | MJT | AGILISTA, Low-Hardness Silicone Rubber | MJT | AGILISTA. To illustrate the characteristics of the materials, the holes and thickness change every 1 mm. This will be helpful when creating models and accessories.

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3D printed material "Titanium | DMLS" sample

This is a sample of 3D printing material "Titanium | DMLS"!

Scale sample showing thickness Unpolished titanium | DMLS material. To illustrate the characteristics of the material, the holes and thickness change every 1 mm. This is useful as a reference when creating models and accessories.

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3D printing material 'PA12' MJF

A nylon material suitable for mass production with excellent rigidity!

This is a nylon material called HP 3D High Reusability PA 12, which is excellent in rigidity and suitable for mass production, made with the HP Jet Fusion 4200. Compared to SLS, the MJF method produces objects without anisotropy, offering high strength and dimensional accuracy, making it usable from prototypes to final products. It also features chemical resistance to oils, greases, aliphatic hydrocarbons, and bases. It is built with a layer pitch of 0.08mm, allowing for text representation as well.

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3D printing material "HPS Titanium" DMLS

Due to its general titanium material properties, it can be post-processed and is ideal for many applications such as aerospace and medical fields!

This is a titanium material called EOS Titanium TiCP, produced using the EOSINT M280. It has the typical material properties of titanium, allowing for post-processing, making it ideal for various applications such as aerospace and medical. Although titanium is a difficult metal to machine, 3D printing offers high design freedom and the possibility of mass production. It is built with a layer pitch of 0.03mm. Tests have been conducted in compliance with the following standards, and it has passed: - REACH - RoHS

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3D printing material "ABS-like" HPS

High-strength engineering plastic with high impact strength and excellent surface finish.

Henkel LOCTITE 3D 3843 BK, produced with the Lumia X1, is a high-strength engineering plastic that features moderate heat resistance (HDT 60°C) and high impact strength, with excellent surface finish. It is manufactured using cutting-edge 3D printing technology that combines multiple patented techniques known as HPS molding. Henkel LOCTITE 3D 3843 BK is suitable for tapping and drilling, making it ideal for various tools in production environments. It has undergone chemical resistance testing in accordance with ASTM D543*, demonstrating excellent chemical resistance. Additionally, outdoor accelerated weathering tests have been conducted in accordance with ASTM D4329* (Cycle A). When used in final products, it is recommended to conduct outdoor testing specific to the intended application.

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3D printing material "High-Precision Acrylic" MJT

It is an acrylic material that allows for high-precision molding!

This is a material called Visijet Crystal, produced with the ProJet 3500HD Max. It is an acrylic material that allows for the highest precision modeling among the materials we handle. With a layer thickness of 29μm, it is ideal for creating small models as it reproduces fine details accurately. Tests have been conducted in compliance with the following standards and have passed: USP Class VI

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3D printing material "Aluminum | SLM"

In 3D printing, compared to traditional methods, there is a high degree of design freedom, and mass production is also possible!

It is an aluminum alloy material used for cast parts called AlSi10Mg. It has excellent electrical conductivity, thermal conductivity, and corrosion resistance, and can be machined or polished as needed. Compared to traditional methods, 3D printing offers greater design freedom and allows for mass production. It is built with a layer pitch of 0.04mm.

  • 3D Printer

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3D printing material "Stainless Steel 17-4PH"

It is a stainless steel material with characteristics such as high strength, high hardness, excellent corrosion resistance, heat treatability, and weldability! It is used for high-strength components with corrosion resistance requirements.

This is a martensitic precipitation hardening stainless steel characterized by high strength, high hardness, excellent corrosion resistance, heat treatability, and weldability. Compared to the same stainless material, SUS316L, it has twice the tensile strength but is characterized by lower elongation at the breaking point. It is suitable for the fabrication of durable metal products and lightweight designs, such as valves, shaft types, steam turbine components, and high-strength parts with corrosion resistance requirements. In 3D printing, it offers greater design freedom compared to conventional methods and is also suitable for mass production. It is fabricated with a layer pitch of 0.04mm.

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3D printing material 'PA12W White' MJF

Asia's first! 'PA12W White | MJF' overwhelming strength and weather resistance

This is a nylon material called HP High Reusability PA12W, made with the HP Jet Fusion 5420W, which excels in rigidity and weather resistance. It is a mass-production suitable material that can achieve practical strength without anisotropy in the manufactured products. It has better weather resistance than conventional nylon, and its white color does not yellow, making it suitable for final products and scenarios that require design aesthetics. It is formed with a layer pitch of 0.08mm, allowing for text representation as well. Tests have been conducted in compliance with the following standards, and they have passed: - REACH - RoHS - PAHs - Biocompatibility (for details, please inquire) - ISO 10993-4 (Hemocompatibility) - ISO 10993-5 (Cytotoxicity) - ISO 10993-10 (Sensitization/Irritation/Intradermal Reaction) - ISO 10993-11 (Acute Systemic Toxicity)

  • 3D Printer

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3D printing compatible material "High-Precision Plastic"

Capable of reproducing high-precision and sharp edges! Suitable for drilling, tapping, and machining, and can also be used as parts for final products! Ideal for jigs!

This is a material called VisiJet(R) M2R-TN, produced using the ProJet(R) MJP 2500 Plus. It is built with a layer pitch of 32μm, allowing for high precision and sharp edge reproduction. Additionally, it features a smooth surface finish, making it suitable for painting and ideal for detailed railway model applications. In terms of mechanical properties, it is a plastic with excellent rigidity, capable of being drilled, tapped, and machined, and can also be used as parts for final products. The high-definition plastic has an ochre base color, but please note that areas where supports are attached will turn white due to support removal. Tests have been conducted in compliance with the following standards, and they have passed: USP Class VI.

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3D printing compatible material 'Stainless Steel | SLM'

Due to its high tensile strength, heat resistance, and corrosion resistance, it can be used for various applications.

It is a stainless steel material called SUS316L. Due to its high tensile strength, excellent heat resistance, and corrosion resistance, it can be used for various applications. In 3D printing, it offers greater design freedom compared to traditional methods and is also suitable for mass production. It is built with a layer pitch of 0.04mm.

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3D printing compatible material "High-Precision Ceramic-Like" LumiaX1

It features a smooth surface finish, heat resistance up to a load deflection temperature (0.45MPa) of 280°C, exceptional rigidity, excellent chemical resistance, and electrical insulation properties.

We use a cutting-edge 3D printing technology that combines multiple patented techniques known as HPS molding methods. Ultracur3D(R)RG 3280 has a Young's modulus exceeding 10,000 MPa, allowing it to withstand significant forces without yielding, resulting in excellent load-bearing capacity. These features make it suitable for applications in industries exposed to extreme thermal environments, such as aerospace, automotive, and electronics. Due to its excellent dimensional stability and resistance to deformation, it has a proven track record of injecting 300 parts as an injection mold for resin molding. The resin used for injection can be molded from thermoplastics such as ABS, PP, PC, and TPE. In the case of using injection molds, it may be difficult to remove the model depending on its design, so we recommend using a release agent. At DMM.make, we typically deliver with supports, but by selecting the "removal available" option, we can deliver without supports. By curing the material, the load deflection temperature (1.82 MPa) can be improved to a range of 132°C to 162°C. There is no change in the load deflection temperature (0.45 MPa) due to thermal curing.

  • 3D Printer

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Asia's first launch! 3D printer 'Lumia X1' adopting HPS technology.

Achieving the highest precision with high quality and speed! Providing extremely high resolution.

The "Lumia X1" is a product equipped with innovative technologies from the American company Axtra3D, such as Hybrid PhotoSynthesis (HPS), TruLayer technology, and IntelliCartridge. We provide our customers with top-level performance in production economics, build time, reproducibility, and build suitability. It achieves fine details and smooth surfaces without generating poor surface characteristics caused by pixelation or aliasing. Additionally, it is possible to realize both advantages (build speed + quality equivalent to injection molding) in a single 3D printer. 【Features】 ■ Build Speed ■ TruLayer Technology ■ Open Material ■ Large Build Area *For more details, please refer to the related links or feel free to contact us.

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Started contract manufacturing using the "HPS molding method" that balances high quality and speed.

DMM.make 3D printing has introduced the cutting-edge 3D printer "Lumia X1"!

DMM.com LLC has introduced the advanced technology Axtra3D's 3D printer 'Lumia X1' in its DMM.make 3D printing business starting from Tuesday, May 14, 2024. This enables contract manufacturing using the "HPS molding method," achieving high-speed, high-precision, and high-resolution 3D printing. Additionally, we have signed a general agency contract for this product in Japan and will conduct agency sales. Customers can experience the performance through contract manufacturing before purchasing the advanced 3D printer. [Purpose and Background of Introduction] To realize the vision of "creating a world where everyone can master 3D printing," we aim to manufacture high-quality products more quickly and support our customers' manufacturing processes. *For more details, please refer to the related links or feel free to contact us.

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[Case Study] Cutting-edge 3D Printing Examples of Human vs. Robot

Cutting-edge communication research between humans and robots: Examples made possible by 3D printing.

We spoke with Assistant Professor Hayashi from Toyohashi University of Technology, a member of the Japan Society of Robotics, who is conducting research on "Human-Robot Communication." This research involves building a system to observe and analyze small, unnoticed "social stimuli" exchanged between people in their daily interactions, and clarifying what happens when robots utilize these stimuli in actual urban environments.

  • Contract manufacturing

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[Case Study] Scale Model of a Helical Fusion Reactor Created with a 3D Printer

A case study of a scaled model of a helical nuclear fusion reactor researched by Professor Miyazawa at the National Institute for Natural Sciences, created using a 3D printer!

We would like to introduce a case study of a scaled model of a helical fusion reactor, researched by Professor Miyazawa from the National Institute for Natural Science's Nuclear Fusion Research Institute, which was produced using a 3D printer. In the Fusion System Research Division, we are advancing the overall system design of fusion power reactors, while also conducting research on materials that are less prone to activation, suitable materials for breeding and recovering fuel, their appropriate arrangement, and the enhancement of plasma-facing components that can withstand high heat flux from the plasma.

  • Contract manufacturing

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[Case Study] Time, closely related to movement. Bringing it to form.

Visualizing invisible time with a 3D printer and unfolding it in real space. An example of a work using a 3D printer by artist Hironori Goto.

We were introduced to various examples of art works that utilize 3D printers to visualize invisible time, among other things.

  • Contract manufacturing

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[3D Printing Material] New aluminum material renewed and newly launched!

The aluminum material has been renewed and is now available. In response to customer feedback, we have reviewed the quality and pricing of the current aluminum material!

We use an alloy called AlSi10Mg, which has properties equivalent to those of commonly used casting alloys. Like typical aluminum die castings, it can undergo post-processing such as polishing and plating.

  • Contract manufacturing

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[Case Study] Verification conducted with prototypes utilizing 3D printers and proposals made.

A case where prototypes utilizing a 3D printer are used to confirm design aspects and verify functionality, and then shown to customers with the actual product for product proposals.

"We deliver the joy of creation and the pleasure of showcasing to the world." With a history of 86 years as a specialized trading company in the apparel industry, we spoke with Mr. Yamamoto and Mr. Tokunaga from Kiyohara Co., Ltd.'s Apparel Division, which handles over 600,000 items. We will introduce examples of confirming design aspects and verifying functionality using prototypes created with 3D printers, showing them to customers with actual products and making product proposals.

  • Contract manufacturing

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"3D Printing Service for Titanium" Anodizing Treatment Polishing

It is possible to create shapes with strength suitable for use in metal parts.

We offer a 3D printing output service for 'titanium powder' using the DMLS method (Direct Metal Laser Sintering). We can create structures with the strength of actual metal parts, and the printed objects can undergo general processing for titanium, such as anodizing. As an option, we can provide color treatments in four colors: matte silver, brass gold, midnight purple, and persian blue. For colors other than silver, anodizing typically takes an additional 1 to 3 days on top of the usual delivery time. 【Features】 Please note that the estimated shipping time may change for multiple parts. The size limit for polishing treatment is within 200×100×100mm. The size limit for anodizing treatment is within 40×40×40mm. If you are interested in mass production, please contact us. *For more details, please inquire.

  • Other metal materials

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[Case Study of Corporate Implementation] Utilizing 3D Printers for Robot Attachments

Utilization of a 3D printer for the attachment and wheel parts of a robot aimed at fully automated fruit cultivation in a plant factory.

We spoke with Mr. Ichikawa from HarvestX Inc., which is engaged in research and development of various robots aimed at fully automated cultivation of fruits in plant factories, contributing to a stable food supply and pioneering the future of agriculture with robots for plant factories. They consulted DMM.make to utilize a 3D printer for the robot's attachments and wheel parts.

  • Other industrial robots

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Collection of case studies on manufacturing methods using 3D printers [Free gift]

This is a collection of case studies featuring manufacturing methods using 3D printers.

This is a collection of case studies featuring manufacturing methods utilizing 3D printers. 【Consultation Details】 ■ TUAT Formula, Tokyo University of Agriculture and Technology They consulted DMM.make to design parts with complex internal structures for a small formula car using 3D CAD data and to incorporate them into the final product using a 3D printer. ■ Kishitec Co., Ltd. They are capable of creating 3D data from clay models and similar shapes, as well as reverse engineering. They handle the creation and output of high-precision models, jigs, measuring instruments, and industrial products. They consulted DMM.make for manufacturing prototypes of bicycle accessories using Jet Fusion. ■ Asmo Co., Ltd. The Panax division of Asmo Co., Ltd. plays a role in the innovative product development of its parent company, Soft99 Corporation, which continually surprises the market. They conduct product design, development, and engineering of resin products. They consulted DMM.make for the modeling from prototypes to final products. *For more details, please download the PDF or contact us.

  • Contract manufacturing

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[Case Study] Contributing to Pediatric Medical Education with Robots Created by 3D Printers

[Case Study] Contributing to Pediatric Medical Education with a Simulator Robot Created Using a 3D Printer

"X-ROID WE CREATE" is a workroid manufacturer that develops a variety of practical robots for medical, disaster rescue, security, and communication purposes. We spoke with Mr. Ishii from Temzack Co., Ltd., who developed the pediatric patient robot "Pedia_Roid" and contributes to the advancement of medical education through simulator robots. This is a case where the use of a 3D printer significantly reduced traditional processes, shortening the construction period by about 3 to 4 months. They consulted DMM.make for the development of pediatric patient robots, which are being expanded not only in Japan but also overseas.

  • Other industrial robots

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[Case Study of Corporate Implementation] A case where the conventional process was reduced, shortening the construction period by 3 to 4 months.

This is an example of significantly reducing traditional processes using a 3D printer, shortening the construction period by about 3 to 4 months.

"X-ROID WE CREATE" is a workroid manufacturer that develops various practical robots for medical, disaster rescue, security, and communication purposes. We spoke with Mr. Ishii from Temzack Co., Ltd., who developed the pediatric patient robot "Pedia_Roid" and contributes to the advancement of medical education through simulator robots. This is a case where the use of a 3D printer significantly reduced traditional processes, shortening the construction period by about 3 to 4 months. They consulted DMM.make for the development of pediatric patient robots, which are being expanded not only in Japan but also overseas. ■ Use Cases We utilize 3D CAD data for a wide range of applications, including extrusion molding, casting, machining, and as alternative methods for injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods.

  • Contract manufacturing

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[Case Study] Utilizing 3D Printers to Transform Complex Internal Structures into Final Products

Using a 3D printer for parts with complex internal structures of small formula cars to create the final product.

We will introduce a case where the fundamental lightweighting and performance improvement of intake components mounted on small formula cars were achieved, along with the manufacturing technology and reliability to realize this. Complex hollow shapes were integrally molded without the use of jigs and utilized as final products. We spoke with TUAT Formula from Tokyo University of Agriculture and Technology, who participates in the "Student Formula Japan Competition" every year. ■Usage Examples We are utilizing 3D CAD data for a wide range of applications, including extrusion molding, casting, machining, and as alternative methods for injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished products.

  • Circuit board design and manufacturing

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[Case Study] Sony Corporation: Metal 3D Printer Used in Design Consideration

Sony Corporation, which is developing the new smart watch "wena 3," utilized a metal 3D printer during the design consideration phase.

We heard from Sony Corporation, which is launching the new smart watch "wena 3," about their use of metal 3D printing during the design consideration phase. The wena series is the third generation of Sony's smart watches, featuring an organic EL display, communication functions, and various sensors integrated into the buckle part of the wristwatch. They shared a design consideration case that utilized titanium. ■Usage Examples 3D CAD data is used for a wide range of applications as an alternative method to extrusion molding, casting, machining, injection molding, and mold and framework, as well as for molding small parts of IoT products and finished goods.

  • Contract manufacturing

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[Case Study] Product Design, Product Development, and Design of Resin Products

We are engaged in product design, product development, and design of resin products. We have consulted on the modeling from prototypes to final products.

We spoke with Mr. Sakaitani from Asmo Co., Ltd., a group company of Soft99 Corporation, which manufactures and sells automotive and household chemical products. The Panax Division of Asmo Co., Ltd. plays a role in the innovative product development of its parent company, Soft99 Corporation, which continually surprises the market. They are involved in product design, development, and engineering of resin products. They consulted with DMM.make for the modeling from prototypes to final products. ■ Use Cases They utilize 3D CAD data for a wide range of applications, including extrusion molding, casting, machining, injection molding, and as alternative methods for molds and formwork, as well as for molding small parts of IoT products and finished goods.

  • others

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[Case Study] Using a 3D printer to iterate prototypes and create the final product.

During the prototyping stage, we used a 3D printer to verify the shape and strength while fabricating the final product with PA12 material.

We spoke with Mr. Kishi, the representative director of Kishitec Co., Ltd., which has been specializing in mechanical design using 3D CAD since its establishment. They are capable of creating 3D data from clay models and similar shapes, as well as reverse engineering, and they produce high-precision models, jigs, measuring instruments, and industrial products from 3D data. They consulted DMM.make for manufacturing using Jet Fusion during the prototyping stage of bicycle accessories. ■ Use Cases 3D CAD data is utilized for a wide range of applications, including as alternative methods for extrusion molding, casting, machining, injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods.

  • others

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[Case Study of Corporate Implementation] Abundant operational experience with 3D printers up to the final product.

Insoles with complex shapes that could not have been created without craftsmen and engineers, in order to solve product development challenges.

We spoke with Mr. Yamakawa from Japan Healthcare Co., Ltd., which sells custom-made insoles produced by a 3D printer using the country's first smartphone! Insoles with complex shapes that could not have been created without artisans or engineers have been developed, and we consulted DMM.make to solve the challenges in product development. ■ Use Cases We are utilizing 3D CAD data for a wide range of applications, including extrusion molding, casting, machining, and as alternative methods for injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods.

  • others

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[Case Study] Biz Station Inc. / More Cost-Effective than Injection Molding

We had a candid conversation with Mr. Yaguchi from Biz Station Inc., who regularly utilizes the DMM.make 3D printing service.

This time, I was surprised to learn that you have utilized 3D printing to this extent during our interview, but I also recognized once again that there are challenges, such as cost issues, that need to be addressed for more people to take advantage of it. As a company, we would like to work on improving these cost-related challenges. If you have any questions or requests regarding the introduction of 3D printers, please feel free to contact us. ■ Use Cases We are utilizing 3D CAD data for a wide range of applications, including extrusion molding, casting, machining, and as alternative methods for injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods.

  • others

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[Case Study] Cost Reduction for Handy Injection Molding Machines

An example of the motivation behind achieving high quality suitable for final products and adopting low-cost 3D printing services.

In this case, we have a challenge where mass production is being considered without using molds. After receiving a quote from DMM.make's service, we decided to adopt it due to the freedom of design and the cost-effective production it offers. DMM.make provides support for companies from prototype modeling and verification to mass production of final products, as well as the introduction of printers. If you have any questions or requests, please feel free to contact us. ■ Use Cases We are utilizing 3D CAD data for a wide range of applications, including as alternative methods for extrusion molding, casting, machining, injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods.

  • others

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[Case Study] Injection molding with high precision for model production has been realized.

Seeking a 3D printer that can achieve injection molding with high precision for mold making.

Considering the limitations of home-use 3D printers and the precision of large sizes, we are considering outsourcing. We conducted an interview with Mr. Nakajima from the Graduate School of Information Science and Technology at the University of Tokyo regarding the introduction of DMM.make 3D printing! During the interview, we heard voices expressing the need for finer precision in the fabrication of large-sized 3D printers. Mr. Nakajima also shared his expectations for the manufacturing industry, which was very informative. If you have any questions or requests regarding the introduction of 3D printers, please feel free to contact us. ■ Use Cases We are utilizing 3D CAD data for a wide range of applications, including extrusion molding, casting, machining, injection molding, and as alternative methods for molds and formwork, as well as for shaping small parts of IoT products and finished goods.

  • others

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[Case Study] A company involved in the design of IoT devices and firmware.

Introducing a case study where MJF (Multi Jet Fusion) was used for prototyping IoT devices.

Introducing a case study of using MJF for prototyping IoT devices by KT-S Co., Ltd. We spoke with Mr. Tanaka, the representative of KT-S Co., Ltd., which specializes in the mechanical design and development of IoT devices, Bluetooth circuit boards, and plastic products. They have worked on products that have won the Good Design Award and excel in the development of plastic products, firmware development, and project direction. He shared a case study of using MJF (Multi Jet Fusion) for prototyping IoT devices. ■ Usage Case MJF is utilized in a wide range of applications as an alternative method for extrusion molding, casting, machining, injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods using 3D CAD data.

  • others

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3D Printing Material: PP (SLS)

It is flexible and has high strength, with excellent toughness and chemical resistance. Due to the large work size, it is possible to create large parts as a whole without splitting them.

Preferred Genre → Industrial mockups Color → Yellowish white Price Range Estimate → Low Texture → Rough Hollow Structure → Possible. However, a hole with a diameter of at least 5mm is required to remove the material. Please also be aware that even if there is a hole, it may not be possible to manufacture due to the model's structure. Maximum Size That Can Be Formed → 480mm (height) × 480mm (width) × 400mm (depth)

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[3D Printing Material] NXE400 with support removal available

We are pleased to announce that we have started a service to remove NXE400 support in response to our customers' requests.

The NXE400 is a printer that achieves ultra-fast molding through its proprietary LSPc technology. The lubricant sublayer photopolymerization technology (LSPc) suppresses the sticking of the molded object to the tray. By creating a uniform light source, areas away from the center of the light source are free from distortion, allowing for uniform quality and precision across all parts of the build platform. ■ Use Cases It is used for a wide range of applications, including extrusion molding, casting, machining, and as an alternative method for injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished products using 3D CAD data.

  • others

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3D printing material "Rubber-like"

It is suitable for the production of prototypes of industrial parts and silicone products. It can be manufactured directly from data and is suitable for the production of final products.

It is a soft rubber-like or silicone-like material with a Shore A hardness of 50A, outputted from Form3. It is resistant to bending, stretching, and compression, and can return to its original shape without cracking even under those conditions. It is widely used for prototypes of silicone parts, shock-absorbing components, jigs for workpieces, end effectors for pick-and-place robots, and prototypes of wearable devices. It is produced using the LFS method, which is a high-quality printing method within SLA, with a layer pitch of 0.1mm, resulting in a smooth surface finish with less noticeable layering.

  • others

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NXE400xABS (Black) PP-like (translucent) material added

Delivery in as little as 2 days! Achieve ultra-fast modeling at a reasonable price.

The NXE400, which achieves ultra-fast molding at a reasonable price through LSPc technology, operates at six times the speed and 2.5 times the volume of other comparable stereolithography 3D printers on the market. It can continuously print parts of up to 16 liters at a maximum speed of 1 Z centimeter per minute. In addition to xGPP material (gray), the DMM.make 3D printing service has added xABS (black) and PP-like material (translucent). The molded products can be utilized for industrial applications and are also suitable for products and mock-ups, making them useful as marketing tools. Due to the fast molding speed, we can deliver relatively quickly compared to other materials we handle. The parts are molded with a layer pitch of 0.1mm. When placing an order, you can choose between standard processing (with support) and support removal. The NXE400 provides physical support, so it cannot create interlinked parts. ■ Use Cases It is widely used for extrusion molding, casting, machining, as an alternative method for injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished products using 3D CAD data.

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Ultra-fast 3D printer 'Nexa3D NXE400'

Achieving high-speed molding of up to 1 cm per minute! Suitable for various applications such as prototypes and industrial products.

The "Nexa3D NXE400" is a 3D printer that achieves high-speed and high-precision molding of up to 1 cm per minute through its unique Lubricant Sub-layer Photocuring technology (LSPc). It offers four types of materials, including those for high-speed printing, materials with high water resistance, and materials with strength equivalent to ABS. It is suitable for various applications, including mock-ups, prototypes, and industrial products. ■ Use Cases It is utilized for a wide range of applications, including as an alternative method for extrusion molding, casting, machining, injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods using 3D CAD data. DMM.make also accepts commissioned molding using this printer.

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3D Print Material Sample 'Titanium Plate'

Unpolished titanium material. The characteristics of the material are evident as the holes and thickness change every 1mm.

The 3D print material sample "Titanium Plate" is a scale sample that shows the thickness. It is made of unpolished titanium material. To highlight the characteristics of the material, the holes and thickness change every 1mm. It serves as a reference when creating models and accessories. 【Features】 ■ Material sample ■ Unpolished titanium material ■ Holes and thickness change every 1mm ■ Size X: 55.003mm × Y: 15mm × Z: 5.8mm *For more details, please refer to the PDF document or feel free to contact us. ■ Use Cases It is widely used in various applications as an alternative method for extrusion molding, casting, machining, injection molding, molds, and formwork, as well as for shaping small parts of IoT products and finished goods using 3D CAD data.

  • Other contract services

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3D Print Material Sample 'Titanium (Polished) Plate'

Titanium material after barrel polishing. The surface and edge wear of the material after polishing can be observed.

The 3D printed material sample "Titanium (Polished) Plate" is a scale sample that shows the thickness. This is titanium material after barrel polishing. You can see the surface and edge finishing of the material after polishing. The holes and thickness change every 1mm, making it useful as a reference when creating models or accessories. 【Features】 ■ Material sample ■ Titanium material after barrel polishing ■ Surface and edge finishing of the material after polishing can be confirmed ■ Holes and thickness change every 1mm ■ Size X: 55.003mm × Y: 15mm × Z: 5.8mm *For more details, please refer to the PDF document or feel free to contact us. ■ Use Cases Used in a wide range of applications as an alternative method for extrusion molding, casting, machining, injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods using 3D CAD data.

  • Other contract services

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[Free Sample Available] PA12 | SLS Color Polishing Sample Set

Nylon material after barrel polishing. You can also check the color after dyeing.

DMM.make has been providing services since the dawn of 3D printing technology's arrival in Japan. We promise to support you in realizing your ideas. First, we will discuss your intended use, requests, and budget during a meeting, and we will also deliver samples for free. Please feel free to contact us. The samples introduced on this page are scale samples that show thickness. Nylon material after barrel polishing. You can see the surface and edge finishing of the material after polishing. Additionally, you can check the colors after dyeing. The holes and thickness change every 1mm, making it useful as a reference when creating models or accessories. 【Features】 ■ Material sample ■ Nylon material after barrel polishing ■ Surface and edge finishing of the material after polishing can be confirmed ■ Holes and thickness change every 1mm ■ Size X: 55.003mm × Y: 15mm × Z: 5.8mm *For more details, please refer to the PDF document or feel free to contact us. ■ Use Cases We utilize 3D CAD data for a wide range of applications, including as alternative methods for extrusion molding, casting, machining, injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods.

  • Other contract services

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[Free Sample Available] 3D Print Material 'Color Plate Set'

Reference for creating models and accessories! Color plate set.

DMM.make has been providing services since the dawn of 3D printing technology in Japan. We promise to support you in realizing your ideas. First, we will discuss your intended use, requests, and budget in a meeting, and we will also provide samples free of charge. Please feel free to contact us. The scale sample introduced on this page shows thickness. Full-color plastic, J750 multi-material plate. To highlight the characteristics of the material, the holes and thickness change every 1mm. This is useful as a reference when creating models and accessories. [Features] ■ Material sample ■ Holes and thickness change every 1mm ■ Size X: 100mm × Y: 100mm × Z: 100mm *For more details, please refer to the PDF document or feel free to contact us. ■ Use Cases We utilize 3D CAD data for a wide range of applications, including as alternative methods for extrusion molding, casting, machining, injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods.

  • Other contract services

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[Free Sample] 3D Print Material 'PA12GB (MJF) Set'

You can see the wear on the surface and edges of the material after grinding! Use it as a reference when creating models!

The 3D printed material sample "PA12GB (MJF) Plate Set" is a scale sample that shows the thickness. It is made of PA12GB (MJF) material, available in four types: untreated, graphite finish, black, and black (barrel polished). You can check the surface and edge finish of the material after polishing. The holes and thickness change every 1mm, making it useful as a reference when creating models. 【Features】 ■ Material sample ■ PA12GB (MJF) material ■ Surface and edge finish can be checked after polishing ■ Holes and thickness change every 1mm ■ Size X:100mm × Y:100mm × Z:100mm *For more details, please refer to the PDF document or feel free to contact us. ■ Use Cases It is widely used in various applications as an alternative method for extrusion molding, casting, machining, injection molding, molds, and formwork, as well as for molding small parts of IoT products and finished goods using 3D CAD data.

  • Other contract services

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