We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for 3D printer.
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3D printer Product List and Ranking from 287 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 18, 2026~Mar 17, 2026
This ranking is based on the number of page views on our site.

3D printer Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 18, 2026~Mar 17, 2026
This ranking is based on the number of page views on our site.

  1. システムクリエイト Osaka//Industrial Machinery
  2. グーテンベルク Tokyo//Industrial Machinery
  3. 日本積層造形 Miyagi//Manufacturing and processing contract
  4. 4 null/null
  5. 5 ホッティーポリマー Tokyo//Resin/Plastic

3D printer Product ranking

Last Updated: Aggregation Period:Feb 18, 2026~Mar 17, 2026
This ranking is based on the number of page views on our site.

  1. Light Stereolithography 3D Printer 'Form 4' システムクリエイト
  2. I measured the dimensions of the work created at each position! システムクリエイト
  3. Mitarepo: Challenging the limits of thin-walled reproduction with a powder sintering 3D printer! システムクリエイト
  4. 4 Mitarepo [102] Verification of how far powder removal and polishing can be achieved through automatic processing. システムクリエイト
  5. 5 I tried making a prototype with support-less modeling! システムクリエイト

3D printer Product List

451~480 item / All 885 items

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Dictop 3D Printer Value3DMagix MF-900

Equipped with an independent dual head. A standard model that can also use carbon fiber-infused filament.

【Features】 1. Dual Head: Equipped with dual heads that operate independently. Can be used according to purpose. 2. Compatible with carbon fiber-infused filament. 3. High-resolution print head with a nozzle diameter of 0.2mm. 4. Easy operation with a touch panel. 5. Calibration to correct table distortion. ■ For inquiries Marble Co., Ltd. Embedded Products Division, Product Business Department Phone: (03) 3419-6011

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A small high-resolution high-speed edible printer that can print on sweets and cakes.

High-quality, high-speed full-color compact edible ink food printer NE-200H, ideal for small businesses due to its easy operation and minimal size.

The maximum print area is A4 size, 210X297mm. It is possible to print on food items ranging from cookies to macarons with a thickness of 90mm. By printing on edible sheets and placing them on cakes, photo cakes can also be created. The electric actuator drive system allows for more stable printing. It comes standard with "Label Mighty," which makes layout easy for anyone. The ink is the industry's first cartridge type, ensuring that no bacteria or viruses can enter, making it very hygienic. Ink refilling is unnecessary, and it can be easily replaced without getting hands dirty. There is also less nozzle clogging, significantly reducing consumption during cleaning.

  • Food Processing Equipment
  • 3D printer

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High-quality, high-speed edible printer for medium-sized stores that can print on sweets and cakes.

High-quality, high-speed full-color compact edible ink food printer NE-420F, capable of printing one tray in one minute. Perfect for medium-sized stores!

The maximum print area is 420X420mm. Equipped with a dedicated large head, it achieves high-speed printing at maximum size in the standard mode, which is most commonly used by users, in about one minute. It supports a wide variety of small to large lots, with processing capabilities 2 to 3 times greater than competing products in the same class. Its easy operation allows for high-speed production, making it ideal for medium-sized stores. The operation screen features a 7-inch LCD touch panel, enabling easy operation for checking ink levels, cleaning, and ink flushing without the need for a computer. With an easy-to-understand button layout, even beginners can use it easily from the first day of introduction. Users can check ink usage, allowing for management of ink costs. The often-forgotten waste liquid can also be displayed on the screen, eliminating concerns about ink leakage. The new mode CR Maintenance is equipped, allowing the head to automatically move to a designated position during maintenance, making it easy for anyone to perform maintenance. A dedicated driver is included, allowing settings such as ink volume tailored to specific candies to be saved as "favorites," with easy adjustments of ink volume from 1% to 100%. A dedicated mode suitable for printing on uneven-surfaced candies is also set within the driver. The ink comes in large-capacity 200ml cartridges, preventing the entry of bacteria and viruses, ensuring high hygiene standards.

  • Food Processing Equipment
  • 3D printer

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High-quality, high-speed edible printer for small to medium-sized stores that can print on sweets and cakes.

Ideal for small to medium-sized stores! High-quality, high-speed full-color compact edible food printer NE-300H that can print one side of an A3 size tray in 48 seconds.

The maximum print area is 297X420mm. It can print A3 size in just 48 seconds. It supports a wide variety of small to large lots, with processing capabilities 2 to 3 times that of competitors in the same class. Its easy operation allows for high-speed production, making it ideal for medium to small-sized stores. The operation screen uses a liquid crystal touch panel, allowing for easy management of ink levels, cleaning, and ink washing without the need for a computer. The user-friendly button layout makes it easy for beginners to use from the first day of introduction. You can check ink usage, enabling management of ink costs. The often-forgotten waste liquid can also be displayed on the screen, eliminating concerns about ink leakage. It features a new mode called CR Maintenance, which automatically moves the head to a fixed position during maintenance, making it easy for anyone to perform maintenance. It comes with a dedicated driver that allows settings such as ink quantity tailored to specific candies to be saved as "favorites," with easy adjustments from 1% to 100%. There is also a dedicated mode within the driver suitable for printing on uneven candy surfaces. The ink comes in large-capacity 200ml cartridges, preventing the entry of bacteria and viruses, ensuring high hygiene standards.

  • Food Processing Equipment
  • 3D printer

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2D imager scanner "MS282e"

Diverse scanning modes! A two-dimensional barcode scanner that can be used in a wide range of markets and applications.

The MS282e is a compact, stylish, and robust entry-level 2D imager scanner designed for long-term use. It features IP42 protection against moisture and dust, and can withstand drops from 1.5 meters, making it suitable for industrial applications. It can be used across a wide range of markets and applications, from POS systems, point cards, and mobile coupons in retail stores to hospitals and pharmacies. 【Features】 - Compact and lightweight - Reads most 1D and 2D barcodes - Reads barcodes from mobile device LCD screens - Durable and sturdy scanner: IP42, drop resistance: 1.5m - Long-lasting trigger switch: 10 million activations - Various scanning modes *For more details, please refer to the related link page or feel free to contact us.

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  • Handheld barcode reader
  • Scanner
  • 2D Code Reader
  • 3D printer

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Super Economy 2D Imager Scanner 'MS838'

Convenient plug-and-play design! An ideal scanning tool suitable for a wide range of applications such as POS, membership card reading, and inventory management.

The MS838 is a 2D imager scanner capable of reading damaged or poorly printed barcodes. It can be easily connected to a computer via a USB cable. There is no need for additional installation or training, allowing for immediate use. It has the capability to read barcodes as small as 3 mil (0.0762 mm), making it ideal for various industrial applications in retail stores, supermarkets, pharmacies, and hotels. 【Features】 - Highly reliable, high performance, and affordable - Quickly reads 1D and 2D barcodes printed on paper or displayed on LCD screens - Supports trigger mode and presentation mode - Durable design: withstands drops from 1.5 meters and has IP52 dust and water resistance *For more details, please refer to the related link page or feel free to contact us.

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  • Handheld barcode reader
  • PDAs and handheld terminals
  • Other packaging materials
  • 3D printer

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Metal and ceramics 3D printer, topology optimization, BIM/CIM

Provision of information on cutting-edge technology

We will provide a detailed explanation of the latest trends and innovative application technologies and examples related to metal 3D printers, ceramics 3D printers, topology optimization, generative design, DfAM, BIM/CIM, i-Construction, and more.

  • Technical Seminar
  • 3D printer

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FUNMAT HT

Industrial 3D printer compatible with super engineering plastics. For the production of functional parts and material research and development purposes.

The "FUNMAT" series of 3D printers that can use "super engineering plastics" (super engineering plastics) with particularly excellent performance among engineering plastics. The FUNMAT HT is the most compact desktop 3D printer in the FUNMAT series. The FUNMAT series is developed by the 3D printer manufacturer "INTAMSYS," specializing in high-performance engineering plastic 3D printing. It is an FDM 3D printer designed for the use of super engineering plastics, capable of stably printing not only super engineering plastics but also large engineering plastics that have been difficult to print due to thermal shrinkage and distortion, making it a high-performance 3D printer. It is active in various industrial scenes such as aerospace, research and development, medical, and automotive industries. *For more details, please refer to the PDF document or feel free to contact us.

  • 3D Printer
  • 3D printer

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On-site partial plating repair, on-site plating repair.

More about changing clothes than replacing! Cost-cutting with partial plating repairs.

In metal wear and scratch repairs, methods such as welding and thermal spraying are used. While the speed of buildup is fast, there is a possibility of distortion due to heat. Our partial plating does not involve heat, so there is no occurrence of distortion from heat. However, since the buildup speed is faster with welding and thermal spraying, in cases of deep scratches, buildup can be done with plating, but it may take longer than welding. Additionally, there are various applications, such as wanting to plate only a specific area (for example, the handrail of a hotel staircase where the plating has worn off, and only that part needs to be plated).

  • Printing Machinery
  • Other services
  • 3D printer

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On-site plating construction "Repair Top Process"

Various metals such as copper, nickel, zinc, and cobalt can be built up! A process that allows plating over chrome plating.

The "Repair Top Process" is a method that allows for partial plating repairs on-site without the use of a plating bath. It can be applied without disassembling or removing machine parts. Additionally, compared to bath plating, the electrodeposition speed is faster, and thermal distortion does not occur. The metals that can be built up include copper, nickel, zinc, cobalt, gold, and silver, with applicable examples such as the repair of sliding scratches on hydraulic cylinder rods. 【Features】 ■ No thermal distortion occurs ■ Faster electrodeposition speed compared to bath plating ■ The electrodeposited film is amorphous ■ Plating can be done over chrome plating ■ Can be applied without disassembling or removing machine parts *For more details, please refer to the PDF materials or feel free to contact us.

  • Surface treatment contract service
  • 3D printer

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3D printer slicing software 'Simplify3D'

This is slicing software for melt-deposition 3D printers. With high-speed calculations and high-performance path functions, you can quickly start high-quality modeling. *Demo available.

"Simplify3D" is a cost-effective software that incorporates many features necessary for Fused Deposition Modeling (FDM) 3D printers. You can start 3D printing in just a few minutes, from import to operation, modification, slicing, and preview. [Features] ■ Achieves high-quality modeling High-performance path functions enable precise modeling. The support surfaces securely hold the model while being easy to remove, and the removed surfaces have a smooth finish, reducing the need for post-processing. ■ Reduces wasted time in conversion with high-speed calculations The slicing calculation speed is top-level, allowing for the creation of high-quality slice data in just a few seconds, even for what typically takes several minutes. ■ Usable with any FDM 3D printer You can freely set the build area and nozzle temperature, so it is not limited to specific models as long as it is an FDM 3D printer. If you are not satisfied with the build quality from the included software, please consider this option. *For more details, please request a catalog or view the PDF data from the download button below.

  • 3D Printer
  • Modeler
  • simulator
  • 3D printer

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In-house Implementation Case Study Book for [Cutting, Shaping, UV Printing]

A booklet of success stories from 10 companies that achieved in-house production of prototype creation, jig manufacturing, and decorative printing on products.

This is a booklet of success stories featuring 10 companies that have implemented the "MDX Series," "SRM-20," "ARM-10," and "LEF Series," achieving in-house production of cutting, shaping, and UV printing.

  • Other machine tools
  • Other processing machines
  • Other CAD related software
  • 3D printer

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Problem-Solving Materials: Productivity Improvement Edition 5 | Challenges and Solutions for Small-Batch, Multi-Variety Processing

What are the key points and effective methods to improve productivity in low-volume, multi-variety production? A resource for identifying 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 "Productivity Improvement Edition," we offer solutions aimed at enhancing productivity by streamlining various manufacturing processes and reducing man-hours and costs. In this document, we will introduce key points and effective methods for improving productivity, focusing on the theme of "Enhancing Productivity in Low-Volume, High-Variety Production." [Document Overview] In order to enhance corporate value and differentiate from competitors, it is becoming increasingly difficult to simply implement CAD/CAM and aim for quality improvement. More customers are responding to customer needs by accommodating low-volume production, but many are facing various challenges such as shortening delivery times and reviewing costs. This document summarizes the challenges and factors associated with low-volume processing and presents methods for improving setup processes. *You can download the document using the button below.*

  • Milling machine
  • Other machine tools
  • Milling
  • 3D printer

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Problem-Solving Materials: Utilizing 3D Data 14 | Lightweighting of 3D Printed Models

Challenges of large-scale 3D printers: How to achieve both lightweight design models and model strength? A resource for identifying and solving issues 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. [Document Overview] In recent years, the proliferation of 3D printers has advanced explosively. In particular, FDM (Fused Deposition Modeling) 3D printers have become more affordable and capable of producing larger models, leading to widespread use among many companies. The introduction of large machines has made it possible to produce models that were previously made in parts all at once, thereby reducing labor hours. However, the increase in production time and weight has become a challenge for large-scale printing, and as the size of printed objects increases, it is necessary to adjust the data to achieve a balance between lightweight design and strength. In this document, we will specifically introduce methods to achieve both lightweighting and strength maintenance, which are challenges in large-scale printing. *You can download the document using the button below.*

  • 3D Printer
  • Other consumables
  • plastic
  • 3D printer

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I tried out the expression of fine details in Form3!

How beautiful can a light curing 3D printer get? We tested its ability to express fine details!

"Mitarepo" is a series based on the concept of "I tried doing this!" where we introduce what can be done using various products. Each time, we deliver useful information from the wide range of product genres handled by System Create. The theme of Vol. 3 is "Trying the expressive power of fine details with Form3 Model Resin!" This time, we tested how beautifully the Form3 dedicated resin "Model Resin," which can reproduce fine details, can create shapes. In the materials, we compared the reproducibility of details and the workability of finishing processes by creating the same data under the same conditions using the widely used "Standard Resin." - Even if it can be beautifully shaped, does the finishing process become even more troublesome? - Does beautiful shaping mean higher costs? We explain these concerns with comments from technical staff and actual screens. *You can download the materials from the button below.

  • Other CAD related software
  • Data conversion software
  • Document and Data Management
  • 3D printer

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Carbon 3D Printer "Anisoprint Composer"

This is a 3D printer capable of using continuous carbon fiber composite materials. It reinforces the interior of models with proprietary technology, achieving high strength and lightweight. *Demo available.

The "Anisoprint Composer" series is a 3D printer that uses continuous fibers (carbon/basalt) to easily create high-strength and lightweight models. By adopting unique technology, it maximizes the "anisotropy" inherent in continuous fibers. [Features] ■ "CFC" for simultaneous extrusion of resin and continuous fibers By employing the unique technology "CFC (Composite Fiber Co-Extrusion)," it combines continuous fiber materials and resin materials within the 3D printer. By printing the base and surface of the model with resin and reinforcing the interior with fiber composite materials, it significantly enhances the strength of the model. ■ Ability to create lattice structures with fiber composites It allows the use of lattice shapes made from continuous fibers, enabling models to utilize "anisotropy," which exhibits very high tensile strength and bending strength in the direction of applied loads. ■ Compatible with various resins In addition to genuine PA (nylon), it can use resin filaments from various manufacturers. Materials can be selected according to the desired finish and characteristics of the model. *For more details, please request a catalog or view the PDF data via the download button below.

  • 3D Printer
  • Composite Materials
  • plastic
  • 3D printer

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Problem-Solving Materials: Utilizing 3D Data 16 | Strength of FDM Printed Models

How to incorporate "carbon materials" to solve the strength issues of 3D printers? A resource for identifying 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. [Document Overview] Among 3D printers, FDM (Fused Deposition Modeling) machines are easy to use and implement, and they have become widespread in many production sites. In recent years, elements that were considered weaknesses of FDM, such as the variety of materials and improvements in model quality, have gradually been addressed. However, the challenge posed by FDM technology is the "insufficient strength of printed models." This document compiles the issue of strength deficiency that most FDM 3D printers face and explains the advantages of carbon materials with "continuous fibers." Additionally, we will introduce 3D printers that adopt a unique printing method based on FDM. *You can download the document using the button below.

  • 3D Printer
  • fiber
  • Composite Materials
  • 3D printer

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FDM method 3D printer "CreatBot" series

A 3D printer with ideal specifications required for stable modeling. It achieves reliable modeling with comprehensive standard equipment. *Demonstration available.

The CreatBot series includes six models: the "D1000 HS" and "D600 Pro2 HS," which have large build areas, and the "F430," "PEEK-250," "PEEK-300," and "F160-PEEK," which can use special materials and super engineering plastics. You can choose the optimal 3D printer according to your purpose and needs. [Features] ■ Equipped with a high-temperature nozzle that can handle up to 420℃ With dual nozzles of 420℃ and 260℃, it is possible to combine prints. (PEEK-300 can reach up to 480℃) ■ Table & chamber heater to manage internal temperature By thoroughly controlling the internal temperature, it maintains a uniform temperature throughout the entire model. It can also prevent the effects of changes in indoor temperature, which are easily influenced. ■ Auto-leveling function that keeps the distance between the table and nozzle constant By maintaining a constant distance between the nozzle and the build table, it enables uniform layering and achieves stable printing. You can feel secure even with large prints that take a long time. *The features vary by model. *For more details, please refer to the PDF data available via the download button below.

  • 3D Printer
  • 3D printer

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I tried out the cost reduction effects of supportless modeling!

[Mitarepo] Tried the cost reduction effects of support-free powder molding! [Low-cost powder molding 3D printer LISA-PRO]

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" From the wide range of product categories handled by System Create, we deliver useful information each time. The theme of Vol. 11 is "We examined the operational effects of support-free 3D printing using powder 3D printers!" It has become common knowledge that "support is necessary" for 3D printing. But don't you think that if 3D printing could be done without support, it could reduce costs? This time, we actually performed support-free printing with a powder sintering 3D printer and carried out post-processing, examining the advantages of support-free printing, such as "ease of post-processing," "cost reduction," and "print quality." "After all, doesn't surface treatment take a lot of effort?" "Isn't the cost difference between having support and not having it negligible?" "Will the roughness of the powder compromise quality?" We will explain these concerns regarding "operational effects" along with actual images and comments from our technical staff! *You can download the materials from the button below.

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

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Mita Repo: How much high temperature can heat-resistant materials for 3D printers withstand?

【Mitarepo】How high a temperature can 3D printer materials withstand? We tested it with the 'Form 3'!

"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 categories handled by System Create. The theme of Vol. 21 is "How high of a temperature can heat-resistant materials for 3D printers withstand?" This time, we used the heat-resistant material HTM from the light-curing 3D printer "Form 3" to create a plate and tested how much high temperature it can endure. The materials will examine differences in deformation due to thickness, how soft it becomes after being heated for a certain period, and whether deformation occurs when actually bent. "Even though it's called heat-resistant, isn't the temperature not that high since it's a 3D printer material?" "The load deflection temperature in the material property table makes it hard to understand the actual heat resistance!" We will explain the "usable temperature" concerning heat-resistant model production, along with photos of the work process and results, as well as comments from the technical staff! *You can download the materials from the button below.

  • 3D Printer
  • Resin processing machine
  • plastic
  • 3D printer

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I tried investigating Form3 high-speed material draft resin!

【Mitarepo】Form 3 / Dramatic reduction in modeling time! We thoroughly investigated whether it really becomes one-third!

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" We will deliver useful information each time from the wide range of product genres handled by System Create. The theme of Vol. 22 is "Thorough Investigation of the High-Speed Draft Resin for Form 3!" This time, we used the high-speed draft resin capable of rapid printing with the light-curing 3D printer "Form 3" to investigate how much time can actually be saved. We printed both the high-speed draft resin (layer pitch 200/100μm) and the standard resin (gray/layer pitch 100μm) and compared the required printing times. We will examine and explain the two features that enable high-speed printing: "large layer pitch" and "short curing time." "How fast can high-speed materials be printed?" "Why is it faster than other materials?" We will provide explanations along with actual model images of the draft resin and verification data on printing times. *You can download the materials from the button below.

  • 3D Printer
  • plastic
  • Prototype Services
  • 3D printer

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Powder Sintering Method 3D Printer 'Fuse 1+ 30W'

A highly versatile SLS (Selective Laser Sintering) system that balances ease of use and quality. Anyone can achieve high-quality modeling. *Demonstrations available.

The "Fuse 1+ 30W" is a powder sintering (SLS) 3D printer from Formlabs (powder 3D printer). It condenses a technology that was mainly high-end and expensive into a compact size, achieving both ease of use and quality. [Features] ■ Packaged Forming System The packaged forming system, enabled by the collaborative operation of the Fuse 1+ 30W and Fuse Sift, allows for efficient and clean operation. ■ Easy Operation for Anyone By loading data into the included software "PreForm," you can simply select the material and determine the model's layout to prepare for printing. ■ New Design Material That Does Not Require Nitrogen The specially designed powder material achieves high quality while maintaining material properties without the need for nitrogen. ■ No Support Needed, Reducing Costs and Time Un-sintered powder supports the model, eliminating the need for support material that would otherwise have to be discarded. ■ An Ecosystem with Virtually Zero Waste By mixing approximately 30% of new powder with un-sintered powder, it can be used as recycled powder. *Please view the PDF data from the download button below.

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  • 3D Printer
  • 3D printer

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Problem-Solving Materials 3D Data Utilization Edition 20 | 3D Printing of Soft Materials

Cost challenges resolved with large 3D printers! How to reduce costs associated with creating large models? A resource for identifying and solving issues in production sites.

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. [Document Overview] As the performance of FDM 3D printers improves, not only the main material PLA but also functional materials such as heat-resistant and high-strength resins have increased. One of these is "soft materials." However, soft materials tend to clog near the print nozzle, and many models cannot print them, making FDM 3D printers generally considered "not good with soft materials." In this document, we will explain the factors that make FDM printers struggle with soft materials, along with the structure of 3D printers, and introduce 3D printers that can resolve these issues. *You can download the document using the button below.

  • 3D Printer
  • Rubber
  • Other polymer materials
  • 3D printer

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I tried making a lightweight and strong model with Form 3/3L!

【Mitarepo】Model weight reduction and strength enhancement with Form 3L × Form 3! We tried improving it into a more functional model!

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" From the wide range of product categories handled by System Create, we deliver useful information each time. The theme of Vol.36 is "We tried enhancing the functionality of the model using a combination of Form 3 and 3L!" In the previously introduced Vol.33, we created a model of a magic hand using Form 3L. However, when we actually assembled the model, we discovered issues such as "the main body is heavy" and "the parts lack strength." Therefore, this time we challenged ourselves to improve functionality through weight reduction and strength enhancement. For the magic hand data, we made two changes: - Main body: Weight reduction through hollowing - Parts: Increased toughness using Tough 2000 resin We printed each using Form 3L and Form 3. "Is it possible to create hollow models with the light curing method?" "What does it look like to combine two models?" We will explain the actual verification process along with comments from our technical staff. *You can download the materials from the button below.

  • 3D Printer
  • 3D CAD
  • plastic
  • 3D printer

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How much can we reduce the weight just by changing the materials?

[Mitarepo] Challenging lightweight 3D printing! We tested how much we could reduce weight just by changing the materials!

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" From the wide range of product genres handled by System Create, we deliver useful information each time. The theme of Vol. 37 is "How much can we reduce weight just by changing materials?" Various types of materials for FDM 3D printers have started to be sold and utilized. Our company also handles a number of materials, but at one point, while going through the TDS, I noticed the "specific gravity" section and suddenly thought, "Wouldn't the weight change if we change the material for the same model?" In this document, we created the same flat model using PLA, which is commonly used in FDM 3D printing, and carbon fiber reinforced nylon material PA12-CF, which has a lower specific gravity than PLA according to the TDS. *You can download the document from the button below.

  • 3D Printer
  • plastic
  • Other polymer materials
  • 3D printer

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Mitarepo[38] How far can powder 3D printers go in fine expression?

[Review] How capable is the powder sintering 3D printer "Fuse1" in expressing fine details? We tried creating a dinosaur skull!

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" We deliver helpful information each time from the wide range of product categories handled by System Create. The theme of Vol. 38 is "How finely can powder sintering 3D printers express shapes?" In the materials, we create a detailed model of a Tyrannosaurus skull using the powder material "Nylon 12" from the powder sintering 3D printer "Fuse 1," based on CT scan data. We are testing how finely detailed shapes can be reproduced, including the fine surface textures, small protrusions like teeth, and the complex arrangement of small bones inside the skull. Additionally, we are challenging the expression of raised and recessed lettering as one aspect of detail representation. "Isn't it impossible to achieve fine expressions because the powder is sintered and solidified?" "Even if fine shapes can be reproduced, won't they break?" We will explain these points of concern and verification regarding the use of 3D printers, along with comments from our technical staff. *You can download the materials from the button below.

  • 3D Printer
  • Resin processing machine
  • plastic
  • 3D printer

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I tried creating a test piece with Fuse1+30W!

【Mitarepo】I tried creating a test piece with Fuse 1 + 30W!

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" We will deliver useful information each time from the wide range of product genres handled by System Create. The theme of Vol. 49 is "We tried creating a test piece with Fuse 1 + 30W!" In July, the "Fuse 1 + 30W," equipped with high-output laser and nitrogen filling capabilities, and capable of using high-performance materials with excellent rigidity and strength, was announced as a new addition to the Fuse 1 series. Since then, we have received many inquiries. The first unit of the "Fuse 1 + 30W" has arrived at our company. This time, we will conduct setup, various operation checks, test piece creation, and dimensional reproducibility verification in accordance with the inspection process we carry out for each "Fuse 1" upon arrival. We will explain questions and concerns about the new product, such as "What is different from Fuse 1?" and "Are there differences in operation and print quality?" along with images and measurement results. *You can download the materials from the button below.

  • 3D Printer
  • plastic
  • Prototype Services
  • 3D printer

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I tried FDM printing with a carbon printer.

[Mitarepo] Testing the potential of a carbon composite 3D printer! Tried FDM printing using only PLA! | System Create

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" We will deliver useful information each time from the wide range of product genres handled by System Create. In Vol. 51, we tested what kind of precision models can be created with PLA printing using the "Anisoprint Composer." The "Anisoprint Composer" is a composite 3D printer that can create models while incorporating carbon fibers. The ability to freely add carbon is attractive, but its frequency of use varies depending on the model's application and cost conditions. There may be those who want to include carbon at critical times but prefer to mainly use general-purpose resin on a daily basis...! Therefore, we conducted printing with PLA to verify what kind of precision models can be created. "Can it be printed beautifully?" "Is there a difference in the models compared to other FDM machines?" We will explain the finishing of the models along with actual images and dimensional measurement results. *You can download the materials from the button below.

  • 3D Printer
  • plastic
  • Composite Materials
  • 3D printer

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I tried painting a model made with Nylon 12!

"Can beautiful painting be done on sculptures?! We tried painting on 'Fuse1' nylon 12!" | System Create

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" From the wide range of product genres handled by System Create, we deliver useful information each time. In Vol. 52, we painted a model made of nylon 12 using the powder sintering layered 3D printer "Fuse 1." The "Fuse 1," a powder sintering 3D printer, is highly functional and can be utilized in various scenes. It seems that there are increasing cases where prototypes are not only created for shape confirmation but are also actually incorporated as parts, leveraging their characteristics. In this context, we have received requests to paint models used in proposals and presentations to clarify the feel and completion image. Therefore, this time, we painted a sample of nylon 12 printed with the Fuse 1. "Can I paint it as I imagined?" "What will the texture be like?" We will explain the painting process and the product's texture along with images, addressing any questions or concerns. *You can download the materials from the button below.

  • 3D Printer
  • plastic
  • Prototype Services
  • 3D printer

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I tried creating a new material with Fuse 1 +30W!

[Mita Repo] Tried 3D printing the new powdered material 'Nylon 11CF' blended with carbon fiber using Fuse 1+ 30W! | System Create

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" From the wide range of product genres handled by System Create, we deliver useful information each time. In Vol. 54, we created test pieces using the new material "Nylon 11CF" for the SLS 3D printer "Fuse 1 +30W" and examined its dimensional reproducibility. Carbon fiber reinforced resin, which achieves excellent strength and heat resistance while being lightweight, is utilized in various applications across industries and is also expanding in the 3D printing industry. In this context, Formlabs announced the carbon fiber reinforced material "Nylon 11CF" as a new material for the SLS 3D printer "Fuse 1 +30W." Therefore, we quickly created test pieces used for inspection upon arrival. Are there differences compared to other materials? How accurately can dimensions be reproduced? We explain questions and points of interest regarding Nylon 11CF, along with images and measurement results. *You can download the materials from the button below.

  • 3D Printer
  • plastic
  • Composite Materials
  • 3D printer

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