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3D Printing Corporation

EstablishmentFebruary 29, 2016
number of employees24
addressKanagawa/Tsurumi-ku, Yokohama-shi/75-1 Ono Town, LVP1-101
phone0120-987-742
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last updated:Oct 29, 2024
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3D Printing Corporation List of Products and Services

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Large pellet-type 3D printer, WASP 3MT HDP

It is now possible to create products from ocean waste and discarded plastic.

The WASP 3MT HDP is a large-scale 3D printer capable of producing objects with a diameter of 1 meter and a height of 1 meter, making it particularly suitable for manufacturing in architecture, large furniture, machine parts, and complex structures. It supports a wide range of materials, from general-purpose plastics to recycled materials and marine debris, promoting sustainable product development. The WASP 3MT HDP offers high precision while maintaining a large build area, making it an ideal 3D printer that balances environmental considerations with performance. Our factory provides a valuable opportunity to experience actual machine displays and handle parts that have been produced. Please apply if you are interested. - Apply here: https://www.3dpc.co.jp/factory-tour

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Filament manufacturing machine, 3devo TWO Fusion

An environmentally friendly ecosystem that completes everything in-house, from filament production to recycling.

TWO Fusion is a state-of-the-art desktop filament manufacturing machine capable of creating unique professional-grade materials. It can reach temperatures of up to 450°C, making it suitable for processing high-temperature materials like PEEK, PETG, and PEKK, as well as low-temperature materials such as PLA, ABS, PET, PETG, TPU, and TPE. By using a mixing screw, it achieves better mixing results of materials and additives. Additionally, it features a user-friendly touchscreen and a new tension arm, providing easier operation than ever before.

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Desktop 3D printer surface treatment device "PostPro SFX"

A new surface treatment device for desktop 3D printers has been released: "PostPro SFX".

PostPro SFX is an environmentally friendly tabletop surface treatment device that uses the FDA-certified solvent "PostPro Pure." Despite its compact size with a processing area of up to 11L, it delivers excellent quality. It is compatible with Nylon 12 (PA12) and is expected to support flexible materials such as TPE and TPU in the future. Additionally, in collaboration with Saint Gobain, it features the "TUP Lite (Technology Upgrade Package)" for automatic parameter setting, allowing users to start processing faster and more easily than before. It is an ideal surface treatment device for industrial machines from companies such as Sinterit, Markforged, HP, Formlabs, 3D Systems, Stratasys, Nexa3D, Prodways Machine, Sintratec, Wematter, Fasoon Technologies, EOS, and AM Polymers.

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Post-processing device for 3D printers "PostPro SF100"

Surface treatment device for 3D printing

The PostPro SF100 is a surface treatment device for post-processing 3D printed parts, providing an appearance and texture similar to injection-molded components. The sealed surface not only makes painting easier but also enhances the mechanical performance of each part, and it has been recognized as safe for contact with skin and food. Additionally, by automating the post-processing of parts, it enables production with consistent quality and achieves mass production of final components. Compared to traditional manual methods, processing time can be significantly reduced. Since the material is redistributed across the entire surface, it is not removed like during polishing, thus maintaining dimensional accuracy.

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Robot arm-type large 3D printer for pellets

Creating new value in manufacturing.

Heron AM is a robotic arm-style large 3D printer that enables the production of products up to 4 meters in size. It comes equipped with everything necessary to start manufacturing, including a print head, a pellet drying device, tools for milling, and software. It supports a wide range of high-performance polymers, composite materials, and recycled materials, significantly reducing material costs by allowing direct printing from pellets. The surface roughness caused by pellet materials can also be smoothed out using the included tools. The sustainable production offered by Heron AM creates new value in manufacturing. We hold open house events where you can see the actual equipment and production samples. Please feel free to apply. - Apply here: https://forms.monday.com/forms/6cc725fbd40d3fbfbb55f28148d0c805?r=use1

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Wire DED method metal 3D printer, Meltio M600

A wire DED method metal 3D printer equipped with a blue laser that can use welding wire as a material.

The Meltio M600 has a build area approximately four times larger than its predecessor, the Meltio M450, allowing for the creation of larger metal parts with strength comparable to forged products. Additionally, with the inclusion of a new blue laser alongside hot wire compatibility, the range of usable materials has increased, and the build speed has become faster. Furthermore, the preparation time required to start building has been reduced to one-third compared to the Meltio M450. Moreover, the wire cutting feature provides stable builds when using different materials, and eliminates the need for wire alignment adjustments, making the fabrication of metal parts significantly easier compared to previous Meltio products. Our factory offers a valuable opportunity to experience actual machine demonstrations and handle parts that have been fabricated. Please apply if you are interested. - Apply here: https://www.3dpc.co.jp/factory-tour

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Pellet-based 3D printer, WASP 60100HDP

Sustainable manufacturing is made possible with super engineering plastics.

The WASP 60100HDP is an advanced and environmentally friendly 3D printer that can use super engineering plastics. It achieves a maximum build size of Ø 600 x 1000 mm, making it ideal for manufacturing products that require heat resistance and strength. It is utilized in various fields, including manufacturing, research, material development, as well as art and design, and is particularly effective in producing high-precision prototypes and final products. Our factory offers a valuable opportunity to experience actual machine demonstrations and handle parts that have been 3D printed. Please apply. - Apply here: https://www.3dpc.co.jp/factory-tour

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

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

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

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Pellet-type 3D printer, WASP 4070 HDP

A 3D printer that easily creates sustainable products.

The WASP 4070HDP is an environmentally friendly 3D printer that can directly 3D print from pellets. It has a proven track record of creating new products by reusing marine plastic waste and fishing nets, and it is utilized in a wide range of fields including manufacturing, research, material development, as well as art, automotive, and furniture. It is an optimal choice for promoting recycling and initiatives related to the SDGs. Our factory offers a valuable opportunity to experience actual machine demonstrations and to handle parts that have been 3D printed. Please apply if you are interested. - Apply here: https://www.3dpc.co.jp/factory-tour

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[3D Printer Modeling Example] Bearing Block (Prototype)

Used as a part to fix bearings in a concrete manufacturing plant!

We would like to introduce a case study of a bearing block created using a 3D printer. These are consumable parts necessary for the operation of manufacturing factories. Such heavy and bulky shapes are not cost-effective with metal 3D printing using powder, and machining requires storing the correct size billets in the warehouse, leading to significant material waste. By using Meltio, it is possible to optimize the inventory of replacement parts and achieve low-cost, just-in-time production. 【Specifications (partial)】 ■ Dimensions: 143×143×75mm ■ Weight: 6.5kg ■ Material: SUS316L ■ Printing time: 24 hours 38 minutes *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Creation Example] Mining Drill Bit

It is possible to quickly repair and manufacture necessary parts! Utilized to shorten lead times.

Here is an example of a mining drill bit created using a 3D printer. This product is attached to drills used for excavating anchor points in the mining and oil & gas industries or for drilling exploratory holes. During operations in remote locations, the surface layer or tooth shape may wear out, but it is possible to manufacture quickly and inexpensively even in remote areas away from the bit manufacturer. 【Specifications (partial)】 ■Dimensions: 96.5×96.44×91.3mm ■Weight: 3kg ■Material: SUS316L ■Printing time: 10 hours 5 minutes *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Airfoil Cooling Blade

It is used as a cooling blade in megawatt-class generators! Improving power generation efficiency.

Here is an example of an airfoil cooling blade created using a 3D printer. Air is pushed into the housing of the generator to dissipate waste heat. Traditional assembly through welding had the potential for human error. By replacing it with Meltio and automating the process, we reduced human error and improved power generation efficiency through a more optimized blade shape and lightweight design. 【Specifications (partial)】 ■ Dimensions: 200×152×55mm ■ Weight: 516g ■ Material: SUS316L ■ Printing time: 3 hours 50 minutes *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Combustion Chamber

Rocket engine product with liquid cooling channels! Improved heat exchange efficiency.

Here is an example of a combustion chamber created using a 3D printer. To prevent the temperature rise of the product's outer wall, cooling is achieved by passing a refrigerant through the cooling channels inside the outer wall. We have successfully manufactured complex shapes in bulk, which is impossible with conventional manufacturing methods, resulting in a design that pursues efficiency. 【Specifications (partial)】 ■ Dimensions: 110.5×110.5×170mm ■ Weight: 4.88kg ■ Material: SUS316L ■ Printing time: 7 hours 30 minutes *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Bracket for Aircraft

Lightweighting is widely used in industries such as aerospace, where it has a significant impact on component costs and overall system efficiency!

We would like to introduce a case of a bracket for aircraft that was 3D printed. The Buy-to-Fly Ratio (the proportion of raw material weight to the final product) of this product is approximately 3%, meaning nearly 65% of the raw materials are wasted. The global product market is expected to experience further growth over the next five years, with a surge in demand for lightweight products in the aviation industry. By 3D printing these components using titanium or alloys instead of stainless steel, it is possible to achieve lighter and more cost-effective production. 【Specifications】 ■ Dimensions: 109.6×160.8×34.8mm ■ Weight: 1.5kg ■ Material: Ti-6AL-4V ■ Printing Time: 13 hours 33 minutes *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Spline Shaft

It is used as an industrial component for torque transmission in heavy machinery! An example of a spline shaft.

We would like to introduce a case of a spline shaft created using a 3D printer. Due to its hollow structure, it was a low-volume production part that was difficult to process using conventional manufacturing methods. Near-net-shape parts can be manufactured quickly and cost-effectively with Meltio, as only specific critical areas need to be processed. Compared to conventional manufacturing methods, the manufacturing time and cost were reduced to one-tenth. 【Specifications (partial)】 ■ Dimensions: 132×132×193mm ■ Weight: 6.6kg ■ Material: SUS316L ■ Printing time: 30 hours *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Watch Bezel

Hold mechanical parts such as gears and electronic components inside the watch! A sophisticated design and surface treatment are required.

We would like to introduce a case of a watch bezel created using a 3D printer. In mass production, machining difficult materials from blocks is challenging and very expensive. Additionally, despite the final weight being small, a large amount of material needs to be removed. For parts like this, where the shape and size are small, Meltio's metal 3D printing process is advantageous as it results in less material loss compared to conventional manufacturing methods. 【Specifications (partial)】 ■ Dimensions: 53.37×44.59×10.85mm ■ Weight: 155.93g (29.22g per piece) ■ Material: Ti-6AL-4V ■ Printing time: 5 hours 40 minutes *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Helical Coil

Realizing the high capabilities of the Meltio Engine Robot! Introducing examples of helical coil fabrication.

This is an introduction to a case where a helical coil was fabricated using a 3D printer. The uniqueness of this 3D printed part lies in its non-planar slicing, where the thickness of each point within individual layers is adjusted to an appropriate thickness. This approach using non-planar slicing is suitable for many complex shapes in five-axis additive manufacturing. 【Specifications】 ■Dimensions: φ60mm pipe, 354×376×525mm ■Weight: 3.56kg ■Material: SUS316L ■Printing time: 13 hours 46 minutes ■Gas: Argon ■Layer pitch: 0.6 to 0.8mm ■Post-processing: Polishing *For more details, please refer to the PDF document or feel free to contact us.

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3D Printer Modeling Example: Food Mixer

Spiral-shaped blades are formed on commercially available round bars! Utilized not only in the food industry but also in various other industrial fields.

We would like to introduce a case of a food mixer created using a 3D printer. At Engine Robot, it is possible to add new shapes to existing commercial materials such as round bars and pipes to enhance their performance. Additionally, since these parts can be created in a wide range of sizes, they can be utilized not only in the food industry but also in various other industrial fields. 【Specifications】 ■Dimensions: 150×150×330mm ■Weight: 4.60kg ■Material: SUS316L ■Printing Time: 16 hours 45 minutes ■Gas: Argon ■Layer Pitch: 1.0mm *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Overhang Test

A part designed to showcase the feature of being able to print with the shaping head oriented horizontally!

We would like to introduce a case of an overhang test created with a 3D printer. The Meltio Engine Robot remains stable even when printing at angles exceeding 90 degrees due to the effects of surface tension. In general metal 3D printers, it is often difficult to achieve the necessary angles, so this feature is effective for repairing parts that cannot be easily moved, especially large mold components. 【Specifications】 ■ Dimensions: φ350mm, 180mm ■ Weight: 2.14kg ■ Material: SUS316L ■ Printing Time: 6 hours 26 minutes ■ Gas: Argon ■ Layer Pitch: 0.6mm *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Brisk

Using the Meltio Engine Robot! 48 new blades are being 3D printed on top of the machined product.

We would like to introduce a case study of creating a brisk using a 3D printer. It goes without saying that the cladding technology used in this case is more efficient than machining from a solid material, as it eliminates waste. Additionally, since the blade is hollow, it reduces weight significantly, allowing for substantial savings in time and cost. 【Specifications】 ■Dimensions: 500×500×60mm ■Weight: 9.15kg ■Material: SUS316L ■Printing Time: 26 hours 25 minutes ■Gas: Argon *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Beam Material

By shaping it appropriately for the load, we can achieve a lighter weight compared to conventional materials while maintaining the necessary strength!

We would like to introduce a case of a beam material optimized through topology that was fabricated using a 3D printer. In the case of general components with predetermined shapes, they often become unnecessarily heavy in response to the loads they encounter. With the Meltio Engine Robot, which has no constraints on the build area, it is possible to manufacture such large components. 【Specifications】 ■Dimensions: 170×130×900mm ■Weight: 5.95kg ■Material: SUS316L ■Build Time: 19 hours 5 minutes ■Gas: Argon ■Layer Pitch: 0.6mm *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Marine Propeller

Used for medium-sized ship five-blade propellers! Can be manufactured very quickly and at a low cost.

We would like to introduce a case of a ship propeller created using a 3D printer. Generally, after casting the parts, machining and polishing post-processing were necessary to meet the requirements of the marine industry. With the Meltio Engine Robot, we can eliminate time-consuming and costly processes while improving the precision of near-net shape post-processing, allowing for manufacturing that is very quick and low-cost. 【Specifications (partial)】 ■Dimensions: φ600mm, 250mm ■Weight: 12.1kg ■Material: SUS316L ■Printing time: 43 hours 40 minutes *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Spherical Tank

Utilized for aerospace pressure vessels! A shape close to a perfect sphere is necessary because a large force acts on the tank.

Here is an example of a spherical tank created using a 3D printer. The DED method of the Meltio Engine Robot excels over conventional manufacturing methods in three aspects: design freedom, material reduction, and overall manufacturing cost. Specifically, it enables more precise material deposition with even less heat input compared to previous metal 3D printing, allowing for thinner wall designs of the tank. 【Specifications】 ■ Dimensions: φ500mm sphere ■ Weight: 29.6kg ■ Material: SUS316L ■ Printing time: 81 hours 20 minutes ■ Gas: Argon ■ Layer pitch: 1.2mm *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Rotary Screw

A 3D print is applied to a 50mm diameter SUS304 round bar, coated with SUS316L!

Here is an example of a rotary screw created using a 3D printer. By utilizing Meltio's cladding technology, there is no need to cut from a thick rod, allowing for direct formation from the top. This reduces material waste, significantly cutting down on time and costs. 【Specifications】 ■Dimensions: φ50mm, 75×75×230mm ■Weight: 2.55kg ■Material: SUS316L coated on a round rod of SUS304 ■Printing time: 7 hours 23 minutes ■Gas: Argon *For more details, please refer to the PDF document or feel free to contact us.

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[3D Printer Modeling Example] Engine Manifold

Used as a component that serves as a passage for exhaust gases emitted from the engine!

We would like to introduce a case where an engine manifold was created using a 3D printer. Optimizing the manifold shape has been sought for performance improvement. By utilizing 3D printing, free and seamless designs have become possible, allowing for prototypes to be made one at a time, even in low production scenarios like motorsports. 【Specifications】 ■Dimensions: 205×360×473mm ■Weight: 5.22kg ■Material: SUS316L ■Printing Time: 19 hours 23 minutes ■Gas: Argon ■Layer Pitch: 0.6–1.2mm *For more details, please refer to the PDF document or feel free to contact us.

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Wire DED method metal 3D printer, Meltio M450

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

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

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Ultra-high-speed optical shaping 3D printer, LC Magna

Ultra-high-speed optical molding method, a 3D printer that can also be used for mass production.

Liquid Crystal Magna allows for a maximum build height of 16 mm per hour, and thanks to the patented technology "Blow Peel," completed parts can be easily removed from the vat without damaging them. Furthermore, the patented technology using an LCD screen as a light source enables uniform high-resolution exposure over a large area, allowing for rapid printing. It is ideal for the customized manufacturing of prosthetics and the production of large-sized parts such as injection molding molds, facilitating rapid prototyping and mass production. Our factory offers a valuable opportunity to experience actual machine displays and hold parts that have been printed. Please apply. - Apply here: https://www.3dpc.co.jp/factory-tour

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The fastest light curing method (DLP) 3D printer "B9 Core"

A design that achieves unparalleled precision and surface finish.

The "B9 Core Series" is a DLP 3D printer capable of direct casting from silver to platinum. It offers unparalleled ease of use, accuracy, and reproducibility, helping to smoothly transition from prototyping to mass production of thousands of parts. 【Features】 ■ Equipped with a light engine ■ Built-in computer for fully automated modeling ■ Easy data selection and settings operation from the touch panel ■ Capable of creating complex shapes quickly and at a low cost ■ Can manufacture intricate jewelry rings made of pure platinum, among others

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3D printer series for composite carbon fibers

By incorporating special fibers such as carbon fiber, Kevlar, and glass fiber, the strength of the molded object achieves a strength equivalent to that of aluminum!

The "3D Printer Series for Composite Carbon Fiber" is a CFRP 3D printer that achieves strength equivalent to aluminum using continuous fiber CFRP. It can replace parts that traditionally used aluminum, allowing for significant reductions in manufacturing costs and labor, bringing dramatic changes to the manufacturing process. Additionally, the setup and data processing for modeling are extremely simple. Through a proprietary platform called Eiger, fiber density, arrangement, and filling methods are all processed automatically according to the required conditions. 【Features】 ■ Strength comparable to aluminum machined parts - It is possible to manufacture parts with strength comparable to aluminum machined parts, making it suitable for end-use purposes such as jigs and functional components. ■ Smooth surface finish - Conventional FFF-type 3D printers often have noticeable layer lines, resulting in poor surface finishes. Markforged's 3D printer achieves a very smooth surface finish thanks to the base material Onyx. ■ Fibers suppress warping - The base material Onyx contains short carbon fibers that help suppress warping, allowing for very little warping during the printing process.

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Moment M350, a FFF method 3D printer that can be manufactured on a tabletop.

Minimize vibrations and guarantee high dimensional accuracy! Durable design for long-term use.

Moment is a desktop-type FFF 3D printer that is very user-friendly due to its easy operation and maintenance, allowing for large sizes to be printed all at once without division. It offers a wide selection of materials, making it highly compatible with the filament manufacturer 3devo, which we handle. 【Features】 ■ Wide printing size The maximum build size is 350 × 350 × 350 mm, making it one of the largest in desktop 3D printers. Large models can be printed all at once without division. ■ Abundant materials and easy management It supports various materials such as PLA, ABS, PC, PA, and CF-PA (carbon fiber reinforced polyamide), allowing for stable and high-quality prints with each material. Additionally, the printer is equipped with a dry box that includes a hygrometer, making it easy to manage moisture-sensitive materials in a drying environment. ■ User-friendly The touch panel, enhanced with icons, makes it easy to understand each function and allows for intuitive operation, making it simple for beginners to use. ■ High print quality and stability This machine incorporates all the know-how accumulated by MOMENT, enabling stable printing of high-quality objects.

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High-speed and compact powder-based 3D printer, Lisa X.

The fastest 3D printer for powder molding! It can use 9 types of genuine materials, including nylon, PP, and TPU, without the need for supports.

Sinterit's "Lisa X" is an SLS (Selective Laser Sintering) 3D printer that prints high-quality parts at high speed. Compared to conventional SLS 3D printers, it achieves a larger print volume and revolutionary rapid prototyping. **Features** - **Printing and Cooling Time** - The printing and cooling time of Lisa X is reduced by up to 40% compared to other SLS 3D printers. - **Ergonomic Usability** - With Lisa X, material can be changed in 15 minutes, and the cooling time has also been shortened, making it a very simple and user-friendly solution. - **Variety of Materials** - Nine types of materials are available: PA12 Smooth, PA12 Industrial, PA11 Onyx, PA11 ESD, PA11 CF, Flexa Grey, Flexa Soft, Flexa Bright, and PP. - **32 Printing Parameters** - The open software allows for modification and fine-tuning of 32 printing parameters, enabling adjustments to achieve the desired shape and suitable settings for printing.

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Large-scale FFF method 3D printer, AON3D AON-M2

FFF method 3D printer capable of large-scale modeling using PEEK and Ultem.

AON3D's "AON-M2" is equipped with a high-temperature heating and cooling system. It can stably print super engineering plastics such as PEEK, PEKK, and Ultem, which are used in the aerospace industry, without compromising performance. Additionally, it features two independently operating heads, allowing for the use of water-soluble support materials. 【Features】 ■ Super Engineering Plastic Specialization The AON-M2 is equipped with a high-temperature heating and cooling system, enabling stable printing of super engineering plastics like PEEK, PEKK, and Ultem without compromising performance. ■ Independent Operation It adopts two independently operating heads, allowing for simultaneous printing with both heads. This not only increases part production speed but also enables the use of water-soluble support materials. ■ Large-Scale Printing The AON-M2 is designed for industrial use, making it suitable for printing large products as well as batch production of multiple parts at once. ■ Usable Materials PEEK, PEKK, Ultem, nylon, polycarbonate, TPU, carbon fiber, ABS, and many others.

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Surface treatment device for 3D printers, AMT PostPro100

Processing 3D printed objects to achieve an appearance and texture similar to injection molded parts.

AMT's "PostPro100" provides the highest standard technology that sets a new benchmark in the AM industry with its latest smoothing technology. Post-processed 3D printed parts achieve a surface roughness (Ra) of less than 1μm, attaining surface quality equivalent to injection molding. It is widely compatible with parts produced by 3D printers using methods such as FFF, SLS, and MJS, allowing for the processing of multiple parts at once. Additionally, it can enhance not only the appearance and texture of the surface but also improve waterproofing, airtightness, paintability, and mechanical properties. 【Features】 ■ Designed for mass production The PostPro SF100, equipped with a processing space of 100 liters, is designed to enhance efficiency in terms of processing capacity and reduce costs per part, contributing to the realization of the Fourth Industrial Revolution. ■ Space-saving design Its compact design facilitates ease of operation and reduces the working floor area. ■ Improved performance of parts The PostPro SF100 not only smooths the surface of parts but also enhances mechanical performance, seals the surface to facilitate cleaning, painting, and coating, and maintains dimensional accuracy without leaving processing marks.

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Filament manufacturing machine, 3devo Composer 450

An environmentally friendly ecosystem that completes everything in-house, from filament production to recycling.

The Composer 450 is a filament manufacturing machine that enables material development on a tabletop. It can heat up to 450°C with its built-in heater, making it suitable for processing materials such as PLA, ABS, PET, PETG, TPU, and TPE, and it is also capable of filamentizing composite materials. With a simple interface and the ability to automatically adjust filament diameter, it is a very user-friendly filament manufacturing machine. Our factory offers a valuable opportunity to experience actual machine demonstrations and handle parts that have been produced. Please apply here: https://www.3dpc.co.jp/factory-tour

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New standard metal 3D printer, Markforged Metal X

Enabling safe 3D printing of metal parts.

The cost is about 1/10 of conventional metal 3D printers! By combining metal powder injection molding and 3D printing technology, it enables the manufacturing of high-density metal parts. Additionally, since it does not directly handle metal powder, there is no concern about dust explosions, making it safe. 【Features】 ■ High return on investment ・Cost is about 1/10 of conventional metal 3D printers ■ Abundant materials ・Compatible with various metal materials ・Pure copper can also be 3D printed ■ Excellent safety ・Uses filament that encapsulates metal powder in resin, ensuring safety without the risk of dust explosions ■ Metal density equivalent to MIM ・Unique technology that combines metal powder injection molding and 3D technology allows for the creation of high-density metal parts.

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