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material Product List

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3D printing compatible material 'High Heat Resistant Acrylic | MJT | AGILISTA'

It is a high heat-resistant acrylic material called AR-H1. Output via 3D printing! Accepting contract manufacturing inquiries.

This is a high-temperature acrylic material named AR-H1, outputted from AGILISTA. It can withstand heat up to 103°C at a load deflection temperature (0.45MPa), making it suitable for assembly with heat-generating components and for functional verification through hot air or hot water. The layer pitch is 20μm, with a tolerance of approximately 0.1mm*, making it suitable for high-precision parts such as fittings. It is water-resistant and can accommodate small drilling, which allows for its use in functional prototypes of showerheads. *The intersection is a guideline and may vary depending on the shape of the model. Tests conducted in compliance with the following standards have passed: REACH RoHS

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3D Printing Compatible Material 'Low Hardness Silicone Rubber | MJT'

It is a silicone-like rubber material called AR-G1L. Output via 3D printing! Accepting commissioned modeling.

This is a silicone-like rubber material called AR-G1L, outputted from AGILISTA. It has a Shore hardness (A) of 35. Due to the use of water-soluble support material, it is capable of creating intricate shapes. With a layer pitch of 30μm, it features high precision and takes advantage of the properties of highly elastic materials, making it suitable for reproducing flexible thin-walled structures that are prone to breakage and difficult to replicate with conventional rubber-like materials. The silicone rubber material can be applied to assembly evaluations of gaskets, grip feel checks, the production of soft jigs, and models of soft organs and blood vessels. *Shore hardness (A) is measured by the manufacturer based on JIS K6253. Tests conducted in compliance with the following standards have passed: - REACH - RoHS

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3D printing compatible material 'PA12GB Glass Beads | MJF'

This is a nylon material that can be used in scenes where greater strength is required, as it contains glass beads.

This is a nylon material suitable for mass production that contains glass beads called HP 3D High Reusability PA 12 Glass Beads, made with the HP Jret Fusion 4200. The MJF method has no anisotropy compared to the SLS method, offering high strength and dimensional accuracy, making it usable from prototypes to final products. The inclusion of glass beads allows it to be utilized in scenarios where higher strength is required. It is built with a layer pitch of 0.08mm. Tests have been conducted in compliance with the following standards and have passed: - REACH - RoHS - PAHs

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3D Printing Compatible Material 'High Hardness Silicone Rubber | MJT'

It is a silicone-like rubber material called AR-G1H. Output via 3D printing! Accepting commissioned modeling.

This is a silicone-like rubber material called AR-G1H, outputted from AGILISTA. It has a Shore hardness (A) of 65. Due to the use of water-soluble support material, it is capable of creating fine shapes. With a high resolution of 30μm layer pitch and the characteristics of a highly elastic material, it is also suitable for reproducing flexible thin-walled molded objects that are prone to damage and difficult to reproduce with conventional rubber-like materials. Thanks to the properties of high-hardness silicone rubber, it is often used for protective covers with bellows structures and for testing cover jigs. *Shore hardness (A) is measured by the manufacturer based on JIS K6253. Tests conducted in compliance with the following standards have passed: REACH RoHS

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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 '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 compatible material 'Antero800NA | FDM'

In addition to toughness and wear resistance, it has features such as high strength, high heat resistance, low gas emission characteristics, and excellent chemical resistance!

The material Antero 800NA, produced with the F900, is a PEKK-based material suitable for applications that require high durability and weight reduction. It features toughness and wear resistance, as well as high strength, high heat resistance, low gas emission characteristics, and excellent chemical resistance. It is built with a layer pitch of 0.254mm, but please contact us if you have a preferred layer pitch.

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3D printing compatible material 'PA11 | MJF'

A nylon material suitable for mass production, commonly used for parts that take advantage of impact resistance and toughness.

This is a ductile, plant-based nylon material called HP 3D High Reusability PA 11, made with the HP Jret Fusion 4200. It is a mass-production-friendly material often used for parts that take advantage of its impact resistance and toughness, such as snap fits, living hinges, insoles, and sports equipment. It also features a high load deflection temperature, capable of withstanding up to 185°C (0.45 MPa). At 1.82 MPa, the temperature limit is 54°C. The MJF method produces isotropic parts with high strength and dimensional accuracy compared to SLS, making it suitable for use from prototypes to final products. It is built with a layer pitch of 0.08mm, allowing for detailed text representation.

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3D printing material "300-degree heat-resistant plastic"

It features heat resistance above 300℃ and high rigidity, making it suitable for the manufacture of high-temperature components. It can be used for tooling and functional testing.

300°C Heat-Resistant Plastic | HPS | Lumia X1 This is a material called HI TEMP 300-AMB produced with the Lumia X1. It features heat resistance above 300°C and high rigidity, making it suitable for manufacturing high-temperature components. It has a high tensile modulus of 4000 MPa and can be used for tooling and functional testing. Furthermore, since this material is translucent, it allows for visual confirmation of internal flow and structure during the manufacturing of complex-shaped parts, which can be utilized in product design and performance evaluation. The 300°C heat-resistant plastic also excels in durability, with strong resistance to ultraviolet light and humidity, ensuring stable quality over long periods, as confirmed by the manufacturer's test results. In particular, it is expected to demonstrate stable performance in high-temperature environments, which was difficult to achieve with conventional 3D printing materials, especially in the prototyping of engine parts and exhaust systems.

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3D printing compatible material 'PP-Like | LSPc | NXE400'

A PP-like material with properties equivalent to polypropylene, designed for ultra-fast molding!

This is a material called RHL-E-200, outputted with the NXE400. It is a PP-like material with properties equivalent to polypropylene, designed for ultra-fast 3D printing. Due to its high printing speed, it can be delivered relatively quickly compared to other materials. It is printed with a layer pitch of 0.1mm. When placing an order, you can choose between standard processing (with support) and support removal. Since the NXE400 includes physical supports, it is not possible to create interlocking parts.

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3D printing compatible material 'Gray Resin | LSPc | NXE400'

This is a gray resin for ultra-fast molding that has the quality and strength equivalent to injection molding.

This is a material called xGPP-Gray, outputted from the NXE400. It is a gray resin for ultra-fast molding that possesses quality and strength comparable to injection molding. Due to its fast molding speed, it can be delivered relatively quickly compared to other handling materials. It is molded with a layer pitch of 0.1mm. When placing an order, you can choose between standard processing (with support) and support removal. Since the NXE400 includes physical support, it is not possible to create interlocking parts.

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3D printing compatible material 'Prototype Pro Resin | SLA'

【Material sample available】Despite its low price, it is an excellent material with outstanding durability and water resistance, as well as superior toughness and strength, making it often used for functional prototypes!

It is an inexpensive resin material that excels in durability and water resistance. Despite its low price, it has excellent toughness and strength, making it suitable for functional prototypes and more. It can be widely used not only for prototyping and functional testing but also for parts, tools, and components. In addition to the precision and smooth surface of photopolymer resin, it achieves short delivery times by manufacturing with a layer thickness of 0.1mm. This material is also suitable for mass production. ■ We have material samples available. If you would like a sample, please contact us and let us know your request for a sample. ■

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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)

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3D printing compatible material 'ULTEM1010 | FDM'

An FDM material with high heat resistance and the lowest thermal expansion coefficient among FDM materials, possessing the highest level of strength.

The material called ULTEM1010, which is outputted with F9F900, has high heat resistance and exhibits the lowest thermal expansion coefficient among FDM materials, making it a top-level strength FDM material. It complies with industry standards for biocompatibility according to ISO 10993 and USP Class VI, as well as NSF 51 food safety requirements. It is printed with a layer pitch of 0.254mm, but please contact us if you have a preferred layer pitch. *If the above certifications are required, we will guide you to the certified grade of FDM material called ULTEM1010 CG. Please indicate that compliance with various standards is necessary when inquiring.

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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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