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The EnvisionTEC line of Micro 3D printing materials are formulated for use with the Micro and Vida families of printers that use the Perfactory DLP® technology to grow exceptionally accurate and functional parts, without sacrificing speed of build time.

EnvisionTEC‘s ABS Flex M Series is an extremely flexible ABS-like 3D printing material for Perfactory® Micro technology. ABS Flex M Series is an ideal solution for a wide variety of applications including snap-fit items and assembly applications which require some elasticity.

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EnvisionTEC‘s ABS Tough M is an extremely tough ABS-like 3D printing material. ABS Tough M is an ideal solution for a wide variety of applications including snap-fit items and assembly applications which require some elasticity.

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EnvisionTEC’s Clear Guide M 3D Printer material is a crystal clear material for the production of accurate drill guides on the Micro line of 3D Printers. The results produced by combining Clear Guide M 3D printer material with EnvisionTEC technology are superior to traditional methods of manufacturing dental implant placement guides.

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Specially designed nano-filled 3D printing material that works reliably with both polyvinyl alcohol based separators and tin foil substitute for a “salt and pepper” technique of producing an orthodontic appliance.

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Direct investment casting just got easier. EnvisionTEC’s innovative direct investment casting material, Easy Cast EC500 M for use on the Micro HiRes jewelry model makers. With 30% faster build times and dramatically improved casting abilities, EC500 M is the answer you have been waiting for to give you a competitive advantage in the jewelry manufacturing market.

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EnvisionTEC’s innovative new direct investment casting material, Easy-Cast EC3000 M for use on the Perfactory® 3D printers. This easy to cast material has 3 times more wax than any polymer based material, including EC500. It does not boil during burnout, a leading cause of porosity during casting among competitive products.

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The peach color E-Denstone creates highly accurate models with removable dies similar to the standard gypsum color. The matte finish allows models to be scanned accurately for verification purposes and the high viscosity of the formula produces superior details and surface finish.

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EnvisionTEC’s E-Dent 100 M is a light-cured micro-hybrid filled dental crown and bridge dental material for long term temporaries for use on the Perfactory® Micro DDP machine. Provisionals are photo polymerized on a voxel-by-voxel basis (volumetric pixel) of the liquid resin.

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Parts made using EnvisionTEC EPIC M resin evaporate at moderate burn out temperatures without reacting with your investment and offers an extremely low thermal expansion. It is optimally suitable for producing precious metal castings and builds extremely smooth surfaces.

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EnvisionTEC’s E-Shell® 200 M Series is a low viscosity liquid photopolymer that produces strong, tough, water-resistant ABS like parts with high detail that are Class IIa biocompatible according to ISO 10993/Medical Product Law and are CE certified for use as hearing aid products, otoplastics, and medical devices.

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The EnvisionTEC E-Shell® 300 M Series 3D Printer Material has been designed especially for applications in the Hearing Aid industries and is distinguished for rigidity and durability. This 3D printer material is used on Perfactory® UV machines only.

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The EnvisionTEC E-Shell® 600 M Series 3D Printer Material has been designed especially for applications in the Hearing Aid industries and is distinguished for rigidity and durability. This 3D printer material is used on Perfactory® UV machines only.

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The EnvisionTEC E-Shell® 3000 M Series 3D Printer Material has been designed especially for applications in the Hearing Aid industries and is distinguished for rigidity and durability. This 3D printer material is used on Perfactory® UV machines only.

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EnvisionTEC’s E-Silicone offers a solution to produce soft silicone otoplastics by the additive manufacture of cocoon molds. The custom fit E-Silicone molds may be injected with medical grade silicone materials.

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EnvisionTEC’s E-Tool M material allows manufacturers to 3D print molds for thermoplastic injection molding quickly and efficiently. It is ideal for low volume production runs or for the creation of multiple iterations of a mold during the prototyping phase.

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The latest breakthrough in extremely durable photopolymers for use in producing very accurate parts with high feature detail on EnvisionTEC’s 3D printers. With added stability and surface quality, this material produces parts with high impact resistance similar to thermoplastics.

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High temperature molding material for non-metal masters dramatically changes 3D printing capabilities for manufacturers. With a heat deflection temperature of 140°C straight out of the machine, high definition parts printed in HTM140 M can be directly vulcanized in rubber, eliminating the need for a metal master.

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Highest quality details, a standard burn out procedure, and exceptionally high speed building with EnvisionTEC’s Micro cDLM distinguish PIC100 C resin as the top choice for producing high quality jewelry parts for production capacity direct investment casting.

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Parts made using EnvisionTEC PIC100 M resin evaporate at moderate burn out temperatures without reacting with your investment and offers an extremely low thermal expansion. It is optimally suitable for producing precious metal castings and builds extremely smooth surfaces.

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A wax 3D printer photopolymer designed for producing wax copings, crowns and bridges up to 16 units. The material has a very low thermal expansion, which eliminates cracking of investment and produces a porous free material with a perfect margin fit. It can also be used for press on ceramic.

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Quick building QView M resin is ideal for providing fast design verification models. This exciting new material is capable of impressive print speeds of up to an inch per hour for the full build envelope. This allows designers to put their custom design pieces into their customers’ hands in record time for final fit and design verification.

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