A resin offering durability and fast processing times.
Somos® EvoLVe 128 is a durable stereolithography material that procudes accurate, high-detailed parts and has been designed for easy finishing. It has a look and feel almost indistinguishable from finished traditional thermoplastics, making it excellent for building parts and prototypes for functional testing applications – resulting in time, money, and material savings during product development. Somos® EvoLVe is an excellent material for industries such as aerospace, automotive, medical, consumer products, and electronics.
Key Benefits
- Easy to clean & finish
- High strength & durability
- Accurate & dimensionally stable
- High detail
A universal stereolithography material designed to produce accurate, detailed parts across various applications.
Somos® GP Plus 14122 sets the standard for 3D printing prototypes. It is easily integrated in production cycles to test designs ensuring proper functionality of parts before they are launched into full production – providing customers the opportunity to get to market quickly. Parts produced with Somos® GP Plus 14122 are durable, accurate and moisture-resistant. This material is ideal for functional prototypes, concept models, and low-volume production parts.
Key Benefits
- Extremely accurate
- Excellent humidity resistance
- Very durable
Additive manufacturing, and more specifically stereolithography (SL), has enabled a faster route to market for footwear while reducing development costs and aiding the development of more complex shoe designs. With Somos® Momentum, Stratasys provides a compelling solution combining rich feature detail and dimensional stability with more efficient printing outcomes available without compromising surface quality and dimensional accuracy.
Footwear manufacturers face a multitude of challenges, from developing durable solutions to managing design and the range of sizes required. They continue to seek more effective means to develop new designs to meet increasingly diverse customer needs, while also striving to quicken the pace of design and innovation. Additive manufacturing for footwear tooling has played a key role, and the inherent design flexibility, feature detail, and surface quality offered by SL has led this technology into the mainstream. Footwear manufacturers continue to push for faster design iteration, shorter route to market and more cost- and time-efficient approaches.
Stratasys collaborated with key footwear manufacturers to develop an additive manufacturing material that addresses the specific needs for footwear tooling. Somos® Momentum offers higher part accuracy, quality and fine feature detail. The outstanding accuracy of the resin allows the forming of sharp features, which in turn enables the creation of detailed soles not only in initial design but also translated into the aluminum mold. In addition, the pink color of the material makes it easy to discern key features in the design and to inspect the parts for surface defects. Taking this technology a step further, direct printing of the sole will omit the need for detailing or texturing, speeding up the traditional tooling process up to 60%, enabling a cost reduction up to 30%.
Somos® Momentum™ provides a compelling solution combining rich feature detail and dimensional stability with the most efficient printing outcomes available without compromising surface quality and dimensional accuracy.
An extremely durable stereolithography material that creates parts ready for functional testing.
Somos® NeXt is a highly durable stereolithography material which produces very accurate parts with high feature resolution. This material is ideal for the production of tough, complex parts that also exhibit excellent moisture and thermal resistance. Somos® NeXt has a look and feel that is almost indistinguishable from finished traditional thermoplastics, making it perfect for building parts and prototypes for functional testing applications – resulting in time, money and material savings during product development.
Somos® NeXt™ helps you take product design to new heights with a look and feel almost indistinguishable from finished traditional thermoplastics, but with a toughness, durability, and accuracy not traditionally seen in stereolithography resins.
Somos® PerFORM is the material of choice for applications that require strong, stiff, high temperature resistant composite parts. With its excellent high heat tolerance, outstanding detail resolution, and stiffness, Somos® PerFORM is the ideal material for various applications, including tooling, wind tunnel testing, high-temperature testing, electrical casings, and automotive housings.
With the lowest viscosity of any composite stereolithography material, parts made from Somos® PerFORM are faster to build, easier to post-process clean, possess superior sidewall quality, and provide unmatched detail resolution.
Somos® PerFORM™ produces strong, stiff, high-temperature-resistant composite parts that are ideal for tooling and wind-tunnel testing applications. With the lowest viscosity of any composite stereolithography material, parts made from Somos PerFORM are faster to build, easier to clean post-process, show superior sidewall quality, and provide unmatched detail resolution.
When you need a high-heat and humidity-resistant material for your parts, Somos® ProtoGen 18420 delivers the performance you need with accurate, easy-to-clean white parts.
Somos® ProtoGen 18420 helps our customers produce various part properties based upon the machine exposure that fit various applications.
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Item Number:VLS4.75The VLS4.75 is a free-standing platform with a materials processing envelope of 24" x 18" x 8.5" or 3,672 in³. The single laser platform supports a 10.6µm CO2 laser source ranging in power from 10 to 75 watts or one 9.3µm CO2 30 watt, 50 watt, or 75 watt laser source.
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Item Number:VLS6.75The VLS6.75 is a free-standing platform with a material processing envelope of 32" x 18" x 8.5" or 4,896 in³. The single laser platform supports a 10.6µm CO2 laser source ranging in power from 10 to 75 watts or one 9.3µm CO2 30 watt, 50 watt, or 75 watt laser source.
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