Additive Manufacturing for the Robotics Industry

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Materials Suitable for your Robotics Projects

PA11

Tensile Strength of 50MPa

Tensile Modulus of 1900MPa

Elongation at Yield of 9%

Renewable raw materials

Flexural strength 70 MPa

Elongation at break 35%

Tensile Strength of 50MPa

Tensile Modulus of 1900MPa

Elongation at Yield of 9%

Renewable raw materials

Flexural strength 70 MPa

Elongation at break 35%

PA12

Biocompatability USP Class I-IV

US FDA Guidance for Skin Contact

UL 94 and UL 746A Certification

Excellent strength-to-weight ratio

High chemical resistance properties

Tensile Modulus 2000 MPa

Tensile Strength of 50MPa

Tensile Modulus of 1900MPa

Elongation at Yield of 9%

Tensile Strength of 50MPa

Tensile Modulus of 1900MPa

Elongation at Yield of 9%

Tensile Strength of 50MPa

Tensile Modulus of 1900MPa

Elongation at Yield of 9%

TPU

Tensile Strength of 27.6 to 48.3 MPa

Shore Hardness of 90A

Elongation at Break of 500% to 800%

Flexural Modulus 75 MPa

Hardness Shore A

Elongation at Break 22%

Flexural Modulus 75 MPa

Hardness Shore A

Elongation at Break 22%

See Our Suite of Materials

Robotics Applications

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Faster Prototyping and Production: rapidly prototype new parts and equipment to reduce development time and accelerate time to market. Quickly produce replacement parts and reduce the need for large inventories of spare parts.

Reduced Waste and Cost: produce parts with greater precision and accuracy, reducing waste and scrap. Reduce the need for expensive tooling and reduce material waste compared to legacy manufacturing methods.

Customization: produce customized parts that are tailored to specific needs and applications, which is particularly useful in the robotics industry.

Improved Equipment Performance: produce parts with unique geometries and improved materials properties that can enhance equipment performance, such as corrosion resistance, wear resistance, and high-temperature resistance.

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