https://www.avient.com/news/avient-joint-study-borealis-reveals-wide-range-color-options-recycled-plastics
In re-inventing essentials for sustainable living, we build on our commitment to safety, our people, innovation and technology, and performance excellence.
https://www.avient.com/industries/healthcare/catheter-materials-medical-tubing/catheters
Since they can be made from various materials, choosing the best material for the desired use requires understanding the functional, safety, manufacturability, and essential performance needs.
https://www.avient.com/industries/transportation/automotive/automotive-interiors
SmartBatch™ Color & Additive MasterBatch system of three colors that met requirements for critical safety components
https://www.avient.com/products/polymer-colorants/healthcare-colorants/mevopur-healthcare-colorants-and-formulations
Human Health & Safety
https://www.avient.com/products/advanced-composites/continuous-fiber-composite-tape-laminates-and-barstock/polystrand-continuous-fiber-tapes-laminates
Available in sheet form or rolls up to 10,000 pounds
https://www.avient.com/resource-center/knowledge-base/article/what-s-difference-fillers-reinforcements?rtype%5B0%5D=1164
Graphene is a flat, single layer of carbon atoms in sheet form that is significantly stronger than steel.3 It has a high surface area-to-volume ratio, high tensile strength (how much it can stretch before it breaks), and high electron mobility (the speed at which its electrons move when voltage is applied).4 Graphene is not a new material, but it recently became commercially available and is now being used as a polymer additive.
Boyson, et al., “Graphene: Sheets of Carbon-based Nanoparticles,” http://www.dummies.com/education/science/nanotechnology/graphene-sheets-of-carbon-based-nanoparticles/
5E.
Compounds at the high end of the resistivity scale shield against electromagnetic interference (EMI) or radio-frequency interference (RFI).1 Faster data transmission and broader electromagnetic frequencies are driving the need for better EMI/RFI protection for electronic devices.2
https://www.avient.com/resource-center/knowledge-base/article/what-s-difference-fillers-reinforcements?ind%5B0%5D=6601
Graphene is a flat, single layer of carbon atoms in sheet form that is significantly stronger than steel.3 It has a high surface area-to-volume ratio, high tensile strength (how much it can stretch before it breaks), and high electron mobility (the speed at which its electrons move when voltage is applied).4 Graphene is not a new material, but it recently became commercially available and is now being used as a polymer additive.
Boyson, et al., “Graphene: Sheets of Carbon-based Nanoparticles,” http://www.dummies.com/education/science/nanotechnology/graphene-sheets-of-carbon-based-nanoparticles/
5E.
Compounds at the high end of the resistivity scale shield against electromagnetic interference (EMI) or radio-frequency interference (RFI).1 Faster data transmission and broader electromagnetic frequencies are driving the need for better EMI/RFI protection for electronic devices.2
https://www.avient.com/resource-center/knowledge-base/article/what-s-difference-fillers-reinforcements
Graphene is a flat, single layer of carbon atoms in sheet form that is significantly stronger than steel.3 It has a high surface area-to-volume ratio, high tensile strength (how much it can stretch before it breaks), and high electron mobility (the speed at which its electrons move when voltage is applied).4 Graphene is not a new material, but it recently became commercially available and is now being used as a polymer additive.
Boyson, et al., “Graphene: Sheets of Carbon-based Nanoparticles,” http://www.dummies.com/education/science/nanotechnology/graphene-sheets-of-carbon-based-nanoparticles/
5E.
Compounds at the high end of the resistivity scale shield against electromagnetic interference (EMI) or radio-frequency interference (RFI).1 Faster data transmission and broader electromagnetic frequencies are driving the need for better EMI/RFI protection for electronic devices.2
https://www.avient.com/resource-center/knowledge-base/article/forming-methods-and-applications?rtype%5B0%5D=1164
Polystrand continuous fiber reinforced thermoplastic 6-ply laminate sheet was integrated into the direct long fiber thermoplastic (DLFT) manufacturing process and applied via compression molding.
https://www.avient.com/resource-center/knowledge-base/article/forming-methods-and-applications?ind%5B0%5D=6601
Polystrand continuous fiber reinforced thermoplastic 6-ply laminate sheet was integrated into the direct long fiber thermoplastic (DLFT) manufacturing process and applied via compression molding.