https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?pname[]=19476
These reinforced grades are targeted at applications in the industrial, electronics and transportation markets like pipes and tubing, electrical battery components, and under-the-hood fuel or chemical contact components.
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials
These reinforced grades are targeted at applications in the industrial, electronics and transportation markets like pipes and tubing, electrical battery components, and under-the-hood fuel or chemical contact components.
https://www.avient.com/sites/default/files/2025-07/Glasforms Electrical Application Guide.pdf
Performance advantages: • High dielectric strength: composite material is custom formulated to optimize electrical properties resulting in exceptional insulation • Lightweight: insulators are up to 80% lighter than porcelain and utility poles are more than 50% lighter than wood equivalents • High strength: high tensile, compressive, flexural and inter-laminar shear strength to support various design configurations and line loads • Resilient: deflect and return to original shape for structural damping to minimize damages and outages • Durable: insulators are durable and shatter resistant vs. ceramic and glass; composite utility poles are UV corrosion resistant for a long service life Arrestors Electrical Transmission & Distribution Applications COMPONENT DESCRIPTION SIZES Insulators for transmission and distribution Suspension insulators Epoxy/glass fiber rods 0.625" to 1.25" diameter Line post and station post insulators Epoxy/glass fiber rods 1.50" to 4.74" diameter Arresters Cage type Polyester or vinyl ester/glass fiber rods 0.125" to 0.50" diameter Custom tubular Polyester, vinyl ester or epoxy/ glass fiber custom shapes 2.0" to 6.0" envelope size Pole line construction Conductor standoff and equipment support arms Polyester/glass fiber rods 1.50" to 2.00" diameter Guy strain insulators Polyester/glass fiber rods 0.50" to 0.812" diameter Cross arms Tangent and deadend, support braces Polyester/glass fiber rectangular tubes 3.62" x 4.62" and 4.0" x 6.0" rectangular Utility poles GridCore™ Composite Utility Poles Polyester/glass fiber hollow custom tubes 12" to 14" diameter, typical lengths from 35' to 75' Pole line construction, cross arms, rods, and utility poles feature an integral fabric surfacing veil for long-term weather resistance and retention of properties.
https://www.avient.com/sites/default/files/2023-07/Versaflex HC _ Versaflex HC BIO - BT Series Product Overview.pdf
Versaflex™ HC and Versaflex™ HC BIO Thermoplastic Elastomers TPEs for Biopharmaceutical Tubing (BT) The Versaflex™ HC and Versaflex™ HC BIO BT series is formulated specifically to handle the complexities of biopharma tubing.
Delivering on critical application demands, it provides weldability, kink resistance, and tensile strength performance comparable to leading medical tubing materials, including silicone and TPE.
https://www.avient.com/sites/default/files/2021-04/versaflex-hc-bt218-biopharmaceutical-tubing-case-study.pdf
MEDICAL TUBING EXTRUDER B I O P H A R M A C E U T I C A L T U B I N G • Low leachables & extractables • Great tensile performance and kink resistance • Good thermal weldability • Excellent clarity and medical blue tint • ISO 10993-4 & 5, USP Class VI & Animal Derivative Free (ADF) • Supplied drop-in material replacement to overcome supply constraints of incumbent TPE • Offered a lower extractable profile than comparable materials in the market • Enabled easy material transition without changes in tooling or thermal welding machine settings • Formulated solution with proprietary additives to provide clarity and prevent yellowing after sterilization Versaflex™ HC BT218 Thermoplastic Elastomer KEY REQUIREMENTS WHY AVIENT?
https://www.avient.com/knowledge-base/case-study/reinforcing-stronger-infrastructure?rtype[]=1124
Polystrand™ Continuous Fiber Reinforced Thermoplastic Composites provide a reinforcing layer within the high density polyethylene (HDPE) pipe wall through thermal wrapping that is integrated into the pipe manufacturing processes.
https://www.avient.com/knowledge-base/case-study/reinforcing-stronger-infrastructure?sust[]=1165
Polystrand™ Continuous Fiber Reinforced Thermoplastic Composites provide a reinforcing layer within the high density polyethylene (HDPE) pipe wall through thermal wrapping that is integrated into the pipe manufacturing processes.
https://www.avient.com/knowledge-base/case-study/reinforcing-stronger-infrastructure?pname[]=10716
Polystrand™ Continuous Fiber Reinforced Thermoplastic Composites provide a reinforcing layer within the high density polyethylene (HDPE) pipe wall through thermal wrapping that is integrated into the pipe manufacturing processes.
https://www.avient.com/knowledge-base/article/medical-stoppers-improved
During the injection-molding step, the TPE insert forms a strong bond with the substrate, such as polypropylene or polyethylene, used for the container closure.
https://www.avient.com/knowledge-base/case-study/reinforcing-stronger-infrastructure
Polystrand™ Continuous Fiber Reinforced Thermoplastic Composites provide a reinforcing layer within the high density polyethylene (HDPE) pipe wall through thermal wrapping that is integrated into the pipe manufacturing processes.