https://www.avient.com/knowledge-base/case-study/computer-mouse-goes-premium-soft-touch?pname[]=10734
A technical support team at Avient GLS Thermoplastic Elastomers conducted extensive compatibility testing to confirm proper bonding and overmolding onto the rigid substrate.
Avient and the manufacturer conducted a series of molding trials to establish proper part performance, and the teams also coordinated sales, engineering and technical support in tandem.
Reduce friction, noise, vibration and heat buildup with these wear-resistant formulations
https://www.avient.com/idea/rise-above-four-common-lightweighting-mistakes
Investigate processes that enable plastics and metal to be formed together, including insert molding and heat staking.
Therma-Tech™ Thermally Conductive Formulations
Stat-Tech™ Static Dissipative & Electrically Conductive Formulations
https://www.avient.com/resource-center?document_subtype=0&document_type=59&form_id=resource_filter_form&industry=0&op=FILTER RESULTS&product_family=0&product_name=0&page=26
Smart Alternative for Heat Dissipation Yields Savings
Read how a manufacturer cut heat sink costs and improved agility for LED lighting assemblies by replacing aluminum with Therma-Tech™ thermally conductive polymers
Polymer Heat Sinks for LED Lighting
https://www.avient.com/products/engineered-polymer-formulations/conductive-signal-radiation-shielding-formulations/edgetek
High heat resistance
Composite Heat Release Technology
Cesa™ Raise Heat Stability Modifier for APET Packaging
https://www.avient.com/products/polymer-additives/processing-enhancement-additives
Cesa™ Raise Heat Stability Modifier for APET Packaging
Composite Heat Release Technology
Cesa™ Raise Heat Stability Modifier for APET Packaging
https://www.avient.com/products/polymer-colorants/fluoropolymer-color-concentrates
Composite Heat Release Technology
Cesa™ Conductive Additives
Cesa™ Raise Heat Stability Modifier for APET Packaging
https://www.avient.com/sites/default/files/2024-07/Composite Heat Release Technology Product Bulletin.pdf
THERMAL INERTIA
Thermal conductivity has traditionally been the
primary metric considered for material selection
to manage heat.
It measures how well a material
absorbs energy in the form of heat but does not
measure how well it releases the heat.
Higher
density materials absorb more energy than lower
densities, so materials like steel have higher thermal
conductivity
than less-dense
ceramics.
https://www.avient.com/industries/transportation/trucking/trucking-lighting
Our products for lighting systems allow for maximum output, control heat, and withstand harsh conditions inside and outside the car.
LED useful life is affected by temperature, and aluminum heat sinks are prone to hot spots – to keep your lights cooler and running longer, replace aluminum with thermally conductive polymers
https://www.avient.com/knowledge-base/case-study/computer-mouse-goes-premium-soft-touch
A technical support team at Avient GLS Thermoplastic Elastomers conducted extensive compatibility testing to confirm proper bonding and overmolding onto the rigid substrate.
Avient and the manufacturer conducted a series of molding trials to establish proper part performance, and the teams also coordinated sales, engineering and technical support in tandem.
Reduce friction, noise, vibration and heat buildup with these wear-resistant formulations
https://www.avient.com/news/leading-edge-automotive-technology-relies-advanced-materials-polyone
Lightweight, thermally conductive materials that replace metal and help manage heat across sensitive electronics
In addition, PolyOne recently partnered with Integral Technologies Inc. to commercialize its long-fiber conductive ElectriPlast® material in electromagnetic and radio-frequency (EMI/RFI) shielding applications.