https://www.avient.com/knowledge-base/article/material-solutions-expanding-ev-charging-infrastructure?sust[]=1135
As the adoption of electric vehicles (EVs) rapidly increases, the demand for a more expansive charging infrastructure is also growing.
Antimicrobial and antifungal additives can protect the user interfaces and touchpoints from mold, mildew, and bacteria, while antistatic and conductive formulations can prevent static discharge and create safer, statically dissipated plastic parts.
Learn more about Avient's colorant and additive solutions for EV charging equipment
https://www.avient.com/knowledge-base/article/material-solutions-expanding-ev-charging-infrastructure?sust[]=1136
As the adoption of electric vehicles (EVs) rapidly increases, the demand for a more expansive charging infrastructure is also growing.
Antimicrobial and antifungal additives can protect the user interfaces and touchpoints from mold, mildew, and bacteria, while antistatic and conductive formulations can prevent static discharge and create safer, statically dissipated plastic parts.
Learn more about Avient's colorant and additive solutions for EV charging equipment
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance
Engineered polymers can be designed with specific thermal properties, possessing either excellent thermal conductivity or enabling efficient heat dissipation from the battery cells.
Thermally conductive formulations can also be electrically isolative or conductive, combining thermal performance with protection from electrostatic discharge and electromagnetic interference, depending on the needs of the specific component.
Discover Avient's Solutions for EV Batteries
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance?rtype[]=1164
Engineered polymers can be designed with specific thermal properties, possessing either excellent thermal conductivity or enabling efficient heat dissipation from the battery cells.
Thermally conductive formulations can also be electrically isolative or conductive, combining thermal performance with protection from electrostatic discharge and electromagnetic interference, depending on the needs of the specific component.
Discover Avient's Solutions for EV Batteries
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance?ind[]=6601
Engineered polymers can be designed with specific thermal properties, possessing either excellent thermal conductivity or enabling efficient heat dissipation from the battery cells.
Thermally conductive formulations can also be electrically isolative or conductive, combining thermal performance with protection from electrostatic discharge and electromagnetic interference, depending on the needs of the specific component.
Discover Avient's Solutions for EV Batteries
https://www.avient.com/resource-center?document_type=59&page=27
Avient Resources
Trilliant™ Electrically Conductive Formulations for Pipette Tips - Application Bulletin (Chinese)
Explore how Trilliant™ conductive formulations help solve the performance challenges for pipette tip applications (Chinese language version)
https://www.avient.com/resource-center?document_type=59&document_subtype=0&industry=0&product_family=0&product_name=0&op=FILTER RESULTS&form_id=resource_filter_form&page=27
Avient Resources
Trilliant™ Electrically Conductive Formulations for Pipette Tips - Application Bulletin (Chinese)
Explore how Trilliant™ conductive formulations help solve the performance challenges for pipette tip applications (Chinese language version)
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance?ind[]=21509
Engineered polymers can be designed with specific thermal properties, possessing either excellent thermal conductivity or enabling efficient heat dissipation from the battery cells.
Thermally conductive formulations can also be electrically isolative or conductive, combining thermal performance with protection from electrostatic discharge and electromagnetic interference, depending on the needs of the specific component.
Discover Avient's Solutions for EV Batteries
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance?sust[]=1165
Engineered polymers can be designed with specific thermal properties, possessing either excellent thermal conductivity or enabling efficient heat dissipation from the battery cells.
Thermally conductive formulations can also be electrically isolative or conductive, combining thermal performance with protection from electrostatic discharge and electromagnetic interference, depending on the needs of the specific component.
Discover Avient's Solutions for EV Batteries
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance?sust[]=1133
Engineered polymers can be designed with specific thermal properties, possessing either excellent thermal conductivity or enabling efficient heat dissipation from the battery cells.
Thermally conductive formulations can also be electrically isolative or conductive, combining thermal performance with protection from electrostatic discharge and electromagnetic interference, depending on the needs of the specific component.
Discover Avient's Solutions for EV Batteries