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.
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.
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.
https://www.avient.com/products/engineered-polymer-formulations/conductive-signal-radiation-shielding-formulations/edgetek
Colorant Chromatics™ Conductive Formulations
Colorant Chromatics™ Conductive Formulations
Cesa™ Conductive Additives
https://www.avient.com/products/polymer-additives/corrosion-resistant-additives/cesa-cor-additives
Conductive, Signal & Radiation Shielding Formulations
The design and lightweighting benefits of thermoplastics with the conductive performance of metal
https://www.avient.com/products/polymer-additives/electrical-performance-additives
Cesa™ Conductive Additives
Cesa™ Conductive Additives
Cesa™ Conductive Additives
https://www.avient.com/sites/default/files/2022-12/Mevopur Healthcare Colorants and Formulations for Needle Hubs Application Bulletin.pdf
Mevopur™ Healthcare Colorants and Formulations for Needle and Catheter Hubs APPLICATION BULLETIN * FDA/EU compliance information available upon request To help our customers meet healthcare industry standards, Avient offers a range of standard colors for needle hubs, canula hubs and wings matching the color coding of the ISO 6009 standard.
KEY CHARACTERISTICS • Manufactured at four ISO 13485 certified sites, providing global consistency and increased security of supply • Documented change control beyond CAS number, reducing risk of change • Non-phthalate and formulated without animal-derived substances • Color can be combined with additives to enhance performance and protection REGULATORY SUPPORT • Raw materials tested to: - ISO 10993-1 and USP biological evaluation - European Pharmacopeia 3.1.3/3.1.5 (polyolefin) - USP (polyethylene) - ICH Q3D elemental impurities • Registered Device Master File • Food contact established with FDA/EU* NOMINAL OUTSIDE DIAMETER OF NEEDLE (MM) COLOR DESCRIPTION RAL PANTONE TRANSPARENT PRODUCT CODE OPAQUE PRODUCT CODE 0.4 Medium Grey 7035 423 C PP7M665125 PP7M665127 0.45 Brown 8017 7588 C PP8M665294 PP8M665296 0.5 Orange 2003 173 C PP2M665298 PP2M665300 0.55 Medium Purple 4005 7676 C PP4M665290 PP4M665292 0.6 Deep Blue 5010 288 C PP5M665894 PP5M665896 0.7 Black 9005 Black C PP9M664950 PP9M664952 0.8 Deep Green 6001 7483 C PP6M665687 PP6M665689 0.9 Yellow 1021 115 C PP1M665211 PP1M665213 1.1 Cream 1015 7401 C PP0M665290 PP0M665292 1.2 Pink 3015 502 C PE3M665725 PP3M665727 Healthcare use limitations apply—see below.
You have the responsibility to conduct full-scale end-product performance testing to determine suitability in your application, and you assume all risk and liability arising from your use of the information and/or use or handling of any product.
https://www.avient.com/sites/default/files/2020-10/avient-conflict-minerals-policy-10.2020.pdf
We conduct business in a manner intended to avoid intentionally or knowingly contributing to such abuses.
As stated in our Code of Conduct, “we strive to create a world-class sustainable organization, by conducting business in a way that meets the needs of the present without compromising the ability of future generations to meet their own needs.
This includes annually conducting a reasonable due diligence inquiry of our suppliers into the source and conflict status of any 3TG metals contained in Avient products that are within the scope of the Act.
https://www.avient.com/sites/default/files/2021-04/trilliant-hc-conductive-pipette-case-study.pdf
CONDUCTIVE PIPETTE TIP MANUFACTURER ACHIEVES SIGNIFICANT SAVINGS © 2021, All Rights Reserved Avient Corporation, 33587 Walker Road, Avon Lake, Ohio USA 44012 To learn more about Trilliant™ HC, contact Avient at +1.844.4AVIENT (1.844.428.4368) or visit us at avient.com.
THE CHALLENGE A manufacturer of high-quality laboratory research products was eager to expand into the conductive pipette tip market.
Conductive pipette tips are primarily used in automated laboratory and production settings with robotic pipettors to measure and dispense exact amounts of liquid.
https://www.avient.com/knowledge-base/article/how-lightweight-automotive-components?ind[]=6601
If heat dissipation is the primary driver, thermally conductive polymers could be an excellent alternative.
With thermally conductive polymers, it is possible to reach thermal conductivities up to 20 W/m⋅K (in-plane).
Thermally conductive plastics help dissipate the heat, adding life to the fixture while offering additional design and manufacturing benefits.