https://www.avient.com/products/engineered-polymer-formulations/sustainable-formulations/gravi-tech-lead-replacement-formulations
Corrosion resistance that withstands oxidization for long-term use and benefit
Product description, value solution, characteristics, markets and end-use applications (Chinese language version)
See how advanced materials can help your products compete and deliver on performance
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance
Discover the advantages of using engineered polymers in EV battery applications.
While most batteries are traditionally metal-based, there are significant advantages to using polymers (plastics) instead, especially with recent advancements in polymer science that make using these materials in electric vehicle batteries possible.
So, how can engineered polymers enhance EV battery design and performance?
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance?rtype[]=1164
Discover the advantages of using engineered polymers in EV battery applications.
While most batteries are traditionally metal-based, there are significant advantages to using polymers (plastics) instead, especially with recent advancements in polymer science that make using these materials in electric vehicle batteries possible.
So, how can engineered polymers enhance EV battery design and performance?
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance?ind[]=6601
Discover the advantages of using engineered polymers in EV battery applications.
While most batteries are traditionally metal-based, there are significant advantages to using polymers (plastics) instead, especially with recent advancements in polymer science that make using these materials in electric vehicle batteries possible.
So, how can engineered polymers enhance EV battery design and performance?
https://www.avient.com/products/vinyl-formulations/vinyl-plastisols-organosols/core-vinyl-organosols
In liquid form, organosols can be used to apply a hard, tough film up to 15 mils thick.
See how our specially formulated colorants can help differentiate your brand
https://www.avient.com/products/polymer-additives/additive-dispersions/silcosperse-ec-electrically-conductive-additive-dispersions
This makes them suitable for a variety of uses and end markets, including transportation, energy, electrical & electronics, and films & coatings.
Learn more about how Silcosperse™ EC additive dispersions provide varying levels of electrical conductivity to silicone material
https://www.avient.com/products/polymer-additives/clarifier-additives/cesa-nucleant-additives
Cesa™ Nucleant Additives are mainly used to clarify PP resin.
See how our specially formulated colorants can help differentiate your brand
https://www.avient.com/knowledge-base/article/three-ways-enhance-cosmetic-packaging-chemically-compatible-thermoplastic-elastomers-tpes
Discover how thermoplastic elastomers (TPEs) that withstand oils, solvents, and more are helping brand owners and converters create cosmetic packaging that lasts.
Silicones and the standard TPEs traditionally used in cosmetic packaging present several tradeoffs.
https://www.avient.com/industries/healthcare/drug-delivery-systems/auto-injectors-and-drug-delivery-pens
Learn how chemically resistant Trilliant™ HC thermoplastics and Versaflex™ HC TPEs provide enhanced durability to withstand common hospital cleaners and disinfectants
Learn how Mevopur™ Healthcare Functional Additives help protect and enhance the performance of polymers used in healthcare applications
https://www.avient.com/products/engineered-polymer-formulations
Sync design with manufacturability: Learn about how Avient Design can help simplify your new product development process
Navigating the Challenges of Semiconductor Packaging with Specialty Polymer Solutions
Learn more about the challenges of semiconductor packaging and how we can help.
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Rethinking Materials for Automotive Aftermarket Parts
Making the Switch from Metal to Plastic Using Long Fiber Thermoplastics
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Chemically Resistant Polymers for Next-Generation Devices
Preventing environmental stress cracking in consumer and healthcare applications.