https://www.avient.com/knowledge-base/article/how-lightweight-automotive-components
Plastics inherently resist corrosion, eliminating concerns about rust and other forms of oxidation that can compromise metal components.
In addition, long fibers form a “3D network” within a molded part; this network supports parts even when a polymer begins to soften (creep), meaning LFTs are an excellent replacement for metal components in portions of the vehicle subject to high stress from extreme temperatures or pressure.
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Form 8937
https://www.avient.com/knowledge-base/article/how-lightweight-automotive-components?rtype[]=1164
Plastics inherently resist corrosion, eliminating concerns about rust and other forms of oxidation that can compromise metal components.
In addition, long fibers form a “3D network” within a molded part; this network supports parts even when a polymer begins to soften (creep), meaning LFTs are an excellent replacement for metal components in portions of the vehicle subject to high stress from extreme temperatures or pressure.
https://www.avient.com/knowledge-base/article/how-lightweight-automotive-components?sust[]=1165
Plastics inherently resist corrosion, eliminating concerns about rust and other forms of oxidation that can compromise metal components.
In addition, long fibers form a “3D network” within a molded part; this network supports parts even when a polymer begins to soften (creep), meaning LFTs are an excellent replacement for metal components in portions of the vehicle subject to high stress from extreme temperatures or pressure.
https://www.avient.com/news/polyone-accentuates-what’s-possible-application-specific-materials-and-design-npe-2018
Lactra™ SX Light Blocking Additive: In solid masterbatch form, this additive provides 99.99% UV and visible light blocking and protection for liquid dairy contents when added to monolayer PET bottles.
https://www.avient.com/idea/top-five-ways-enhance-ergonomics-healthcare-products
For soft orthotics, TPEs can form the entire orthotic part, be overmolded on top of a rigid sub-layer to give selective comfort and control or encase a viscous liquid material.
https://www.avient.com/knowledge-base/article/forming-methods-and-applications
Secondary forming of CFRTPs and methods for manufacturing complex geometries
Forming Methods
The design flexibility of thermoplastic resins enables the use of high-volume thermal forming manufacturing processes such as compression molding and vacuum forming with CFRTP materials.
https://www.avient.com/knowledge-base/article/forming-methods-and-applications?ind[]=6601
Secondary forming of CFRTPs and methods for manufacturing complex geometries
Forming Methods
The design flexibility of thermoplastic resins enables the use of high-volume thermal forming manufacturing processes such as compression molding and vacuum forming with CFRTP materials.
https://www.avient.com/knowledge-base/article/forming-methods-and-applications?ind[]=6596
Secondary forming of CFRTPs and methods for manufacturing complex geometries
Forming Methods
The design flexibility of thermoplastic resins enables the use of high-volume thermal forming manufacturing processes such as compression molding and vacuum forming with CFRTP materials.
https://www.avient.com/knowledge-base/article/forming-methods-and-applications?ind[]=21536
Secondary forming of CFRTPs and methods for manufacturing complex geometries
Forming Methods
The design flexibility of thermoplastic resins enables the use of high-volume thermal forming manufacturing processes such as compression molding and vacuum forming with CFRTP materials.