https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance?rtype[]=1164
In the event of a crash or impact, high-strength polymers with good structural performance reduce the threat of deformation and fracture, minimizing the risk of leakage and exposure to hazardous materials.
Polymers can be processed at a lower cost than metals, reducing overall material expenses.
Using engineered polymers in electric vehicle batteries presents numerous advantages over traditional metal-based materials.
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance?ind[]=6601
In the event of a crash or impact, high-strength polymers with good structural performance reduce the threat of deformation and fracture, minimizing the risk of leakage and exposure to hazardous materials.
Polymers can be processed at a lower cost than metals, reducing overall material expenses.
Using engineered polymers in electric vehicle batteries presents numerous advantages over traditional metal-based materials.
https://www.avient.com/knowledge-base/case-study/andwin-scientific-innovation-improves-dosing-accuracy
During development and prototyping, the engineers used an SBS-type elastomer for this critical component – but they hadn’t settled on materials for mass production.
Andwin Scientific sought out a supplier, knowing that any materials needed to be inert to liquid medicines such as amoxicillin – not to mention FDA-compliant.
Avient’s knowledge of materials, applied to our specific needs, gave us better consistency and quality,” says Andwin Scientific General Manager Ryan Smith.
https://www.avient.com/investor-center/news/polyone-raises-outlook-fourth-quarter-2019-adjusted-earnings
The materials presented will reflect
is a premier provider of specialized polymer materials, services and solutions.
The company adds value to global customers and improves sustainability through formulating materials, such as:
https://www.avient.com/knowledge-base/article/injection-molding-mold-design?rtype[]=1164
Tough corrosion resistant material.
Sprue puller designs vary with the hardness of the material.
Material degradation
https://www.avient.com/knowledge-base/case-study/lightweighting-commercial-trucks-and-trailers
Using Polystrand materials extended the life of truck trailers and reduced weight to improve fuel economy.
The solution increased loading per square foot and provided a moisture and debris barrier, and because they are thermoplastic, these CFRTP materials can be more easily recycled compared to alternative materials.
https://www.avient.com/knowledge-base/article/polyketone-next-generation-sustainable-nylon-alternative?rtype[]=1164
Take a comprehensive look at the performance and sustainability benefits of this next-gen material solution.
In the current industrial landscape, fluctuations in nylon supply and the increasing demand for sustainability commitments and materials highlight the growing need for viable alternatives.
Polyketone material characteristics and benefits
https://www.avient.com/knowledge-base/case-study/lightweighting-commercial-trucks-and-trailers?pname[]=10716
Using Polystrand materials extended the life of truck trailers and reduced weight to improve fuel economy.
The solution increased loading per square foot and provided a moisture and debris barrier, and because they are thermoplastic, these CFRTP materials can be more easily recycled compared to alternative materials.
https://www.avient.com/knowledge-base/case-study/lightweighting-commercial-trucks-and-trailers?ind[]=6601
Using Polystrand materials extended the life of truck trailers and reduced weight to improve fuel economy.
The solution increased loading per square foot and provided a moisture and debris barrier, and because they are thermoplastic, these CFRTP materials can be more easily recycled compared to alternative materials.
https://www.avient.com/knowledge-base/article/lightweight-strong-and-custom-designed-perform?ind[]=6595
Historically, plywood and other materials have been used as structural panels across a variety of industries.
However, as sustainability initiatives grow and designs become increasingly complex, new material alternatives are needed.
They are custom engineered to meet specific performance requirements: core thickness can be varied to change stiffness, core materials can be selected to achieve weight targets, fiber choice can modify stiffness-to-weight ratio, and the polymer matrix choice affects strength.