https://www.avient.com/products/advanced-composites/pultrusion-and-continuous-filament-winding-technology/composite-heat-release-technology
This proprietary technology combines multiple layers of carbon fiber and ceramic composites applied to manufacturer-supplied steel bores, and leverages the principle of thermal inertia to accelerate heat dissipation from the barrel's bore.
Incorporates ceramic and carbon fiber reinforced composite onto a manufacturer provided, Sporting Arms and Ammunition Manufacturers’ Institute (SAAMI) compliant steel barrel blank
Continuous fiber-reinforced composites in standard and custom shapes & sizes
https://www.avient.com/knowledge-base/article/optimizing-automotive-structural-component-designs-advanced-modeling
Long fiber composites, in particular, are well-suited for replacing metal, offering exceptional strength-to-weight ratio and the ease of injection molding, which can expand design options and streamline processing steps.
Advanced computer-aided engineering (CAE) software, when complemented by in-depth design and material knowledge, facilitates precise prediction of the behavior of fiber-reinforced polymer materials.
For more technical details on the structural performance of reinforced polymers using CAE, automotive design engineers may access material data and models for Avient’s fiber-reinforced solutions using Hexagon’s Digimat-MX Tool.
https://www.avient.com/idea/advanced-composites-ballistic-protection
Continuous fiber composites add safety and security to the world we live in
Continuous fiber reinforced composites can be incorporated into traditional building materials and processes to add a new level of security.
Steel, precast and shock-absorbing concrete, ceramic matrix composites, and fiber-cement composites are all commonly used materials for blast and ballistic resistance.
https://www.avient.com/knowledge-base/article/optimizing-automotive-structural-component-designs-advanced-modeling?rtype[]=1164
Long fiber composites, in particular, are well-suited for replacing metal, offering exceptional strength-to-weight ratio and the ease of injection molding, which can expand design options and streamline processing steps.
Advanced computer-aided engineering (CAE) software, when complemented by in-depth design and material knowledge, facilitates precise prediction of the behavior of fiber-reinforced polymer materials.
For more technical details on the structural performance of reinforced polymers using CAE, automotive design engineers may access material data and models for Avient’s fiber-reinforced solutions using Hexagon’s Digimat-MX Tool.
https://www.avient.com/knowledge-base/article/bringing-global-vision-2020-s-usee-life
Since clinical trials began in 2016, this system has delivered correct-strength glasses to over 500,000 people in 67 countries.
Trained, local ‘refractionists’, assist in this process, and it takes approximately 15 minutes to deliver prescription glasses for less than $5 per pair.
https://www.avient.com/news/expanded-resound-r-tpe-portfolio-avient-launches-globally-over-80-percent-recycled-content-available-eu
In Europe, new patent-pending grades are formulated using recovered materials such as recycled polypropylene, recycled oil, and recycled glass filler.
Barrier technologies that preserve the shelf-life and quality of food, beverages, medicine and other perishable goods through high-performance materials that require less plastic
• Light-weighting solutions that replace heavier traditional materials like metal, glass and wood, which can improve fuel efficiency in all modes of transportation
• Breakthrough technologies that minimize wastewater and improve the recyclability of materials and packaging across a spectrum of end uses
https://www.avient.com/news/avient-launches-colormatrix-optica-specialty-toners-enhanced-polycarbonate-clarity-chinaplas-2021
It can and often does replace more traditional construction materials, such as glass and acrylic, in applications where transparency and clarity are important.
Examples include:
• Barrier technologies that preserve the shelf-life and quality of food, beverages, medicine and other perishable goods through high-performance materials that require less plastic
• Light-weighting solutions that replace heavier traditional materials like metal, glass and wood, which can improve fuel efficiency in all modes of transportation
• Breakthrough technologies that minimize wastewater and improve the recyclability of materials and packaging across a spectrum of end uses
https://www.avient.com/knowledge-base/article/bringing-global-vision-2020-s-usee-life?rtype[]=1164
Since clinical trials began in 2016, this system has delivered correct-strength glasses to over 500,000 people in 67 countries.
Trained, local ‘refractionists’, assist in this process, and it takes approximately 15 minutes to deliver prescription glasses for less than $5 per pair.
https://www.avient.com/knowledge-base/article/bringing-global-vision-2020-s-usee-life?ind[]=6598
Since clinical trials began in 2016, this system has delivered correct-strength glasses to over 500,000 people in 67 countries.
Trained, local ‘refractionists’, assist in this process, and it takes approximately 15 minutes to deliver prescription glasses for less than $5 per pair.
https://www.avient.com/sites/default/files/2023-11/Cesa Fiber Additives Hydrophobic for PP Nonwovens Product Bulletin.pdf
Cesa™ Fiber Additives
Hydrophobic Solutions for PP Nonwovens
Polypropylene nonwovens are used for a variety
of applications, some of which require water
repellency.
The Cesa™ Fiber Additives portfolio includes
hydrophobic solutions for polypropylene
nonwovens that provide immediate and long-lasting
water repellency.