https://www.avient.com/products/thermoplastic-elastomers/resound-ultra-low-carbon-footprint-tpes
Reduce Carbon Emissions
Important information about the health, safety and environmental impacts of Avient products.
Browse and download our literature to learn more about Avient solutions and services.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?rtype[]=1164
Add aramid fiber and the material can be bullet proof.
For every polymer form and function, there is a mineral, fiber, metal or carbon filler that will maximize its performance.
Calcium Carbonate
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials
Home //
Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?sust[]=1165
Home //
Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?sust[]=1136
Home //
Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?pname[]=19476
Home //
Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?ind[]=6595
Home //
Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.
https://www.avient.com/knowledge-base/article/continuous-fiber-reinforced-thermoplastic-composites
Continuous fiber reinforced thermoset composites combine high molecular weight resins with glass or carbon fibers.
Fiber Volume
Fiber volume is the ratio of fiber to resin in a composite structure.
https://www.avient.com/knowledge-base/article/continuous-fiber-reinforced-thermoplastic-composites?rtype[]=1164
Continuous fiber reinforced thermoset composites combine high molecular weight resins with glass or carbon fibers.
Fiber Volume
Fiber volume is the ratio of fiber to resin in a composite structure.
https://www.avient.com/sites/default/files/2021-06/fl.us-.datasheet-carbon-fiber.pdf
CARBON FIBER FIBERS PROCESSES PRODUCTS
Molecular Structure
Chemical Name
Carbon, Graphite.
Manufacturer
FIBER-LINE® works with a multitude of Carbon fiber manufacturers.
Carbon fiber can also be produced from other carbon-rich precursors
such as Pitch & Rayon.