https://www.avient.com/knowledge-base/case-study/color-simulation-tool-alleviates-recycling-challenges?sust[]=1137
Manufacturers use diverse PCR sources with differing colors, darkness and opacity, while specific PCR grade availability can be unreliable.
All color-related factors can vary within a brand, making a consistent coloration difficult, time-consuming and costly.
Avient developed a Color Simulation Tool to calculate the final color of a PCR-based end article and that can be used to:
https://www.avient.com/products/polymer-additives/clarifier-additives/hiformer-clearview-clarifiers-polypropylene
By increasing the rate of crystallization, Hiformer™ Clearview™ clarifiers can help improve part aesthetics and processing efficiency.
Reduced cooling time and product shrinkage can help shorten cycle times and reduce scrap to increase productivity and help you succeed on the factory floor and the supermarket shelves.
See how our specially formulated colorants can help differentiate your brand
https://www.avient.com/knowledge-base/article/composites-explained
However, the combinations of materials that make up the composites themselves can be as varied as the end-uses.
A thermoplastic is not cross-linked, so it can be re-melted and re-formed, much like an ice cube that can melt and re-freeze.
https://www.avient.com/knowledge-base/article/top-5-ways-uv-light-blocking-additives-improve-pet-beverage-packaging
An additive that provides broadband UV blocking can be used to meet content protection requirements no matter where your production is located.
This can help brand owners meet the increasing global demand for healthier drinks with fewer preservatives and stabilizing compounds.
Where UV barrier addition rates are low, they can also offer cost and process efficiencies over opaque coloration or sleeve shrink wrapping.
https://www.avient.com/knowledge-base/article/composites-explained?rtype[]=1164
However, the combinations of materials that make up the composites themselves can be as varied as the end-uses.
A thermoplastic is not cross-linked, so it can be re-melted and re-formed, much like an ice cube that can melt and re-freeze.
https://www.avient.com/knowledge-base/article/continuous-fiber-reinforced-thermoplastic-composites
These factors can help determine which material best suits a particular application, based on processing and functional requirements.
These products can operate at high temperatures and have strong mechanical properties.
These parts can be molded with assembly features in place to reduce product fabrication and secondary operations.
https://www.avient.com/knowledge-base/article/continuous-fiber-reinforced-thermoplastic-composites?rtype[]=1164
These factors can help determine which material best suits a particular application, based on processing and functional requirements.
These products can operate at high temperatures and have strong mechanical properties.
These parts can be molded with assembly features in place to reduce product fabrication and secondary operations.
https://www.avient.com/knowledge-base/case-study/improving-quality-100-recycled-pet-rpet-content
PET packaging can be easily recycled, yet plastic packaging waste in landfills and oceans is increasing worldwide.
During the recycling process, aesthetics and oxygen scavenging performance can be negatively affected.
The scavenger in the closure can be separated from the PET during recycling and closures are 100% compatible with the closure recycle stream.
https://www.avient.com/knowledge-base/case-study/color-simulation-tool-alleviates-recycling-challenges
Manufacturers use diverse PCR sources with differing colors, darkness and opacity, while specific PCR grade availability can be unreliable.
All color-related factors can vary within a brand, making a consistent coloration difficult, time-consuming and costly.
Avient developed a Color Simulation Tool to calculate the final color of a PCR-based end article and that can be used to:
https://www.avient.com/knowledge-base/case-study/improving-quality-100-recycled-pet-rpet-content?ind[]=6599
PET packaging can be easily recycled, yet plastic packaging waste in landfills and oceans is increasing worldwide.
During the recycling process, aesthetics and oxygen scavenging performance can be negatively affected.
The scavenger in the closure can be separated from the PET during recycling and closures are 100% compatible with the closure recycle stream.