https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=21506
Calcined kaolin is treated to improve its visual appearance and electrical properties.
Talc can, however, make scratches more visible in a highly filled compound; submicron talcs, surface-treated talcs, and anti-scratch additives can mitigate this effect.
It is critical to disperse metallic filler effectively in a compound to avoid backup at the injection mold gate, or opening, which can experience wear when exposed to high levels of metallic filler.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=6598
Calcined kaolin is treated to improve its visual appearance and electrical properties.
Talc can, however, make scratches more visible in a highly filled compound; submicron talcs, surface-treated talcs, and anti-scratch additives can mitigate this effect.
It is critical to disperse metallic filler effectively in a compound to avoid backup at the injection mold gate, or opening, which can experience wear when exposed to high levels of metallic filler.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=6601
Calcined kaolin is treated to improve its visual appearance and electrical properties.
Talc can, however, make scratches more visible in a highly filled compound; submicron talcs, surface-treated talcs, and anti-scratch additives can mitigate this effect.
It is critical to disperse metallic filler effectively in a compound to avoid backup at the injection mold gate, or opening, which can experience wear when exposed to high levels of metallic filler.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements
Calcined kaolin is treated to improve its visual appearance and electrical properties.
Talc can, however, make scratches more visible in a highly filled compound; submicron talcs, surface-treated talcs, and anti-scratch additives can mitigate this effect.
It is critical to disperse metallic filler effectively in a compound to avoid backup at the injection mold gate, or opening, which can experience wear when exposed to high levels of metallic filler.
https://www.avient.com/resource-center?document_type=1071&all=1
Learn more on how Avient's innovative dairy packaging solutions can help extend shelf life, block light effectively, enhance bottle performance, and reduce environmental impact.
https://www.avient.com/knowledge-base/article/protecting-polymers-microbe-growth?ind[]=6596
ZPT proved to be very effective in protecting TPEs, reducing common bacteria populations by 99.9% or more in JIS Z2801 testing, and inhibiting fungal growth (rating = 0) according to the ASTM G21 standard.
https://www.avient.com/knowledge-base/article/protecting-polymers-microbe-growth?ind[]=6599
ZPT proved to be very effective in protecting TPEs, reducing common bacteria populations by 99.9% or more in JIS Z2801 testing, and inhibiting fungal growth (rating = 0) according to the ASTM G21 standard.
https://www.avient.com/knowledge-base/case-study/enabling-recyclability-dairy-packaging?rtype[]=1124
Some single use applications contain various layered components, making it difficult for waste facilities to effectively separate and recycle the packaging.
https://www.avient.com/knowledge-base/case-study/enabling-recyclability-dairy-packaging?ind[]=6599
Some single use applications contain various layered components, making it difficult for waste facilities to effectively separate and recycle the packaging.
https://www.avient.com/knowledge-base/case-study/enabling-recyclability-dairy-packaging?sust[]=1137
Some single use applications contain various layered components, making it difficult for waste facilities to effectively separate and recycle the packaging.