https://www.avient.com/industries/transportation/automotive/under-hood-components
Nymax™ & Bergamid™
https://www.avient.com/knowledge-base/case-study/improving-performance-protective-face-masks?rtype[]=1124
N95 masks, for example, rely on multi-layer construction, with a middle layer made from melt-blown non-woven material.
This masterbatch was necessary for the manufacture of melt-blown non-woven polypropylene used to make the protective face masks with long-lasting filtration properties.
By introducing additives with charge storage properties, “charge traps” were created to capture the electret charge being applied to melt-blown non-woven material.
https://www.avient.com/knowledge-base/case-study/improving-performance-protective-face-masks?ind[]=6598
N95 masks, for example, rely on multi-layer construction, with a middle layer made from melt-blown non-woven material.
This masterbatch was necessary for the manufacture of melt-blown non-woven polypropylene used to make the protective face masks with long-lasting filtration properties.
By introducing additives with charge storage properties, “charge traps” were created to capture the electret charge being applied to melt-blown non-woven material.
https://www.avient.com/knowledge-base/case-study/improving-performance-protective-face-masks?sust[]=1134
N95 masks, for example, rely on multi-layer construction, with a middle layer made from melt-blown non-woven material.
This masterbatch was necessary for the manufacture of melt-blown non-woven polypropylene used to make the protective face masks with long-lasting filtration properties.
By introducing additives with charge storage properties, “charge traps” were created to capture the electret charge being applied to melt-blown non-woven material.
https://www.avient.com/news/polyone-showcase-polymer-solutions-disinfectant-resistance-mdm-west-2016
Rigid vinyl: Resilience™ HC formulations provide field-tested, exceptional, chemical resistance across a range of disinfectant chemistries, combined with excellent melt flow, flame and UV resistance and attractive appearance.
Polymer sheet: Royalite™ fire-rated ABS sheet helps medical device OEMs meet stringent flame rating requirements while creating aesthetically appealing and easily machined and finished thermoformed housings and components.
https://www.avient.com/products/fiber-line-engineered-fiber-solutions/fiber-line-engineered-fiber-products/water-blocking-absorbing-yarn
Lightweight, strong and durable, with good heat, flame and chemical resistance
Lightweight, strong and durable, with good heat, flame and chemical resistance
https://www.avient.com/products/engineered-polymer-formulations/chemical-corrosion-resistant-formulations/trilliant-hc-healthcare-thermoplastics
These customizable formulations can replace traditional materials such as FR PC/ABS, FR PC/PET and FR COPE, offer improved chemical resistance to common disinfectants, achieve a UL 94 V-0 at 1.5 & V-1 at 0.75 flame rating when necessary, and can often be molded in existing PC/ABS tooling.
Chemically resistant replacement for FR PC/ABS, FR PC/PET & FR COPE providing UL 94 Yellow Card V-0 flame rating at 1.5 mm, V-1 at 0.75 mm thicknesses for a broad color spectrum
Outperforms FR PC/ABS, FR PC/PET and FR COPE in resistance to common disinfectants
https://www.avient.com/knowledge-base/case-study/improving-performance-protective-face-masks
N95 masks, for example, rely on multi-layer construction, with a middle layer made from melt-blown non-woven material.
This masterbatch was necessary for the manufacture of melt-blown non-woven polypropylene used to make the protective face masks with long-lasting filtration properties.
By introducing additives with charge storage properties, “charge traps” were created to capture the electret charge being applied to melt-blown non-woven material.
https://www.avient.com/knowledge-base/case-study/improving-performance-protective-face-masks?pname[]=17080
N95 masks, for example, rely on multi-layer construction, with a middle layer made from melt-blown non-woven material.
This masterbatch was necessary for the manufacture of melt-blown non-woven polypropylene used to make the protective face masks with long-lasting filtration properties.
By introducing additives with charge storage properties, “charge traps” were created to capture the electret charge being applied to melt-blown non-woven material.
https://www.avient.com/knowledge-base/case-study/improving-performance-protective-face-masks?psfam[]=20333
N95 masks, for example, rely on multi-layer construction, with a middle layer made from melt-blown non-woven material.
This masterbatch was necessary for the manufacture of melt-blown non-woven polypropylene used to make the protective face masks with long-lasting filtration properties.
By introducing additives with charge storage properties, “charge traps” were created to capture the electret charge being applied to melt-blown non-woven material.