https://www.avient.com/content/long-fiber-pultrusion-manufacturing-process
Strands then pass through a puller unit which keeps the manufacturing process continuously operating and provides its pultrusion (pulled extrusion) name.
https://www.avient.com/products/polymer-additives/visual-enhancement-effects/cesa-mat-additives
Available in a number of different carriers ranging from polyolefins and styrenics to engineering resins: injection molding, blow molding, film and sheet extrusion, PET sheets and bottles, polyolefin films.
https://www.avient.com/products/polymer-additives/processing-enhancement-additives/cesa-release-additives
Reusable concentrates significantly reduce time spent cleaning extrusion and injection molding equipment.
https://www.avient.com/products/polymer-additives/processing-enhancement-additives/cesa-dry-additives
Reusable concentrates significantly reduce time spent cleaning extrusion and injection molding equipment.
https://www.avient.com/sites/default/files/2022-12/Mevopur Healthcare Functional Additives Medical Devices Application Bulletin.pdf
Mevopur™ Healthcare Functional Additives
for Medical Devices and Diagnostic Equipment
Mevopur™ Healthcare Functional Additives help
protect and enhance the performance of polymers
used in applications, such as medical housings, drug
delivery devices, syringes and needles, diagnostics,
and catheters.
It is the responsibility of the medical device manufacturer and the person placing the medical device on the market to ensure compliance of the medical device with all applicable laws and regulations, including
the suitability of all raw materials and components used for its manufacture.
https://www.avient.com/knowledge-base/article/whats-difference-tpes-vs-silicones?ind[]=6596
In Handbook of Polymer Applications in Medicine and Medical Devices,¹ Laurence W.
LSR has a long-standing track record of use in the medical industry.
Medical-grade TPEs can rival LSR in biocompatibility performance, depending on their chemistry.
https://www.avient.com/knowledge-base/article/whats-difference-tpes-vs-silicones?ind[]=6598
In Handbook of Polymer Applications in Medicine and Medical Devices,¹ Laurence W.
LSR has a long-standing track record of use in the medical industry.
Medical-grade TPEs can rival LSR in biocompatibility performance, depending on their chemistry.
https://www.avient.com/knowledge-base/article/whats-difference-tpes-vs-silicones?ind[]=6601
In Handbook of Polymer Applications in Medicine and Medical Devices,¹ Laurence W.
LSR has a long-standing track record of use in the medical industry.
Medical-grade TPEs can rival LSR in biocompatibility performance, depending on their chemistry.
https://www.avient.com/knowledge-base/article/whats-difference-tpes-vs-silicones?rtype[]=1164
In Handbook of Polymer Applications in Medicine and Medical Devices,¹ Laurence W.
LSR has a long-standing track record of use in the medical industry.
Medical-grade TPEs can rival LSR in biocompatibility performance, depending on their chemistry.
https://www.avient.com/knowledge-base/article/whats-difference-tpes-vs-silicones
In Handbook of Polymer Applications in Medicine and Medical Devices,¹ Laurence W.
LSR has a long-standing track record of use in the medical industry.
Medical-grade TPEs can rival LSR in biocompatibility performance, depending on their chemistry.