https://www.avient.com/knowledge-base/case-study/closing-loop-post-consumer-recycled-pet-beverage-bottles?sust[]=1135
PET is a popular material choice for food and beverage packaging, affording high clarity with design flexibility.
Avient’s solution provides our customers with the robust barrier properties required for PET rigid containers, but with negligible effects on efficacy for rPET.
https://www.avient.com/resource-center/knowledge-base/case-study/closing-loop-post-consumer-recycled-pet-beverage-bottles
PET is a popular material choice for food and beverage packaging, affording high clarity with design flexibility.
Avient’s solution provides our customers with the robust barrier properties required for PET rigid containers, but with negligible effects on efficacy for rPET.
https://www.avient.com/resource-center/knowledge-base/case-study/bic-amplifies-sustainable-razor-design-recycled-content-material?ind%5B0%5D=6596
When BIC engineers were challenged to incorporate more recycled materials in a new sustainable women’s razor, they found answers in Avient’s sustainable solutions.
Formulated to achieve 62 percent recycled content, this high-performance TPE enabled BIC to create products that live up to its sustainability promises.
https://www.avient.com/resource-center/knowledge-base/case-study/bic-amplifies-sustainable-razor-design-recycled-content-material?rtype%5B0%5D=1124
When BIC engineers were challenged to incorporate more recycled materials in a new sustainable women’s razor, they found answers in Avient’s sustainable solutions.
Formulated to achieve 62 percent recycled content, this high-performance TPE enabled BIC to create products that live up to its sustainability promises.
https://www.avient.com/resource-center/knowledge-base/case-study/bic-amplifies-sustainable-razor-design-recycled-content-material
When BIC engineers were challenged to incorporate more recycled materials in a new sustainable women’s razor, they found answers in Avient’s sustainable solutions.
Formulated to achieve 62 percent recycled content, this high-performance TPE enabled BIC to create products that live up to its sustainability promises.
https://www.avient.com/resource-center/knowledge-base/case-study/bic-amplifies-sustainable-razor-design-recycled-content-material?ind%5B0%5D=21537
When BIC engineers were challenged to incorporate more recycled materials in a new sustainable women’s razor, they found answers in Avient’s sustainable solutions.
Formulated to achieve 62 percent recycled content, this high-performance TPE enabled BIC to create products that live up to its sustainability promises.
https://www.avient.com/resource-center/knowledge-base/case-study/bic-amplifies-sustainable-razor-design-recycled-content-material?pname%5B0%5D=17849
When BIC engineers were challenged to incorporate more recycled materials in a new sustainable women’s razor, they found answers in Avient’s sustainable solutions.
Formulated to achieve 62 percent recycled content, this high-performance TPE enabled BIC to create products that live up to its sustainability promises.
https://www.avient.com/sites/default/files/2020-07/case-study-one-pager-eccoh-6154-optical-fiber-cable.pdf
GLOBAL CABLE MANUFACTURER M I C R O M O D U L E S F O R O P T I C A L F I B E R C A B L E S Meet specific standards for stranded, loose tube, optical fiber cable performance and production, including: • High speed processing at a low wall thickness • Good colorability • Resistance to chemicals and filling compounds • UV ageing performance • Low shrinkage • Enabled faster processing speeds and manufacturing consistency with a reliable material, eliminating waste • Enabled easier installation with excellent colorability at low wall thickness • Provided technical support to transfer the product to multiple plants ECCOH LSFOH 6154 UV KEY REQUIREMENTS WHY AVIENT?
AVIENT SOLUTION PROCESSABILITY + COLORABILITY LEARN MORE © 2020, All Right Reserved Avient Corporation, 33587 Walker Road, Avon Lake, Ohio USA 44012 https://www.polyone.com/products/engineered-polymer-formulations/eco-conscious-formulations/eccoh-low-smoke-and-fume-non-halogen-formulations Global cable manufacturer
https://www.avient.com/sites/default/files/2024-08/Silcopas Airbags Case Study Snapshot.pdf
TEXTILE MANUFACTURER A U T O M O T I V E A I R B A G C O A T E D F A B R I C • Rapid development of color-coated, high-performance fabric for global OEM airbag system • Custom-colored silicone paste dispersion for liquid silicone rubber (LSR) • Excellent dispersion with color consistency to meet regulatory demands and monitor coating performance • Offered specialized customer support to provide materials quickly while working with all stakeholders • Provided customizable color-matching helping to reinforce brand equity • Delivered exceptional quality and regulatory knowledge to adhere to industry safety standards and track internal performance Silcopas Silicone Paste Colorants KEY REQUIREMENTS WHY AVIENT?
AVIENT SOLUTION QUALITY + CONSISTENCY © 2024, Avient Corporation, All Rights Reserved.
LEARN MORE https://www.avient.com/products/polymer-colorants/colorant-dispersions/colorants-liquid-silicone-rubber Slide 1: Textile manufacturer
https://www.avient.com/sites/default/files/2021-10/gls-tpes-with-antimicrobial-technologies-product-bulletin.pdf
Developed for the preservation of high-touch surfaces and applications, these formulations contain antimicrobial additives that continuously inhibit the growth of bacteria, fungus, and molds that cause odor and detrimental aesthetic and mechanical property changes to the finished plastic part.
Avient makes no warranties or guarantees respecting suitability of either Avient’s products or the information for your process or end-use application.
This literature shall NOT operate as permission, recommendation, or inducement to practice any patented invention without permission of the patent owner. 1.844.4AVIENT www.avient.com Take a closer look at the research and testing behind TPEs with antimicrobial additives in our white paper published in Polymer Engineering & Science. https://doi.org/10.1002/pen.25815 https://doi.org/10.1002/pen.25815