https://www.avient.com/news/revolve-tactical-tripod-rolatube-stands-out-competition-polystrand-composites-avient
As an innovative alternative to the traditional telescoping configuration, the legs of the Revolve tripod are made with patented technology that flattens and rolls for storage.
Dyneema®, the world's strongest fiber™, enables unmatched levels of performance and protection for end-use applications, including ballistic personal protection, marine and sustainable infrastructure and outdoor sports
Unique technologies that improve the recyclability of products and enable recycled content to be incorporated, thus advancing a more circular economy
https://www.avient.com/news/specialty-wire-and-cable-solutions-featured-avient-wire-china-2023
Colorant Chromatics™ UV Laser Marking Technology for FEP allows a permanent and gentle marking of wire and cable surfaces.
This technology works well in aerospace applications, including optical fiber or data transmission cables.
Dyneema®, the world’s strongest fiber™, enables unmatched levels of performance and protection for end-use applications, including ballistic personal protection, marine and sustainable infrastructure and outdoor sports
https://www.avient.com/sites/default/files/2023-08/Swellcoat Yarns Product Bulletin.pdf
Our technology prevents moisture ingress, enabling a 100% dry-dry cable design.
KEY FEATURES • Swellcoat can be applied to any yarn in fiber optic cable • Precision wound for optimal cable production speed • Single & dual ends available • Low dust • Replaces messy gels • High stability package allows for higher output FIBER-LINE™ FIBERS SUITABLE FOR WATER BLOCKING YARN • Para-Aramid • PET Polyester (standard, low, ultra low shrink) fiber • Liquid Crystal Polymer (LCP) • Fiberglass • Dyneema® Ultra-High Molecular Weight Polyethylene (UHMWPE) FIBER-LINE PERFORMANCE-ADDITIVE COATINGS • Swellcoat Coatings: water absorbing protection • Swellcoat Blocker: blocks water migration • Non-wick/Anti-wick Coatings: water resistant shield FIBER-LINE WATER BLOCKING APPLICATIONS • Binder yarn • Buffer tube thread • Filler yarn • Ripcords • Strength members Copyright © 2023, Avient Corporation.
We believe that our ongoing commitment to be a leading sustainable organization and to remain at the forefront of fiber and coating technology will continue to drive the success of our customers, shareholders, and employees.
https://www.avient.com/news/polyone-wins-2015-ringier-plastics-technology-innovation-award
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PolyOne Wins 2015 Ringier Plastics Technology Innovation Award
Percept technologies are focused on helping customers enhance their brand and grow their business with intellectual property protection.
Ringier Plastics Technology Innovation Awards are a leading manufacturing-focused competition in China.
https://www.avient.com/investor-center/news/avient-hires-dr-vinod-purayath-chief-technology-officer
Purayath later joined Applied Materials, as the technology leader for its new Selective Removal Products business, and most recently served as Vice President, Process Technology for SunRise Memory.
Massachusetts Institute of Technology
PSG College of Technology
https://www.avient.com/news/polyone-launches-authentication-technologies-asia-chinaplas-2014
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PolyOne Launches Authentication Technologies in Asia at Chinaplas 2014
SHANGHAI – PolyOne Corporation (NYSE: POL) is introducing its Percept™ Authentication Technologies in Asia this week at Chinaplas 2014.
PolyOne provides confidential, expert assistance with technology choice, design, usage, process, product, and specification development.
https://www.avient.com/sites/default/files/2021-10/microbial-susceptibility-of-various-polymers-and-evaluation.pdf
From a product-type viewpoint, flexible polyvinyl chloride (PVC) and poly(urethane)-foam-based applications have used biocides for decades.[8,9] PVC is especially vulnerable to attack from fungi and bacteria due to extensive plasticizer usage in flexible applications.[ 10] Poly(urethane) foams are another notable consumer of biocides because of their porous nature, which pro- vides an ideal environment for microbes to grow.[11,12] Therefore, it is not surprising that many applications based on these two materials have significant usage of biocides; commonly, oxybisphenoxarsine or lower toxic- ity alternatives such as zinc pyrithione (ZPT) antimicro- bials are employed.[10] Specific example applications include kitchen and bath accessories, swimming pool liners, carpet backing, sleep solutions like mattresses and pillows, roofing membranes, and tiles.
To reduce the incidence of device-associated infections, antimicrobial technologies have been utilized in a variety of ways ranging from bulk-imbedded additives to sur- face grafting techniques.[13,14] In particular, silver-based additive technologies are frequently explored for healthcare applications due to their favorable toxicological profiles and broader regulatory approvals, while silver nanoparticles with controlled, long-term release profiles continue to be a very active and promising area of biomedi- cal research.[15-19] In textile segments such as sports active- wear, biocides are used to prevent the growth of odor- causing bacteria from perspiration.[20,21] Additionally, high-end recreational products such as boats utilize bio- cides to preserve the aesthetics of PVC products used for seat covers since bacterial growth may lead to pink staining caused by specific bacterial metabolites.[22,23] With respect to the mechanism of action, many antimicrobial products work by attacking enzymes common to a variety of microbes, interfering with membrane transport processes (e.g., importing environmental copper into the cells) as well as interfering with iron metabolism pathways.[24,25] Herein, an assortment of both rigid and flexible resins/ compounds will be evaluated for susceptibility to determine whether particular resin chemistries or compounds are inherently vulnerable to microbial growth and subsequent degradation or other deleterious effects.
Samples were prepared via extrusion utilizing a Leistritz ZSE 27 mm co-rotating twin-screw extruder (Leistritz Advanced Technologies Corp., Nuremberg, Germany), followed by injection molding of 5 � 600 (12.7 � 15.24 cm) plaques, 0.12500 (3.175 mm) thickness using a Milacron™ Roboshot™ S2000i.1 For antimicro- bial testing, specified test specimens were prepared from the aforementioned plaques.
https://www.avient.com/news/emerging-mobility-technologies-gain-momentum-advanced-materials-polyone
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Emerging Mobility Technologies Gain Momentum with Advanced Materials from PolyOne
In response, we've developed materials for advanced mobility technologies that meet performance and productivity challenges.”
PolyOne's advanced mobility portfolio of materials and solutions offers the enhanced design flexibility and material performance needed to commercialize these new technologies.
https://www.avient.com/investor-center/news/polyone-drives-textile-industry-sustainability-and-innovation-fiber-colorant-technology
Recent commercial projects for this technology include textiles for high performance sports apparel, automobiles, home furnishings, and carpeting.
Our advanced fiber colorant technology is critical to helping these manufacturers address sustainability, production flexibility, and speed-to-market goals to stay on top of these trends."
View original content:http://www.prnewswire.com/news-releases/polyone-drives-textile-industry-sustainability-and-innovation-with-fiber-colorant-technology-300601493.html
https://www.avient.com/news/polyone-expands-india-new-tpe-line-and-technology-center
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PolyOne Expands in India with New TPE Line and Technology Center
Both the new TPE line and Technology Centre are staffed by dedicated and highly skilled associates.
PHOTO CAPTION: PolyOne Expands in India with New TPE Line and Technology Centre