https://www.avient.com/resources/safety-data-sheets?page=2707
ORANGE NF 4
ORANGE NF 3
ORANGE NF 2
https://www.avient.com/sites/default/files/2020-07/sem-w-c-solutions-for-optical-fiber-cable-product-bulletin-a4.pdf
KEY CHARACTERISTICS • Faster processing speeds (up to 1,000 m/min) at low wall thickness (100 µm) • Increased chemical resistance • Lower gel migration • ECCOH 6153 UV - optimized for Teroson • ECCOH 6154 UV - optimized for Unigel • High color rendition and compatibility with Avient masterbatch • High UV resistance • Very low shrinkage MARKET & APPLICATIONS Optical Fiber Cables including: • Stranded loose tubes – gel-filled/dry • Micro-modules • Tight buffer applications – gel-filled/dry STANDARD COMPLIANCE • IEC 60794 • NF XP C93-850-1-1:2020 • EN 50289-4-17:2016 • ISO 4892:2016 • ST/CNET/5843 (1998) PRODUCT BULLETIN GEL MIGRATION PERFORMANCE ECCOH LSFOH 6153/6154 UV grades offer greater gel migration performance compared to alternative ECCOH grades.
https://www.avient.com/products/polymer-colorants/colorant-dispersions/stan-tone-wdn-water-based-dispersions
These dispersions are free from surfactants, wetting agents, glycols, de-foamers or other additives that could add complexity to your process.
https://www.avient.com/sites/default/files/2023-10/Syncure XLPE 200 Series DBDPE-free Grades Product Bulletin.pdf
PRODUCT BULLETIN Syncure™ XLPE Cross-linkable Polyethylene Formulations DBDPE-free solutions for low voltage cable systems The Syncure™ XLPE 200 Series is comprised of engineered, moisture cross-linkable solutions formulated without decabromodiphenyl ethane (DBDPE).
Extrudable and easy to process, these formulations are produced by crosslinking a polyethylene base resin and DBDPE-free catalyst using the Sioplas method, which offers significant advantages and economies over alternative crosslinking processes.
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 System Syncure XLPE S200FH Syncure XLPE S200FV Applications Building Wire, Tray Cable, Service Entrance Building Wire, Tray Cable, Service Entrance Specification UL 44 UL 44 Wire Type RHW-2, RHW, RHH, XHHW-2, XHH, XHHW, SIS RHW, RHH, RHW-2 Components 78% S1054A 22% SC5400-0002 RoHS MB ALT FR 50% S1054A 50% SC5400-0003 RoHS MB ALT FR Features Horizontal Flame, DBDPE-free VW-1, DBDPE-free General Properties Specific Gravity (g/cm3) 1.01 1.31 Hardness Shore D, 10sec 47 48 Gel % 68 70 Tensile Properties Tensile Strength (psi) 2800 3200 Elongation % 400 470 Tensile Retention % 95 100 Elongation Retention % 90 93 Electrical Dielectric Strength (V/mil) 1000 1200 Dielectric Constant 2.31 2.61 Dissipation Factor % 0.0012 0.0043 Thermal Temperature Rating °C 90 90 Heat Deformation % 10 5 TECHNICAL PROPERTIES
https://www.avient.com/sites/default/files/2022-03/CESA Slip Product Selector Guide.pdf
POLYMER FAMILY MATERIAL PRODUCT NAME DOSAGE Polyolefin PEAN698411 CESA Slip SS-PE-nf 0.5–6.0% Polyolefin PEASAF CESA Slip 6103 0.5–2.0% Polypropylene PPA0820052 CESA Slip PPA0820052 0.25–1.0% Polyamide ABA0698523 CESA Slip 78523 0.5–1.5% Polyester NBA0698495 CESA Slip 58495 1.0–2.0% Polycarbonate NCA0698440 CESA Slip 98440 0.5–2.5% Styrenic SLA0820006 CESA Slip SLA0820026 1.0–5.0% TPU RUA0820027 CESA Slip RUA0820027 1.0–3.0%
https://www.avient.com/news/dyneema-world-s-strongest-fiber-enables-ballistic-protection-solutions-without-pfas-amid-mounting-industry-concern-over-forever-chemicals
CLEVELAND – September 9, 2024 – Dyneema®, owned by Avient Corporation, a leading provider of specialty and sustainable materials solutions and services, is proud to provide ultra-high-molecular-weight polyethylene (UHMWPE) fiber, unidirectional (UD) composite fabric, and film materials that are manufactured without intentionally added per- and polyfluoroalkyl substances (PFAS) for hard and soft ballistic armor, helmets, and vehicle armor.
The Greenville site employs more than 400 American workers, 10% of whom are military veterans.
https://www.avient.com/knowledge-base/article/selecting-and-molding-high-performance-thermoplastics
Molding these high-temperature thermoplastics requires processing equipment capable of melt temperatures up to 400°C and mold temperatures up to 200°C.
It typically works best with a nozzle temperature between 360–400°C and a heated bed of 120°C.
https://www.avient.com/resources/safety-data-sheets?page=6001
https://www.avient.com/sites/default/files/2020-07/case-study-one-pager-therma-tech-automotive-plate-heat-exchanger-1.pdf
© 2019, All Right Reserved PolyOne Corporation, 33587 Walker Road, Avon Lake, Ohio USA 44012 AUTOMOTIVE PARTS MANUFACTURER P L A T E H E A T E X C H A N G E R • High thermal conductivity • Very good flow rate for thin walls • Chemical resistance to glycol • Good aging for both chemical & temperature resistance • Improved thermal performance by eliminating the effects of corrosion • Reduced overall part weight • Provided greater design freedom meaning a more complex part could be designed and molded • Enabled several heat exchangers to be consolidated into one, saving space in the vehicle and increasing efficiency Therma-Tech™ Thermally Conductive Formulation KEY REQUIREMENTS WHY AVIENT?
https://www.avient.com/sites/default/files/2021-09/zodiac-aquarius-product-bulletin-and-color-card.pdf
They are offered in ZFS (formaldehyde-containing) or NF (non-formaldehyde containing) ranges.