https://www.avient.com/industries/energy/solar
Syncure™ Crosslinked Polyethylene Formulations
https://www.avient.com/sites/default/files/2022-08/Pipe wrap translation - Application Snapshot.pdf
R E I N F O RC E D
T H E R M O P L A S T I C P I P E
F O R O I L + G A S
• Reinforcement for HDPE pipe to meet the performance of
traditional steel pipe for oil and gas applications
• Temperature performance up to 65˚C with operating
pressure up to 1500 psi
• Spoolable, lightweight material to simplify transport and
installation
• Provided material compatibility with HDPE
and added reinforcement to meet burst
strength requirements
• Customized tape thickness to meet specific
processing needs
• Ensured supply chain reliability with fast
delivery and quality control in North America
• Flexible, reinforced plastic solution enabled
spoolable pipe and reduced weight
Polystrand™ Continuous Glass Fiber
Reinforced Polyethylene Tape
KEY REQUIREMENTS
WHY AVIENT?
https://www.avient.com/sites/default/files/2021-01/wire-and-cable-one-pager.pdf
APPLICATIONS: Power cables, Ethernet category cables, industrial cables, solar installation cables, coaxial cables,
fiber optics, hybrid cables
SYNCURE™
Cross-Linked Polyethylene for Power Cable Insulation
• Resistant to heat, oil, creep and abrasion
• Fast extrusion speeds
• UL 44 & UL 4703 flame performance
• UL/CSA bulletins
MAXXAM™ FR W&C
Flame Retardant Polypropylene for Category Cable
Insulation and Cross-Webs
• Alternative to FEP
• Low dielectric
• Thin wall extrusion capabilities
• UL 94 & plenum yellow card, V-2, V-0 & 5VA
fire performance ratings
FIRECON™
Flame Retardant Chlorinated Polyethylene
for Industrial Cable Jackets
• Resistance to harsh environments
• Low temperature properties
• UV resistance
• UL 44 flame performance
ECCOH™ LSFOH
Low Smoke and Fume, Non-Halogen for Insulation
and Jackets
• Low smoke and toxicity
• Improved fire safety
• Resistance to chemicals
• UL44 and CPR flame performance
ADDITIONAL SOLUTIONS
MAXXAM™ SY
Foamed Polypropylene for Coaxial Cable Insulation
SYNPRENE™
Flame Retardant Thermoplastic Elastomers
POLYMIX™
Customer Proprietary Formulations
For more information, please visit avient.com
or call +1.844.4AVIENT (+1.844.428.4368).
https://www.avient.com/sites/default/files/2020-11/syncure-xlpe-processing-guide.pdf
PROCESSING GUIDE
Syncure™ XLPE
GENERAL EXTRUSION GUIDELINES
Syncure™ systems are two-part, polyethylene based, moisture crosslinkable compounds
for wire and cable insulation.
EXTRUDER
Screw 1½" to 6" Polyethylene type—Maddock; 3:1 compression ratio
Tooling Pressure type
Die On size with 1/8" or less land
L/D 24:1 or higher
Screen Pack 20/60/60/20 Mesh
Cooling Trough Hot 120–150° F (50–65° C)
Feeder Gravimetric type—3 compartment (for color)
Drying Conditions, Catalyst Only Desiccant type, 4 hours at 140° F (60° C)
PROCESSING
Temperature
Wire Preheat 180–250° F (110–120° C)
Feed Zones 330° F (165° C)
Transition 340° F (170° C)
Metering 350° F (177° C)
Head/ Die 360° F (182° C)
Target Melt 350–380° F (177–190°C)
Flame at Die Tip Yes
Line Speed Higher line speed improves mixing and surface smoothness
Purge Compound HDPE
To learn more about Syncure XLPE wire and cable solutions, contact us
at +1.844.4AVIENT (1-844.428.4368)
www.avient.com
Copyright © 2020, Avient Corporation.
https://www.avient.com/sites/default/files/2022-12/Mevopur Healthcare Bio-based Polymer Solutions Application Bulletin.pdf
KEY CHARACTERISTICS
• Available for polyethylene, polypropylene, ABS,
polycarbonate and styrenics
• Bio-content of resin carrier varies from 70% to
100% depending on polymer—calculated to
ASTM D6866 standard
• Manufactured at four ISO 13485 certified sites,
providing global consistency and security of
supply
• Documented change control beyond CAS
number, reducing risk of change
• Drop-in solutions that can be processed like
fossil-based grades on common injection
molding and extrusion machines
• Can be provided as ready-to-use pre-colored
or additive formulation
REGULATORY SUPPORT
• Raw materials tested to:
- ISO 10993-1
- USP and (incl. class VI)
- European Pharmacopeia, monograph 3.1.3/
3.1.5 (polyolefin packaging materials)
- USP (polyethylene)
- Elemental impurities as per ICH Q3D
• Registered Drug Master File (Type III) and/or
Device Master File
• Food contact according to US FDA and
APPLICATION BULLETIN
Sustainability Spotlight
Bio-polymers
Healthcare use limitations apply—see below.
https://www.avient.com/sites/default/files/2021-06/fl.datasheet-extrusion.pdf
Overview
• FIBER-LINE® extrusion is the process of
forming a polymer jacket of various thickness
around a core of high-performance fibers
• Fiber core can be parallel, twisted, or in
rope form
• Polymer jacket selected to optimize flex,
chemical, temperature, & UV resistance
Key Features
• .50mm – 30.00mm size capability
• Protect the core from mechanical,
environmental, and chemical damage
• Extend life of cable or strength member
• Enhance flame & chemical resistance
• Improve UV resistance
• Many polymers available
FIBER-LINE® FIBERS SUITABLE
FOR EXTRUSION
• Kevlar® Para-Aramid
• Vectran® LCP
• Zylon® PBO
• Technora®
• Carbon Fiber
• Fiberglass
FIBER-LINE® PRODUCTS
ADDED BY EXTRUSION
• Strength members
• Tracer-wire
• Micro-cable
• Ruggedized cable
Our Polymer Offering
• EPC
• ETFE
• FEP
• Hytrel
• PFA
• Polyethylene
• Polypropylene
• Polyurethane
• PVC
• PVDF
EXTRUSION FIBERS PROCESSES PRODUCTS
FIBER OPTICAL CABLES
MOVING HIGH PERFORMANCE FIBERS FORWARD
This data is provided for informational purposes only, and does not constitute a specification.
PFA
PFA BARE PERFORMANCE
Operating Temperature Range -200°C - 260°C
Chemical Resistance P
Flame Resistance P
UV Resistance P
Flex Properties P
POLYPROPYLENE BARE PERFORMANCE
Operating Temperature Range -45°C - 105°C
Chemical Resistance P
Flame Resistance X
UV Resistance P
Flex Properties X
EXTRUSION FIBERS PROCESSES PRODUCTS
POLYETHYLENE BARE PERFORMANCE
Operating Temperature Range -65°C - 80°C
Chemical Resistance P
Flame Resistance X
UV Resistance P
Flex Properties O
POLYURETHANE BARE PERFORMANCE
Operating Temperature Range -55°C -125°C
Chemical Resistance P
Flame Resistance X
UV Resistance P
Flex Properties P
POLYETHYLENE
POLYPROPYLENE POLYURETHANE
FIBER OPTICAL CABLES
MOVING HIGH PERFORMANCE FIBERS FORWARD
This data is provided for informational purposes only, and does not constitute a specification.
https://www.avient.com/sites/default/files/2022-11/Packaging Anti-fog Whitepaper.pdf
Most films used in food packaging
are either totally olefinic (polyethylene or
polypropylene) or have multilayer structures
in which the inner polymer surface is olefinic.
In order to create the most appropriate anti-fog
additives for different types of films, research was
commissioned into potential interactions between
anti-fog additives in polyethylene (BOPE) films and
the bi-component adhesives used in the lamination
of biaxially-oriented polyethylene terephthalate
(BOPET) to a PE film.
Following a broad screening of potential anti-
fog candidates, production began on a series of
polyethylene films containing the different types
selected, and then laminates were produced with
BOPET using bi-component adhesives.
https://www.avient.com/sites/default/files/2020-10/tpes-for-automotive-fasteners-clips-product-bulletin-1.pdf
ONFLEX™ HT ONFLEX™ AF 7210 ONFLEX™ S KA ONFLEX™ S KG
Applications
Fasteners/
Clips
Fasteners/
Clips
Fasteners/
Clips
Fasteners/
Clips
Defining Characteristic
High temperature
sealing
performance
Ambient
temperature sealing
performance
High temperature
sealing
performance
Ambient
temperature sealing
performance
Density 1.00 g/ml 0.99 g/ml 1.10 g/ml 1.13 g/ml
Physical Properties
Tensile Strength 6.0–10.0 MPa 5.0–11.5 MPa 3.0–7.5 MPa 2.6–4.9 MPa
Tear Resistance 25.0–37.0 kN/m 21.0–43.0 kN/m 17.0–46.0 kN/m 16.0–29.0 kN/m
Compression Set
73°F (23°C) 72hrs 12–27% 16–32% 13–23% 31–35%
158°F (70°C) 22hrs 28–44% 32–43% 29–38% 62–66%
212°F (100°C) 22hrs 45–53% 56–60% 54–57% 80–85%
Hardness 40–80 Shore A 40–80 Shore A 40–80 Shore A 40–80 Shore A
Overmolding Substrate
Polypropylene/
Polyethylene
Polypropylene Polyamide Polyamide
Processing
Injection Molding/
Extrusion
Injection Molding/
Extrusion
Injection Molding/
Extrusion
Injection Molding/
Extrusion
HOW GLS TPEs MAKE THE DIFFERENCE IN AUTOMOTIVE FASTENERS AND CLIPS
• Low compression set – coupled with good
stress relaxation, our automotive TPEs are
designed to maintain a good seal over time and
reduce noise generated by vibration
• High temperature performance – Avient
automotive TPEs provide good sealing
performance in temperatures up to
100°C/212°F
• Bonding performance - strong chemical bond
to polypropylene, polyethylene,
and polyamide
• Process flexibility - grades can be both
injection molded and extruded
• Easy to color - can be colored at the machine
• Reduced production steps - some grades do
not require pre-drying
• Low VOC/FOG - OnFlex HT™ has been externally
tested to VDA 278 and is proven to help satisfy
vehicle interior air quality (VIAQ) regulatory
requirements
• Single source supply – we can streamline your
supply chain with the ability to provide polymer
colorants, engineered thermoplastics, and
thermoplastic elastomers from a single source
• Global support - we provide production,
technical, and commercial support in locations
convenient to your operations, including North
America, Europe, and Asia
To learn more about GLS TPEs for automotive
applications, visit www.avient.com or call
+1.844.4AVIENT (1.844.428.4368).
https://www.avient.com/products
Syncure™ XLPE Cross-linkable Polyethylene Formulations
Ultra-High Molecular Weight Polyethylene
Syncure™ XLPE Cross-linkable Polyethylene Formulations
https://www.avient.com/products/fiber-line-engineered-fiber-solutions/high-performance-synthetic-fibers
Ultra-high molecular weight polyethylene fiber is lightweight and abrasion resistant
Syncure™ XLPE Cross-linkable Polyethylene Formulations
Ultra-High Molecular Weight Polyethylene