https://www.avient.com/resource-center?document_subtype=0&document_type=59&form_id=resource_filter_form&industry=0&op=FILTER RESULTS&product_family=0&product_name=0&page=31
Silcosperse™ EC Electrically Conductive Additive Dispersions
Learn more about how Silcosperse™ EC additive dispersions provide varying levels of electrical conductivity to silicone material
https://www.avient.com/resource-center?document_type=59&document_subtype=0&industry=0&product_family=0&product_name=0&op=FILTER RESULTS&form_id=resource_filter_form&page=31
Silcosperse™ EC Electrically Conductive Additive Dispersions
Learn more about how Silcosperse™ EC additive dispersions provide varying levels of electrical conductivity to silicone material
https://www.avient.com/sites/default/files/2020-10/wire-cable-1-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 444 & plenum yellow card flame performance
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).
You have the responsibility to conduct full-scale end-product performance testing
to determine suitability in your application, and you assume all risk and liability arising from your use of the information and/or use or handling of any product.
You have the responsibility to conduct full-scale end-product performance testing
to determine suitability in your application, and you assume all risk and liability arising from your use of the information and/or use or handling of any product.
https://www.avient.com/sites/default/files/2022-12/Cesa Fiber Additives Chain Extenders for Recycled PET Fibers Product Bulletin.pdf
APPLICATIONS
Avient’s chain extenders for fibers can be used to
boost the processing of recycled polyester for a
variety of textile products, including:
• Clothing and sportswear
• Bags and backpacks
• Home textiles and upholstery
• Automotive textiles and insulation/heat
management systems
• Carpets and rugs
WORKING PRINCIPLE
As opposed to standard chain extenders, which
usually branch the PET molecules, Avient’s chain
extenders for recycled PET fibers extend the
molecules in a linear way, which is more adapted
to the reprocessing into fibers.
You have the responsibility to conduct full-scale end-product performance testing to determine
suitability in your application, and you assume all risk and liability arising from your use of the information and/or use or handling of any product.
https://www.avient.com/sites/default/files/2023-10/Cesa Flame Retardant Additives PTFE-free and Non-halogen for Polycarbonate Product Bulletin_A4.pdf
Cesa™ Flame Retardant Additives
PTFE-free and Non-halogen for Polycarbonate
Polycarbonate is a material of choice for E&E
products as it provides very good impact strength,
dimensional stability, and heat resistance.Some
applications require the use of flame-retardant
solutions to increase safety and ensure compliance
with fire hazard standards.
You have the responsibility to conduct full-scale end-product performance testing to determine
suitability in your application, and you assume all risk and liability arising from your use of the information and/or use or handling of any product.
https://www.avient.com/sites/default/files/2023-11/Capture Oxygen Scavenger Product Bulletin.pdf
The use of typical scavenging and barrier
technologies in PET, however, can be a source
of contamination to rPET causing yellowing and
discoloration of the recyclate over both time and
multiple heat histories.
You have the responsibility to conduct full-scale end-product performance testing
to determine suitability in your application, and you assume all risk and liability arising from your use of the information and/or use or handling of any product.
https://www.avient.com/sites/default/files/2022-03/CESA Light Product Selector Guide.pdf
CESA™ Light Additives
Light Stability
PRODUCT SELECTION GUIDE
Exposure to the sun, heat, and oxygen through
outdoor exposure causes the degradation of
the polymer, resulting in yellowing, loss of melt
strength, and loss of mechanical properties in most
resins.
You have the responsibility to conduct full-scale end-product performance testing
to determine suitability in your application, and you assume all risk and liability arising from your use of the information and/or use or handling of any product.
https://www.avient.com/sites/default/files/2023-12/Cesa Light Additives for Injection Molding Product Bulletin.pdf
Cesa™ Light Additives
for Injection Molded Applications
Sunlight in combination with heat and oxygen can
induce degradation in plastics, causing detrimental
effects on mechanical, optical, and other physical
properties.
You have the responsibility to conduct full-scale end-product performance testing
to determine suitability in your application, and you assume all risk and liability arising from your use of the information and/or use or handling of any product.
https://www.avient.com/sites/default/files/2020-09/pei-masterbatch-product-bulletin.pdf
Since PEI resin offers excellent resistance to
heat and fire, and has very good dimensional
stability, it is ideal for a variety of applications
in industries such as aerospace, automotive,
telecommunications and healthcare.
You have the responsibility to conduct full-scale end-product performance testing
to determine suitability in your application, and you assume all risk and liability arising from your use of the information and/or use or handling of any product.
https://www.avient.com/sites/default/files/2020-10/luxury-closures-gravi-tech-design-guide-2.0-application-specific.pdf
A higher injection velocity is needed when processing
Gravi-Tech due to the thermal conductivity of the material.
2.
The shear heat comes from
shearing the material.
k = Thermal Conductivity Constant
• ρ = Density
• Cρ = Specific Heat
Step 2 – Heat Transfer
The next step is to calculate the heat transfer
rate.