https://www.avient.com/sites/default/files/2024-07/Composite Heat Release Technology Product Bulletin.pdf
The proprietary, multi-layer carbon
fiber and ceramic composite technology applies
the concept of thermal inertia to expedite heat
transfer from the barrel bore to improve overall
performance.
THE BOTTOM LINE
Barrels made with
Composite Heat
Release technology can
be lighter, heat slower,
and cool faster than
traditional steel or
carbon-wrapped
steel barrels.
Firearms manufacturer-
supplied steel bore
Low thermal inertia
ceramic inner layer
Customized carbon fiber
composite sleeve
https://www.avient.com/sites/default/files/2021-01/complet-lft-scorpyd-crossbow.pdf
SCORPYD™
CROSSBOW
I N T E G R A T E D R A I L A N D R I S E R
• Reduce weight by replacing aluminum
• Integrate bolt rail and riser for supporting limbs into unified
assembly
• Achieved a 40% weight reduction to
improve handling and firing ease
• Provided structural design services to create
industry-first integrated rail and riser
assembly
• Conducted FEA performance analysis to
confirm long carbon fiber reinforced
composite met extreme requirements
Complēt™ Long Carbon Fiber ETPU
Composite
KEY REQUIREMENTS
WHY AVIENT?
https://www.avient.com/knowledge-base/case-study/lightweighting-commercial-trucks-and-trailers
Reducing weight in transportation can increase safety, improve fuel efficiency, and reduce carbon emissions.
https://www.avient.com/sites/default/files/2022-03/Nymax BIO Bio-based Polyamide Solutions Product Bulletin.pdf
Nymax™ BIO
Bio-based Polyamide Solutions
As brand owners look for new ways to lower their
carbon footprint and bring more sustainable
products to the market, Nymax™ BIO polyamide
formulations can help.
Renewable,
plant-based raw materials, have been shown to
offer significantly lower product carbon footprint
values than typical petroleum-based feedstock.
KEY CHARACTERISTICS
• Bio-polymers that reduce the carbon
footprint value significantly
• Achieves equivalent performance as PA66
glass fiber-filled materials
• Excellent surface appearance and colorability
• Lower warpage compared with PA66 glass
fiber-filled materials
• Cost-effective alternative to PA66 glass
fiber-filled materials
• Excellent dimensional stability and property
retention rate after water uptake
• Commercially available in Asia
APPLICATIONS
Nymax BIO formulations can be applied to reach
sustainability goals in demanding applications
including:
• Transportation • Consumer goods
• Industrial • Building and construction
PRODUCT BULLETIN
1.844.4AVIENT
www.avient.com
Copyright © 2022, Avient Corporation.
https://www.avient.com/sites/default/files/2024-06/Cesa Flame Retardant Product Selection Guide %281%29.pdf
POLYMER PRODUCT NAME PROPERTY PERFORMANCE TYPE DOSAGE/LDR
MATERIAL
CODE
ABS FRABS92991 UL 94 Halogen 35% CC10292991WE
ABS FRABS52399 UL 94 Halogen 5–14% CC10252399WE
HDPE Cesa Flam MB 5101AH UL 94 Halogen 7–16% PEAN698479
Nylon Cesa Flam MB 5728H UL 94 Halogen 8–14% ABA0698450
Nylon Cesa Flam MB 5731NH UL 94 Non-halogen 8–20% ABAN698410
PC Cesa Flam NCA0820018NH UL 94 Non-halogen 2–4% NCA0820018
PC NCAN-Z0N-FN FLMRET 698419 UL 94 Non-halogen 3–8% NCAN698419
PE FRPE94802 ASTM E84 Non-halogen 100% CC103094802F
PE FRPE41011 UL 94 Halogen 20–30% CC1034101160
PET Cesa Flam MB 5525NH UL 1441, UL 94 Non-halogen 6–8% NEAN698534
PET FRPET65462 UL 94 Non-halogen 5–12% CC103265462F
PET/ PBT Cesa Flam MB 5532NH NFPA 701 Non-halogen 4–6% NBAN698451
PP Cesa Flam MB 5201H UL 94 Halogen 6–30% PPAN698410
PP Cesa Flam MB CT-1629NH Cal TB 133, UL 94 Film, NFPA 701 Non-halogen 6–8% PPAN698428
PP FRPP365370 UL 94 Non-halogen 10–20% CC103653702F
PP Copolymer FRPP37654 UL 94 5VA Halogen 100% CC10337654WE
PP Copolymer FRPP53484 UL 94 Halogen 10% CC1035348460
PS FRPS62722 ASTM E84 Halogen 2–4% CC10262722WE
PS/HIPS Cesa Flam SLA0820014H UL 94 Halogen 4–8% SLA0820014H
TPU Cesa Flam 98461NH UL 94 Non-halogen 6–14% RUA0698461
F-SERIES FLAME RETARDANT ADDITIVES
HDPE/PE F-Series UL 94 Non-halogen 10–25% PEA0820024
PE F-Series UL 2335, FM 4998 Non-halogen 10–25% PEA0820069
https://www.avient.com/sites/default/files/2023-01/Mevopur Standard Colors Product Bulletin _ Color Card.pdf
Concentrates and pre-colored formulations are
available for a wide range of polymers, including
PE, PP, PEBA, PC, ABS, and others.
KEY CHARACTERISTICS
• Globally harmonized formulations are
manufactured at four ISO 13485 certified
medical sites, providing global consistency
and increased security of supply
• Documented change control available
• A range of standard colors eliminates color
matching to expedite development time
• The portfolio includes compliant colors for
use in:
- Needle hub applications: ISO 6009
- Ophthalmic container closures
(American Academy of Ophthalmology)
REGULATORY SUPPORT
• A library of pre-tested raw materials including:
- ISO 10993-1 and USP biological
evaluation
- European Pharmacopeia 3.1.3/3.1.5
(polyolefin)
- USP (polyethylene)
- ICH Q3D elemental impurities
• Registered Drug Master File (Type III) and/or
Device Master File
• Food contact established with FDA/EU*
HEALTHCARE APPLICATIONS
• Medical devices such as catheters, surgical and
dental instruments, and drug delivery devices
• Pharmaceutical packaging including vials
and bottles
• Diagnostics for blood analysis or In Vitro
Diagnostics (IVD)
PRODUCT BULLETIN & COLOR CARD
* FDA/EU compliance information available upon request; exceptions may occur
Color Pantone Reference PE Base PP Base
Transparent
PP Base PEBA Base PC Base
Transparent
PC Base* ABS Base*
White — PE0M176031 PP0M176045 ** AH0M415001 NC0M176058 ** SB0M665206
Yellow 102C PE1M176076 PP1M176060 PP1M176062 AH1M415002 NC1M176058 NC1M176059 SB1M664958
Orange 158C PE2M176044 PP2M176046 ** ** NC2M176044 NC2M664912 SB2M664939
Red 199C PE3M176131 PP3M176111 PP3M176113 AH3M415002 NC3M176116 NC3M176122 SB3M665037
Pink 196C PE3M176130 PP3M176109 ** AH3M415001 NC3M176117 NC3M665052 SB3M665039
Violet 2593C PE4M176023 PP4M176036 PP4M176039 AH4M415001 NC4M176038 NC4M176044 SB4M664978
Light Blue 292C PE5M176155 PP5M176169 ** AH5M415003 NC5M176142 ** SB5M665402
Mid Blue 285C PE5M176154 PP5M176171 PP5M176175 AH5M415002 NC5M176143 NC5M176146 SB5M665404
Dark Blue 288C PE5M176153 PP5M176173 ** ** NC5M176144 ** SB5M665406
Light Green 346C PE6M176128 PP6M176111 ** ** NC6M176118 ** SB6M665070
Bluish Green 3145C PE6M176126 PP6M176115 ** ** NC6M176119 ** SB6M665068
Medium Green 348C PE6M176127 PP6M176113 PP6M176118 AH6M415001 NC6M176120 NC6M176121 SB6M665072
Dark Gray 425C PE7M176066 PP7M176091 PP7M176094 ** NC7M176124 ** SB7M665297
Mid Gray Cool Gray 5C PE7M176067 PP7M176089 ** AH7M415001 NC7M176125 NC7M665175 SB7M665295
Beige 7502C PE8M176048 PP8M176058 ** ** NC8M176058 ** SB8M664871
Brown 463C/731C PE8M176049 PP8M176060 ** ** NC8M176059 ** SB8M664869
Black Black C PL9M176008 PP9M176017 ** ** NC9M176008 NC9M176009 SB9M664896
Colors may vary from actual color shown.
https://www.avient.com/sites/default/files/2020-11/gls-indoor-grips-translation-application-bulletin.pdf
When overmolded, GLS TPEs bond permanently
and seamlessly to many different plastic
substrates, including polypropylene (PP),
polycarbonate (PC), acrylonitrile-butadiene-
styrene (ABS), PC/ABS, copolyester, polyamide
(nylon) and polystyrene (PS).
https://www.avient.com/sites/default/files/2024-10/Avient CDP Climate Change %26 Water Submission 20241001.pdf
Avient also established in
2022 the cost of carbon at 54.58 per ton CO2 to encourage investments in low-carbon and carbon-free technologies.
Row 1
(7.53.1.1) Target reference number
Select from:
☑ Abs 1
(7.53.1.2) Is this a science-based target?
Yes, achieving this target will support Avient's achievement of Abs 3
https://www.avient.com/knowledge-base/case-study/lightweighting-heavy-trucks
Reducing weight in transportation can increase safety, improve fuel efficiency, and reduce carbon emissions.
https://www.avient.com/knowledge-base/article/can-polyketone-pk-materials-provide-alternative-polyoxymethylene-pom
PK materials also offer sustainability advantages over POM by emitting lower carbon emissions during polymer production.