https://www.avient.com/sites/default/files/2021-04/gravi-tech-pipe-system-valve-case-study.pdf
Thanks to the customized Gravi-Tech material, API was able
to successfully design and mold a flapper valve that is the
only one of its kind on the market—and offers a less expensive
solution than traditional brass valves.
https://www.avient.com/sites/default/files/2023-03/CycleWorks Solution Bulletin.pdf
THE IMPORTANCE OF PLASTICS FOR
PACKAGING
Compared to alternative materials, plastic is
one of the most sustainable materials available
for packaging applications.
https://www.avient.com/sites/default/files/2023-09/Color _ Additive Masterbatches for E_E Application Bulletin_A4.pdf
OnColor™ UL 94 Colorants*
• More than 2,000 recognized concentrates
available worldwide in all color options
• HB rating for most of PP, PS, ABS, PC/ABS, PBT,
PA, PA-GF, TPU generic resins
• V-0, V-1, V-2 and 5VA/5VB ratings for more than
200 specific engineering resins
• Master file of recognized concentrates with
scope of use accessible in the UL product finder
• Development of custom products for specific
resins upon request
• Compliance Letters available for REACH and
RoHS
Cesa™ Flame Retardant Additives
for Glow Wire
• Fire performance in line with different levels of
Glow Wire temperatures (IEC 60695-2-12)
• Let-Down Ratio adjustable to reach different
levels of Glow Wire temperatures
• Non-halogen (in accordance with IEC 61249-
2-21) and non-HBCD** solutions
• Wide range of solutions adapted to different
polymers (PP, PS, PC)
• Color and flame retardants can be combined
in one product
• Compliance Letters available for REACH
and RoHS
APPLICATION BULLETIN
* Solutions also sold as Renol™ UL 94 Colorants
APPLICATION
POLYMER
GWFI
TEMPERATURE
TYPICAL
LET-DOWN RATIO CONTENT
HIPS 750–960°C 5–10% Non-HBCD
flame retardant**
PC 850–960°C 2–4% Non-halogen in accordance
with IEC 61249-2-21
PP homopolymer 850–960°C 4% Non-halogen in accordance
with IEC 61249-2-21
PP copolymer 850–960°C 4–8% Antioxidant - metal
deactivator
** Non-HBCD means that Hexabromocyclododecane (HBCD) is neither used as starting material during the mixing phase of our products nor
intentionally added during production, but it cannot be excluded that it is not present at level of ubiquitous traces in any of the raw materials
used in manufacturing of our products.
https://www.avient.com/sites/default/files/2021-04/onflex-s-garden-hose-hand-grip-case-study.pdf
With OnFlex-S TPE, the
company achieved system cost benefits that have made this
product line a profitable one.
https://www.avient.com/sites/default/files/2024-09/Chemical Resistance Technical Bulletin %281%29.pdf
This procedure was completed by placing one 1/2 inch section
of rayon gauze at the apex of each bar, and soaking the gauze with the
disinfectant to saturate the material.
https://www.avient.com/sites/default/files/2020-10/tpes-for-automotive-hvac-product-bulletin.pdf
ONFLEX™ LO
7120-45
ONFLEX™ HT
40A-3S2131
BERGAFLEX™
BFIG 45A-300
Applications HVAC Seals HVAC Seals HVAC Seals
Interior - direct airflow Interior & exterior Interior - direct airflow
HVAC feature Low VOC/FOG & odor Low VOC/FOG & odor Low odor
Cold air Hot air Cold air
VDA 270 ≤3.0 ≤3.0 ≤3.0
VOC/FOG
VDA 278 (VOC) 97µg/g 100µg/g 196µg/g
VDA 278 (FOG) 1131µg/g 1116µg/g 1707µg/g
DIN 75201 (FOG) 0.3mg 1.7mg 1.1mg
73°F (23°C) 72 hrs 15% 12% 15%
158°F (70°C) 22 hrs 45% 28% 50%
212°F (100°C) 22 hrs 70% 45% 90%
Density 1.15 g/ml 1.00 g/ml 1.17 g/ml
Processing Injection Molding Injection Molding/
Extrusion Injection Molding
Bonds to Polypropylene Polypropylene/
Polyethylene Polypropylene
Hardness range 35–65 Shore A 40–70 Shore A 35–65 Shore A
HOW GLS TPEs MAKE THE DIFFERENCE IN AUTOMOTIVE HVAC APPLICATIONS
• Low VOC/FOG – externally tested to VDA 278
and shows significant reductions in volatile
organic compounds and fogging when
compared to current TPE technologies
• Industry standards – helps to achieve VOC/
FOG performance standards for improved VIAQ
• Reduced manufacturing steps – does not
require pre-drying or post heating to reduce
VOC in parts produced
• Design optimization – color can be added at
the machine
• Easy to process – can be extruded, injection
molded and extrusion blow molded
• Recyclable – Our automotive TPEs are
compatible with most municipal recycle
streams
• Global support – Avient automotive TPEs
can be manufactured in locations that are
convenient to your operations, including
North America, Europe or China
To learn more about GLS TPEs for
automotive applications, contact Avient
at +1.844.4AVIENT (+1.844.428.4368).
This industry-leading
TPE technology reduces volatile organic compounds (VOCs) by 50% and fogging by 35% versus existing TPEs
for HVAC applications.
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.
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/sites/default/files/2020-08/colormatrix-flexcart-nano-liquid-metering-system-flyer_0.pdf
VALUE BENEFITS OF USING THE FLEXCART
NANO SYSTEM
The FlexCart Nano metering system is market leading:
• Robust and dependable system control
• Reliable yield (typically above 90%)
and sustainable packaging
• Fully supported technology
• Small footprint designed for very
low throughputs
FLEXCART™
NANO LIQUID
METERING SYSTEM
Combined with the PlanetPak™
delivery packaging
ATTRIBUTE FLEXCART
NANO
Footprint (LxW cm) 55 x 30
Controller options 3000
Typical max.
throughput (kg/hr) 50
Max. metering rate (cc/s) 1.8
Continuous use No
Transfer pumps N/A
Metering pumps Peri
Interchangeable cassette No
Note: Peri = Peristatic Pump
PLANETPAK™ CONTAINERS
The FlexCart range of metering systems is designed to work
with the standardized Avient range of packaging, typically
achieving 99% reliable yield on continuous operating
systems, and at the same time achieving a sustainable
packaging format in terms of full recyclability.
EQUIPMENT CAPABILITY
The FlexCart Nano system is stand alone using aspects
of the technology from the wider FlexCart range.
https://www.avient.com/sites/default/files/2025-02/Hammerhead FR Flame Retardant Composite Panel for Building _ Construction Product Overview.pdf
Flame-retardant technology uniquely embedded
into the panel materials provides robust and
durable fire performance without the need for
additional sheets or coatings.
KEY BENEFITS
• Lightweight: Significantly lighter than
traditional materials such as wood, drywall,
and framed wall assemblies, offering a
lightweight yet durable solution for easier
transport and installation, while maintaining
structural integrity
• Durability: Resistant to rot, moisture,
chemicals, UV, and corrosion, ensuring long-
lasting performance
• Efficiency: Consolidated structural panel
reduces labor and assembly time, maintaining
structural integrity throughout the installation
process
• Versatility: Can replace gypsum and drywall
in wall construction, offering strong adhesive
bonding properties and paintable surfaces
• Material Consolidation: Integrates flame
retardant properties and eliminates the
need for additional sheets or coatings for
fireproofing, simplifying the building process
• Highly Customizable: Avient offers a wide
range of custom size configurations and panel
options, allowing builders to meet specific
project needs
• Sustainability: FR technology is not
halogenated or phosphorus-based, and is made
with benign ingredients at low concentrations,
making it an environmentally friendly option
Hammerhead™ FR Flame Retardant Composite Panels
PRODUCT OVERVIEW
APPLICATIONS
• Modular Construction Structures: Ideal for rapid
assembly, reducing construction time and costs
• Walls: A durable and lightweight alternative to
traditional wall materials, suitable for both interior
and exterior applications
• Flooring: Provides a strong and stable base for
various flooring systems, withstanding heavy loads
and traffic
• Garage and Industrial Doors: Offers excellent
strength-to-weight ratio and resistance to impact
and weather, making it an excellent choice for
demanding environments
1.844.4AVIENT
www.avient.com
Copyright © 2025, Avient Corporation.
https://www.avient.com/sites/default/files/2021-06/fl.a4.datasheet-novoloid.pdf
History
The technology to produce Phenolic Fiber was initially developed in
the late 1960’s with commercial fiber production and development by
Gunei Chemical Industry Co. based in Japan.
We believe that our ongoing
commitment to protect the environment, to remain at
the forefront of fiber and coating technology, and to
‘treat others as we want to be treated’ will continue to
drive the success of our customers, shareholders, and
employees.