https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=21506
50 psi).1 Use 50 percent to 75 percent of the injection pressure for the pack and hold pressure.
A GFRP usually is between 10 percent to 50 percent glass fiber by weight.
Experts recommend using inserts for large-volume production, and because a long dwell time in the barrel may cause degradation, use a minimum of 20 percent to 50 percent of barrel capacity per shot.1 Purging is also important.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=6599
50 psi).1 Use 50 percent to 75 percent of the injection pressure for the pack and hold pressure.
A GFRP usually is between 10 percent to 50 percent glass fiber by weight.
Experts recommend using inserts for large-volume production, and because a long dwell time in the barrel may cause degradation, use a minimum of 20 percent to 50 percent of barrel capacity per shot.1 Purging is also important.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=6601
50 psi).1 Use 50 percent to 75 percent of the injection pressure for the pack and hold pressure.
A GFRP usually is between 10 percent to 50 percent glass fiber by weight.
Experts recommend using inserts for large-volume production, and because a long dwell time in the barrel may cause degradation, use a minimum of 20 percent to 50 percent of barrel capacity per shot.1 Purging is also important.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=21509
50 psi).1 Use 50 percent to 75 percent of the injection pressure for the pack and hold pressure.
A GFRP usually is between 10 percent to 50 percent glass fiber by weight.
Experts recommend using inserts for large-volume production, and because a long dwell time in the barrel may cause degradation, use a minimum of 20 percent to 50 percent of barrel capacity per shot.1 Purging is also important.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=6598
50 psi).1 Use 50 percent to 75 percent of the injection pressure for the pack and hold pressure.
A GFRP usually is between 10 percent to 50 percent glass fiber by weight.
Experts recommend using inserts for large-volume production, and because a long dwell time in the barrel may cause degradation, use a minimum of 20 percent to 50 percent of barrel capacity per shot.1 Purging is also important.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?rtype[]=1164
50 psi).1 Use 50 percent to 75 percent of the injection pressure for the pack and hold pressure.
A GFRP usually is between 10 percent to 50 percent glass fiber by weight.
Experts recommend using inserts for large-volume production, and because a long dwell time in the barrel may cause degradation, use a minimum of 20 percent to 50 percent of barrel capacity per shot.1 Purging is also important.
https://www.avient.com/sites/default/files/2024-05/Cesa Light Additives-PP Nonwoven Geotextile-Case study snapshot.pdf
PP NONWOVEN
MANUFACTURER
G E O T E X T I L E S
• High concentrate UV solution (up to 50% light protection)
in PP nonwoven textiles
• Shorter lead time from existing supplier
• Local technical support
• Long-lasting UV stability
• Provided high concentrate UV protection in
nonwoven textiles with dosage @ 50%
• Shortened the lead time with global supply
and technical service
• Offered excellent UV stability
CesaTM Light Additives
KEY REQUIREMENTS
WHY AVIENT?
https://www.avient.com/sites/default/files/2024-04/Maxxam REC Outdoor Plug Socket Case Study_A4.pdf
The new grades were formulated to provide a
functional replacement for the previous used prime
materials while incorporating 50% recycled ocean-
bound plastic content.
Using Avient’s Product Carbon Footprint Calculator,
which has been third-party certified by TÜV Rhineland
to ISO 14067 standard, the new Avient formulations
enable a 50% carbon footprint reduction compared to
the materials previously used.
https://www.avient.com/sites/default/files/2023-01/Maxxam REC Recycled Polyolefin Formulations Product Bulletin.pdf
KEY CHARACTERISTICS
• Formulated with 25–100% recycled resin
from PIR & PCR sources
• Reduces waste and supports the circular
economy
• Achieves equivalent performance to
standard polyolefin formulations
• Can be recycled at end of life
• Provides good stiffness, durability,
impact resistance and UV stability
• Enables customized performance
characteristics depending on
application need
MARKETS AND APPLICATIONS
Maxxam REC Polyolefins are suitable for use across
many industries and applications where traditional
polyolefin materials are used, including:
• Transportation - HVAC systems, engine guards,
battery housings, flame retardant applications
• Industrial - Structural parts, furniture
• Consumer - Household appliances,
personal care items, packaging, office supplies,
food contact applications
• Electrical and Electronic – Housings, buttons,
junction boxes
SUSTAINABILITY BENEFITS
• Formulated with 25–100% recycled resin
from PIR and/or PCR sources
• Reduces waste and supports the circular
economy
• Reduces carbon footprint
• Can be recycled at end of life
PRODUCT BULLETIN
CHARACTERISTICS UNITS
Maxxam REC
RS5200-5029 C
BLACK X2
Maxxam REC
MX5200-5036
HS I BLACK
Maxxam REC
MX5200-5037
Maxxam REC
MX5200-5038
Maxxam REC
MX5200-5039
Filler/
Reinforcement – Unfilled Unfilled 20% Mineral 40% Mineral 30% Glass Fiber
Recycled
Content – 95% PCR 97% PIR 75% PIR 55% PIR 65% PIR
Density
(ISO 1183) g/ccm 0.93 0.95 1.09 1.28 1.15
Tensile Modulus
(ISO 527-1) MPa 1250 950 1500 2150 4250
Tensile Stress
(ISO 527-2) MPa 25 175 10 15 50
Tensile Strain Break (ISO
527-2) % >20 >80 >30 17 4.5
Charpy Notched
(ISO 179) kJ/m 3 8 5 4 11
TECHNICAL PERFORMANCE
CHARACTERISTICS UNITS
Maxxam REC
RS5200-5026
RS NHFR
BLACK 70
Maxxam REC
FR H8 V2
BLACK RG 70
Maxxam REC
L6 GF/30 H
BLACK T RG
70
Maxxam REC
MX5200-5027
RS HS
BLACK RG
Maxxam REC
MX5200-5028
RS HS
BLACK RG
Maxxam REC
C10 H-UV AS
EP RG
BLACK 70
Filler/
Reinforcement – 30% Glass Fiber Unfilled 30% Glass Fiber 30% Glass Fiber 40% Talcum Unfilled
Recycled Content – 37% PIR 90% PIR 55% PIR 35% PIR 50% PIR 25% PIR
Density
(ISO 1183) g/ccm 1.42 0.950 1.13 1.15 1.23 1.03
Tensile Modulus
(ISO 527-1) MPa 8250 1300 6100 6400 – 700
Tensile Stress
(ISO 527-2) MPa 71.0 30.0 70.0 70.0 28.0 15.0
Notched Izod
(ISO 180) kJ/m – 4.0 10 5.8 2.7 No Break
Flame Rating
@ 1.6mm thickness
(UL 94)
– V-0 V-2 HB HB HB HB
TECHNICAL PERFORMANCE
Copyright © 2023, Avient Corporation.
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.