https://www.avient.com/sites/default/files/2020-11/2020-advanced-composites-infographic.pdf
TAKE
THE HEAT
FLEX, RETURN,
REPEAT
PROCESSED &
RAW FOOD
PHARMACEUTICAL
FORESTRY
RECYCLED
MATERIALS
MINED/QUARRIED ROCK,
ORE, COAL, SAND
POWDER
AGRICULTURAL
Avient composite
springs are tested to
1.5+ million cycles with
no loss of spring rate.
1.5+
MILLION CYCLES
Avient composite
springs maintain
performance levels
even in high
temperature
applications up
to 300°F.
300°
FAHRENHEIT
• Composites are up
to 70% lighter than steel.
• Composites resist
corrosion; steel rusts
easily unless it is
painted or coated.
70%
LIGHTER
TRADITION OF
EXCELLENCE
Based on the proven
performance of Gordon
Glass™, the material of
choice in composite
archery bow limbs since
1953, our thermoset
composite springs deliver
unmatched strength &
deflection for the most
demanding applications.
https://www.avient.com/sites/default/files/2025-02/Hexagon and digimat case study.pdf
Figure 1: Tensile test data as a function of the fibre orientation 0°
(orange), 45° (green), 90° (blue)
https://www.hexagonmi.com
Figure 4: Failure location in the flexural test for the isotropic modelling
Figure 6: Failure location in the tensile test for the isotropic modelling
approach (left), Digimat anisotropic modelling approach (middle) and
reality (right)
Figure 3: Flexural test results with the isotropic modelling approach
(orange) and Digimat anisotropic modelling approach (green)
Figure 5: Tensile test results with the isotropic modelling approach
(orange) and Digimat anisotropic modelling approach (green)
Figure 5 shows the tensile test results with, again,
a convincing advantage for the Digimat anisotropic
modelling approach against the isotropic modelling
approach.
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).
https://www.avient.com/sites/default/files/2023-10/2023 Syncure Wire and Cable Product Selection Guide.pdf
Syncure™ XLPE
Cross-linkable
Polyethylene
Formulations
FOR LOW VOLTAGE CABLES
PRODUCT SELECTION GUIDE
Syncure™ XLPE
MOISTURE CROSS-LINKABLE POLYETHYLENE INSULATION FOR LOW VOLTAGE CABLE SYSTEMS
SYSTEM S100FH S100FH-XUV S100FH-UV S100FV S100FV-UV S112NA S120NA S200FH S200FV
Applications Building Wire,
Building Wire,
Photo-Voltaic (PV)
Wire
Building Wire,
Teck-90 Pipe and Tube Building Wire, Tray Cable,
Service Entrance
Building Wire, Tray Cable,
Service Entrance
Specification UL 44 UL 44 UL 44, UL 4703 UL 44 UL 44 CSA 22.2 Suitable for
NSF 61 UL 44 UL 44
Wire Type XHHW-2, RHW-2, USE-2,
XHHW-2, RHW-2, USE-2,
SIS
XHHW-2, RHW-2,
USE-2, SIS, PV
XHHW-2, RHW-2,
XHHW-2, RHW-2,
USE-2, SIS, PV RW-90, Teck-90 – RHW-2, RHW, RHH,
XHHW-2, XHH, XHHW, SIS RHW, RHH, RHW-2
Components % 83% S1054A
17% V0022G RoHS
83% S1054A
17% V0022G-UV RoHS
70% S1054A
30% V0022G-UV RoHS
50% S1054A
50% V0044G RoHS
50% S1054A
50% V0044G-UV RoHS
95% S1054A
5% S1000B
95% S1016A
5% S1037B
78% S1054A
22% SC5400-0002 RoHS
MB ALT FR
50% S1054A
50% SC5400-0003 RoHS
MB ALT FR
Features Horizontal
Flame
Horizontal Flame,
UV Resistant,
Colors Possible
Horizontal Flame,
FV-1 Flame, UV Resistant,
Colors Possible
VW-1 VW-1, UV Resistant,
Colors Possible Non-FR Rigid Pipe Applications Horizontal Flame,
DBDPE-free VW-1, DBDPE-free
GENERAL PROPERTIES
Specific Gravity 1.01 1.02 1.10 1.31 1.31 0.92 0.95 1.01 1.31
Hardness Shore D,
10 Seconds 47 47 47 48 48 47 59 47 48
Gel 68 68 70 70 70 72 72 68 70
TENSILE PROPERTIES
Tensile Strength
(psi) 2800 2500 2650 3200 2650 2800 4500 2800 3200
Elongation % 400 400 540 470 540 400 80 400 470
Tensile
Retention % 100 100 97 110 110 95 75 95 100
Elongation
Retention % 90 90 94 100 100 90 75 90 93
ELECTRICAL
Dielectric
Strength (V/mil) 1000 1400 1400 1200 1200 1000 – 1000 1200
Dielectric
Constant 2.31 2.45 2.61 2.61 2.61 2.24 2.1 2.31 2.61
Dissipation
Factor % 0.0012 0.0080 0.008 0.0043 0.0043 0.0008 0.002 0.0012 0.0043
THERMAL
Temperature
Rating °C 90 90 90 90 90 90 125 90 90
Heat
Deformation % 10 5 5 5 5 10 10 10 5
The Syncure™ XLPE portfolio is a two-step, silane-
grafted, moisture cross-linkable polyethylene system.