https://www.avient.com/news/new-technology-avient-helps-trace-origin-fibers-polyester-and-polyamide-textiles
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https://www.avient.com/news/ibex-2023-avient-featuring-innovative-materials-boatbuilders-offering-lightweighting-and-production-efficiency
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Nicole DeChant
Avient Corporation
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https://www.avient.com/news/avient-unveils-new-cesa-withstand-antimicrobial-additives-tpu-film-medical-and-outdoor-applications
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https://www.avient.com/news/new-black-colorants-available-avient-help-achieve-high-jetness-polyester-textiles
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Nicole DeChant
Avient Corporation
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Media Relations Contacts
https://www.avient.com/news/avient-expands-manufacturing-ul-certified-wire-and-cable-formulations-photovoltaic-applications-europe
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https://www.avient.com/news/avient-showcase-world-s-strongest-fiber-and-high-performance-engineered-fibers-techtextil-2024
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Nicole DeChant
Avient Corporation
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https://www.avient.com/news/avient-launches-new-cross-linkable-formulations-photovoltaic-cables-support-rising-need-solar-power-generation
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https://www.avient.com/sites/default/files/2023-09/Cesa Fiber Additives for Heat Preservation Technical Bulletin.pdf
Evaluation showed an increase in
circulation and blood flow velocity after body
contacts with warmed fabric.
TEMPERATURE DISTRIBUTION DIAGRAM
• Test Method: FTTS-FA-010-2007 4.2
• Equipment: Thermovision
• Heat Source: 500W Halogen Lamp
• Heat Distance: 100 cm
Surface temperature before exposure: 20.22°C
Surface temperature after 10 min exposure: 33.85°C
Temperature change: +13.6°C
Added Cesa Fiber Additives for heat preservation
TEST METHOD STANDARD REQUEST TEST RESULT
GB/T30127
Far infrared radiation properties
Far infrared emissivity ≥0.88 (5-14um)
(Test temperature: 34°C) 0.9
Far infrared radiation
temperature rise ≥ 1.4°C 9°C
GB/T 18319-2019
Thermal retention with accumulated
by infrared ray
Maximum temperature rise ≥ 6°C 8.9°C
Mean temperature rise ≥ 4.4°C
(20 minutes) 5.6°C
FTTS-FA-010
Infrared radiation properties &
thermal retention temperature rise
Average emissivity ≥ 0.8 (2-22um)
(Test temperature: 25°C) 0.8
Specified heating ΔT ≥ 0.5°C
(relative to the standard) +5.34°C (ΔT)
GB/T 11048-2008 Method A
Thermal transmittance
Unit: clo
Naked body: 0
Underwear: 0.04
T-shirt: 0.09
Thick sweater: 0.35
Winter coat: 0.7
All the data above are the reference value
0.625
Human Physiological Experiment
Blood flow volume +12.9%
Blood flow velocity +13.6%
Blood oxygenation(%SpO2) +1.7%
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Copyright © 2023, Avient Corporation.
Contact your Avient representative
to find out about availability in
your country or region.
https://www.avient.com/sites/default/files/2024-03/Edgetek PKE Glass-Filled Product Bulletin.pdf
Industrial – pipes, tubing, fluid management
• Electrical/Electronics – connectors,
battery components
• Transportation – under-the-hood fuel/
chemical components
PRODUCT BULLETIN
PROPERTY COMPARISON — EDGETEK™ PKE FORMULATIONS VS NYLON
1.844.4AVIENT
www.avient.com
Copyright © 2024, Avient Corporation.
Density
Impact
Flexural
Tensile
HDT
Equilibrium
Moisture
— PKE-GF PA12-GF PA612-GF
5
4
3
2
1
0
Impact
Shrink
Modulus
Chemical
Resistance
Flexural
(Cond.)
CO2
Emission
Factor
— PKE-GF — PA6-GF — PA66-GF
HDT
Wear
Density
5
4
3
2
1
0
Equilibrium
Moisture
1: Poor 3: Good 5: Excellent
https://www.avient.com/sites/default/files/2024-11/Ballistic Panel Infographic.pdf
Download our ballistic panel solutions overview, or contact us
for more information.
Shots
Composite
Panel
Nominal
Thickness
Nominal
Weight
Level 1
9mm full metal
copper jacket
with lead core
1175 ft/sec
358 m/sec 3 GlasArmor™
Level 1
0.256 in
6.5 mm
2.7 lb/ft2
13.2 kg/m2
Level 2
.357 magnum
jacketed head
soft point
1250 ft/sec
381 m/sec 3 GlasArmor™
Level 2
0.384 in
9.8 mm
4.0 lb/ft2
19.5 kg/m2
.44 magnum lead
semi-wadcutter
gas checked
1350 ft/sec
411 m/sec 3
GlasArmor™
Level 3
0.500 in
12.7 mm
5.2 lb/ft2
26.4 kg/m2
ThermoBallistic™
Level 3
0.440 in
11.2 mm
3.9 lb/ft2
19.0 kg/m2
PR
OT
EC
TI
O
N
L
EV
EL
S
Level 4–8: Customized solutions available, contact Avient to learn more.
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https://www.avient.com/sites/default/files/2023-01/GlasArmor%20Ballistic%20Resistant%20Panels%20Case%20Study.pdf