https://www.avient.com/sites/default/files/resources/Dyersburg%2520IATF%252016949-2016%2520exp%25208-13-2021.pdf
ECert.QECertificate
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Validity of this certificate is based on the successful completion of the periodic surveillance audits of the management system defined by the above scope and is contingent upon
prompt,written notification to ABS Quality Evaluations, Inc. of significant changes to the management system or components thereof.
https://www.avient.com/sites/default/files/resources/US_Norwalk_IATF16949_2020Exp.pdf
ECert.pdf
Page 1 of 2
Validity of this certificate is based on the successful completion of the periodic surveillance audits of the management system defined by the above scope and is contingent upon
prompt,written notification to ABS Quality Evaluations, Inc. of significant changes to the management system or components thereof.
https://www.avient.com/sites/default/files/2022-03/Sustainability ESG Disclosures_Global Chemical Mgt Policy.pdf
Conducting risk assessments on hazardous products >1 ton for human health (CMRs) and
environmental impacts (PBT, vPvB) associated with their intended use prior to placing on the market
https://www.avient.com/sites/default/files/2023-01/45324-Certificate-13JAN2023.pdf
ECert - 2023-01-13T114926.191.pdf
Page 1 of 2
Validity of this certificate is based on the successful completion of the periodic surveillance audits of the management system defined by the above scope and is contingent upon
prompt,written notification to ABS Quality Evaluations, Inc. of significant changes to the management system or components thereof.
https://www.avient.com/sites/default/files/2022-08/IATF 16949 North Baltimore.doc.pdf
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ABS Quality Evaluations
IATF 16949:2016
Certificate Of Conformance
ANNEX
Certificate No:
IATF No:
38972
0422162
Avient Corporation Engineered Materials Division
At Below Facilities:
Facility: Corporate
33587 Walker Road
Avon Lake, OH 44012
U.S.A.
https://www.avient.com/sites/default/files/2021-04/iatf-16949-58976-lockport-17nov2020.pdf
ECert - 2020-11-17T151438.723.pdf
Page 1 of 2
Validity of this certificate is based on the successful completion of the periodic surveillance audits of the management system defined by the above scope and is contingent upon
prompt,written notification to ABS Quality Evaluations, Inc. of significant changes to the management system or components thereof.
https://www.avient.com/sites/default/files/2021-06/fl.datasheet-strengthmembers.pdf
HMPE for example, has a
specific gravity less than 1 and will float in water.
• Corrosion
Since our products are non-corrosive, they offer outstanding
performance in corrosive environments, including marine and off-
shore applications.
• Conductivity
High-performance synthetic fibers act as a barrier between eletrical
components.
• Creep
When exposed to static long-term loads, synthetic fibers stretch very
little.
POPULAR COATED STRENGTH MEMBERS
LOCATIONS
Headquarters, R&D, Manufacturing
FIBER-LINE® LLC
3050 Campus Drive
Hatfield, PA 19440
+1 215.997.9181
fiber@fiber-line.com
Manufacturing Operations
FIBER-LINE® LLC
280 Performance Drive SE
Hickory, NC 28602
+1 828.326.8700
fiber@fiber-line.com
EMEA & Asia Pacific Operations
FIBER-LINE® INTERNATIONAL B.V.
https://www.avient.com/sites/default/files/2023-04/Advanced simulation captures part performance for fibre reinforced thermoplastics_Case_Study.pdf
The resulting tensile test
data shown in Figure 1 gives an indication of the variation
in material response that can be observed as a function of
the fibre orientations.
In reality, the material response can
fall anywhere between the curves shown in Figure 1.
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/2020-09/stan-tone-pep-et-product-bulletin.pdf
% Pigment Specific Gravity Color Index Lightfastness
WHITE
10PEP03 Titanium Dioxide, Rutile 60 2.06 PW-6 I/O
YELLOW
12PEP01 Diarylide AAOT GS 20 1.24 PY-14 I
12PEP03 Diarylide HR RS 25 1.23 PY-83 I/O (Mass)
13PEP02 Isoindolinone RS 25 1.31 PY-110 I/O
13PEP03 Benzimidazolone GS 25 1.25 PY-151 I/O (Mass)
81PEP01 Iron Oxide 60 2.07 PY-42 I/O
ORANGE
15PEP03 Benzimidazolone RS 25 1.27 PO-36 I/O
RED
23PEP04 Quinacridone BS 25 1.24 PV-19 I/O
23PEP06 Specialty Naphthol BS 25 1.23 PR-170 I/O (Mass) C
25PEP01 Red 2B, Ca Salt BS 17 1.26 PR-48:2 I/O (Mass)
28PEP01 Red 2B, Ba Salt YS 25 1.32 PR48:1 I/O (Mass)
82PEP01 Iron Oxide, Light YS 27 1.5 PR-101 I/O
82PEP02 Iron Oxide, Light BS 60 2.2 PR-101 I/O
82PEP04 Iron Oxide, Light VYS 60 2.2 PR-101 I/O
82PEP05 Iron Oxide, Dark VBS 60 2.21 PR-101 I/O
BLUE
40PEP01 Phthalocyanine GS 25 1.27 PB-15:3 I/O
40PEP05 Phthalocyanine RS 25 1.27 PB-15 I/O
42PEP02 Ultramarine 35 1.44 PB-29 I/O
49PEP01 Cobalt 31 1.54 PB-28 I/O
GREEN
50PEP01 Phthalocyanine BS 16 1.28 PG-7 I/O
50PEP03 Phthalocyanine YS 16 1.28 PG-7 I/O
59PEP02 Chromium Oxide 70 2.6 PG-17 I/O
VIOLET/MAGENTA
24PEP03 Quinacridone Violet 20 1.24 PV-19 I/O
24PEP04 Ultramarine Violet 50 1.69 PV-15 I/O
24PEP05 Quinacridone Magenta 20 1.24 PR-122 I/O
24PEP06 Benzimidazolone 20 1.23 PV-32 I/O
24PEP07 Carbazole Violet 13 1.22 PV-23 I/O
BROWN/TAN
83PEP01 Iron Oxide, Light 34 1.6 PBr-6 I/O
83PEP02 Iron Oxide, Dark 29 1.51 PBr-6 I/O
BLACK
90PEP01 Furnace - High Jet 24 1.3 PBk-7 I/O
90PEP04 Furnace - Medium 17 1.27 PBk-7 I/O
90PEP05 Iron Oxide 33 1.58 PBk-11 I/O
POLYESTER URETHANE PASTE COLORANTS (PEP)
Stan-Tone Code Pigment Type Approx. % Pigment Specific Gravity Color Index Lightfastness
WHITE
10ET03 Titanium Dioxide, Rutile 56 1.74 PW-6 I/O
YELLOW
12ET01 Diarylide AAOT GS 40 1.15 PY-14 I
12ET03 Diarylide HR RS 20 1.07 PY-83 I/O (Mass)
13ET02 Isoindolinone RS 20 1.11 PY-110 I/O
13ET03 Benzimidazolone GS 20 1.08 PY-151 I/O (Mass)
81ET01 Iron Oxide 60 1.84 PY-42 I/O
ORANGE
15ET03 Benzimidazolone RS 25 1.11 PO-36 I/O
RED
20ET01 Red Lake C YS 30 1.16 PR-53 I
22ET01 Lithol Rubine BS 30 1.17 PR-57:1 I
23ET04 Quinacridone BS 15 1.05 PV-19 I/O
23ET06 Specialty Naphthol BS 30 1.09 PR-170 I/O (Mass) C
25ET01 Red 2B, Ca Salt BS 29 1.15 PR-48:2 I/O (Mass)
28ET01 Red 2B, Ba Salt YS 30 1.18 PR-48:1 I/O (Mass)
82ET01 Iron Oxide, Light BS 60 1.94 PR-101 I/O
82ET02 Iron Oxide, Dark VBS 60 1.95 PR-101 I/O
82ET04 Iron Oxide, Light VYS 60 1.94 PR-101 I/O
BLUE
40ET01 Phthalocyanine GS 25 1.11 PB-15:3 I/O
40ET05 Phthalocyanine RS 20 1.09 PB-15 I/O
42ET02 Ultramarine 55 1.46 PB-29 I/O
49ET01 Cobalt 65 2.02 PB-28 I/O
GREEN
50ET01 Phthalocyanine BS 30 1.2 PG-7 I/O
50ET03 Phthalocyanine YS 25 1.16 PG-7 I/O
59ET01 Chromium Oxide 65 2.12 PG-17 I/O
VIOLET/MAGENTA
24ET03 Quinacridone Violet 20 1.08 PV-19 I/O
24ET04 Ultramarine Violet 60 1.66 PV-15 I/O
24ET05 Quinacridone Magenta 20 1.08 PR-122 I/O
24ET06 Benzimidazolone 25 1.08 PV-32 I/O
24ET07 Carbazole Violet 13 1.05 PV-23 I/O
BROWN/TAN
83ET01 Iron Oxide, Light 64 2.02 PBr-6 I/O
83ET02 Iron Oxide, Dark 60 1.9 PBr-6 I/O
BLACK
90ET04 Furnace - Medium 22 1.12 PBk-7 I/O
90ET05 Iron Oxide 60 1.9 PBk-11 I/O
POLYETHER URETHANE PASTE COLORANTS (ET)
PEP/ET
RS = Red Shade
YS = Yellow Shade
VYS = Very Yellow Shade
BS = Blue Shade
VBS = Very Blue Shade
GS = Green Shade
HR = Heat-Resistant
LIGHTFASTNESS
I = Indoor Only
I/O = Indoor or Outdoor
Mass = Outdoor Masstone Application Only
C = Some Caution Advised
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Copyright © 2020, Avient Corporation.
https://www.avient.com/sites/default/files/2021-07/lactra-low-tio2-product-bulletin_0.pdf
Consequentially
many brand owners are already looking to reduce
the inorganic content in their packaging to
TECHNOLOGY BENEFITS
• Improved light blocking performance up
to 99.9% at 550nm and 700nm
• Brighter whiteness L* >90 even in thin wall
sections (0.21mm)
• Plug & go solution—processes similar to
virgin PET
• Process with standard PET grades and rPET
• Reduces equipment wear and tear
• TiO2 content of
This literature shall NOT operate as permission, recommendation, or inducement to practice any patented invention without permission of the patent owner.
1.844.4AVIENT
www.avient.com
PROPERTIES LACTRA™ FOUR LACTRA™ ONE LACTRA™ ZERO
TiO2 % in bottles at UHT LDR 3% 1% 0%
Recommended LDR for UHT 10% 7% 10%
Light blocking at 550nm at UHT LDR >99.9% >99.8% >99.9%
Light blocking at 700nm at UHT LDR >99.9% >99.8% >99.9%
Color L* >90 >88 >90
COLORMATRIX LACTRA LOW-TIO2 RANGE