https://www.avient.com/sites/default/files/2024-03/QF-02 QMS Global Standard Response.PDF
We thank you for your understanding, and we look forward to serving your needs.
3
Table of contents
A Message from our Global Quality
Manager ...............................................................2
Avient Corporation: Overview ............................4
Avient Policy for Customer Audits ......................5
Management Responsibility ...............................6
Product Liability Insurance .............................6
Ethics - Code of Conduct.................................6
Modern Slavery Statement.............................6
Conflict Mineral Policy....................................6
Technical Data Sheets.....................................6
Safety Data Sheets..........................................6
Regulatory Requests and Certificates
(FDA certificate, Absence declaration,
REACH, SDS) ........................................6
Safety Performance ........................................6
Environmental Performance...........................6
Energy Management ......................................6
Business Continuation Plan.............................6
Preventive - Predictive Maintenance..............6
Financial Report..............................................6
Quality Management..........................................7
3rd Party Certification......................................7
Complaint Handling ........................................7
Continuous Improvement...............................7
Traceability .....................................................7
Record Retention............................................7
IT Security.........................................................8
Firewall .........................................................8
Critical Data ..................................................8
IT Disaster Recovery .....................................8
IT Systems of Use Policy ...............................8
Annex 1 - Special dispositions related to ISO
13485 certification for Mevopur .......................9
Change control .............................................9
Validation .....................................................9
Control of documents and records ...............9
Supplier approval and supplier evaluation ...9
Traceability ...................................................9
Material management ..................................9
Release of finished products.........................9
Control of Non-conforming products,
complaints handling, recall and CAPA..........9
Annex 2 – special dispositions related to ISO
22000 certification............................................10
Change..........................................................10
HACCP ..........................................................10
Control of documents and records ...............10
Material management ..................................10
Supplier approval and supplier evaluation ...10
Traceability ...................................................10
Release of finished products.........................10
Control of Non-conforming products,
complaints handling, recall and CAPA..........10
4
Avient Corporation: Overview
The Avient website is your home base for information about the company:
https://www.avient.com/
To find our facility locations:
https://www.avient.com/contact/global-directory-and-contacts
For more information about our management systems certifications, including ISO, go to:
Avient Governance (corporate policies and the Avient Code of Conduct):
https://www.avient.com/investors/governance
Financial reports:
https://www.avient.com/investors
Avient Sustainability Report:
https://www.avient.com/company/sustainability
https://www.avient.com/
https://www.avient.com/contact/global-directory-and-contacts
https://www.avient.com/investors/governance
https://www.avient.com/investors
https://www.avient.com/company/sustainability
5
Avient Policy for Customer Audits
Avient may permit audits of facilities, subject to:
Advanced notice and an audit agenda provided at least thirty (30) days in
advance or as agreed by the Avient location to be audited for a routine audit
Audits are at the discretion of Avient and may be limited in content/scope.
6
Management Responsibility
The following information describes minimum requirements in place at all ISO 9001 certified manufacturing
facilities identified at https://www.avient.com/company/sustainability/environmental/global-iso-certificate-library
Some additional certified management systems are described in the annex to this document.
https://www.avient.com/sites/default/files/2020-09/stan-tone-hcc-product-bulletin-1.pdf
%
Specific
Gravity
Color
Index
Heat
Stability Lightfastness
WHITE
HCC-12144 Titanium Dioxide,
Anatase 61 1.89 PW-6 1 I/O C
HCC-12145 Titanium Dioxide,
Rutile 70 2.09 PW-6 1 I/O
YELLOW
HCC-12148 (a) Diarylide AAOT GS 35 1.09 PY-14 3 I
HCC-12516 (a) Diarylide AAMX RS 30 1.07 PY-13 3 I
HCC-12149 (a) Diarylide HR RS 22 1.04 PY-83 2 I/O (Mass)
HCC-12194 Iron Oxide 70 2.08 PY-42 2 C I/O
HCC-12503 Benzimidazolone GS 30 1.09 PY-151 2 I/O (Mass)
HCC-5253 (b) Isoindolinone RS 30 1.12 PY-110 1 I/O
ORANGE
HCC-17394 Benzimidazolone RS 20 1.05 PO-36 2 I/O
HCC-17747 Azo YS 30 1.11 PO-64 2 I/O
HCC-33428 Dianisidine RS 29 1.06 PO-16 3 I/O (Mass)
RED
HCC-12156 (a) Red 2B, Ca Salt BS 30 1.12 PR-48:2 2 I/O (Mass)
HCC-12160 (a) Red 2B, Ca Salt YS 33 1.12 PR-48:1 2 I/O (Mass)
HCC-12158 (a) Pyrazolone YS 25 1.05 PR-38 2 C I/O (Mass)
HCC-12159 Pigment Scarlet BS 38 1.21 PR-60:1 2 I/O (Mass)
HCC-12196 Iron Oxide, Dark VBS 65 2.09 PR-101 1 I/O
HCC-12197 Iron Oxide, Light BS 70 2.24 PR-101 1 I/O
HCC-18653 Iron Oxide, Light VYS 70 2.23 PR-101 1 I/O
HCC-11796 (a) Specialty Naphthol
BS 32 1.06 PR-170 2 I/O (Mass) C
HCC-12742 (a) Specialty Naphthol
YS 30 1.07 PR-170 2 I/O (Mass) C
HCC-2160 (b) Quinacridone BS 26 1.08 PV-19 2 I/O
HCC-12309 Quinacridone YS 25 1.07 PV-19 2 I/O
HCC-7707 Perylene Scarlet YS 25 1.04 PR-149 2 I/O
HCC-15738 Diketo-Pyrrolo-
Pyrrol YS 30 1.1 PR-254 1 I/O
BLUE
HCC-12164 Phthalocyanine GS 27 1.08 PB-15:3 1 I/O
HCC-12166 Phthalocyanine RS 18 1.05 PB-15 1 I/O
HCC-12168 Phthalocyanine
RS-NC 32 1.11 PB-15:1 1 I/O
HCC-12929 (c) Ultramarine 53 1.4 PB-29 1 I/O
Stan-Tone
Code
Pigment
Type
Approx. %
Approx. %
Solids
Color
Index
pH
Typical Lightfastness
GREEN
HCC-12172 Phthalocyanine BS 17 1.07 PG-7 1 I/O
HCC-12173 Phthalo Brominated
VYS 25 1.16 PG-36 1 I/O
HCC-10562 Phthalocyanine YS 30 1.15 PG-7 1 I/O
HCC-12176 Chromium Oxide 80 2.8 PG-17 1 I/O
VIOLET/MAGENTA
HCC-17680 (c) Ultramarine Violet 50 1.46 PV-15 1 I/O
HCC-2170 (b) Quinacridone Violet 30 1.09 PV-19 2 I/O
HCC-14562 Quinacridone
Magenta 25 1.06 PR-122 2 I/O
HCC-26775 Benzimidazolone 20 1.03 PV-32 2 I/O
HCC-33159 (a) Carbazole Violet 12 1.03 PV-23 2 I/O
BROWN/TAN
HCC-1286 (b) Iron Oxide, Tan HR 60 1.85 PBr-11 1 I/O
HCC-12201 Iron Oxide, Light 71 2.21 PBr-6 2 C I/O
HCC-12202 Iron Oxide, Dark 67.5 2.06 PBr-6 2 C I/O
BLACK
HCC-12203 Furnace-High Jet 18 1.06 PBk-7 1 I/O
HCC-12204 Furnace-High Jet 6 1 PBk-7 1 I/O
HCC-12205 Furnace-Low Jet 34 1.15 PBk-7 1 I/O
HCC-12206 Furnace-Medium Jet 20 1.07 PBk-7 1 I/O
HCC-18654 Furnace-Ultra High
Jet 15 1.04 PBk-7 1 I/O
HCC-14674 Iron Oxide 59 1.82 PBk-11 2 C I/O
ALUMINUM
HCC-12177 Aluminum 50 1.43 PM-1 2 I/O
HCC
RS = Red Shade
YS = Yellow Shade
VYS = Very Yellow Shade
BS = Blue Shade
VBS = Very Blue Shade
GS = Green Shade
NC = Non-Crystallizing
HR = Heat-Resistant
(a) = Potential Bleed / Migration
(b) = ESO plasticizer (Epoxidized Soybean Oil)
(c) = Pigment may fade in acidic environment
LIGHTFASTNESS
I = Indoor Only
I/O = Indoor or Outdoor
Mass = Outdoor Masstone Application Only
C = Some Caution Advised
HEAT STABILITY
1 = Above 400°F
2 = 350°F–400°F
3 = Below 350°F
C = Some Caution Advised
www.avient.com
Copyright © 2020, Avient Corporation.
https://www.avient.com/sites/default/files/2024-11/Stan-Tone RBX Product Bulletin.pdf
%
Specific
Color
Heat
WHITE
10MB03 Titanium Dioxide,
Rutile 60 1.74 PW-6 1 I/O SBR
10EP03 Titanium Dioxide,
Rutile 60 2.33 PW-6 1 I/O EPDM
YELLOW
12MB01 (a) Diarylide AAOT GS 48 1.23 PY-14 3 I SBR
12MB02 (a) Diarylide AAOA GS 50 1.15 PY-17 3 I SBR
12MB03 (a) Diarylide HR RS 50 1.16 PY-83 2 I/O (Mass) SBR
12MB09 (a) Diarylide AAA RS 50 1.21 PY-12 3 I SBR
12MB10 (a) Diarylide AAMX RS 30 1.22 PY-13 3 I SBR
13MB03 Benzimidazolone GS 50 1.15 PY-151 2 I/O (Mass) SBR
81MB01 (c) Iron Oxide 65 1.84 PY-42 2 C I/O SBR
12EP01 (a) Diarylide AAOT GS 47 1.16 PY-14 3 I EPDM
12EP03 (a) Diarylide HR RS 43 1.17 PY-83 2 I/O (Mass) EPDM
12EP09 (a) Diarylide AAA RS 47 1.14 PY-12 3 I EPDM
81EP01 Iron Oxide 65 1.78 PY-42 2 C I/O EPDM
ORANGE
15MB01 Pyrazolone YS 23 1.23 PO-13 2 I/O (Mass) SBR
15MB05 Dianisdine RS 40 1.11 PO-16 3 I/O (Mass) SBR
15MB06 Benzimidazolone RS 50 1.18 PO-36 2 I/O SBR
15MB07 Benzimidazolone YS 50 1.19 PO-64 2 I/O SBR
15EP01 Pyrazolone YS 23 1.16 PO-13 2 I/O (Mass) EPDM
15EP05 Dianisdine RS 43 1.07 PO-16 3 I/O (Mass) EPDM
RED
20MB01 (b) Red Lake C YS 50 1.27 PR-53:1 3 I SBR
22MB01 (b) Lithol Rubine BS 42 1.19 PR-57:1 3 I SBR
23MB06 Specialty Naphthol
BS 50 1.11 PR-170 2 I/O (Mass) C SBR
23MB07 Specialty Naphthol
YS 50 1.13 PR-170 2 I/O (Mass) C SBR
25MB12 Red 2B, Ca Salt BS 49 1.25 PR-48:2 2 I/O (Mass) SBR
26MB03 (c) Pyrazolone YS 41 1.09 PR-38 2 C I/O (Mass) SBR
28MB02 Red 2B, Ba Salt YS 50 1.38 PR-48:1 2 I/O (Mass) SBR
82MB01 (c) Iron Oxide, Light BS 60 1.68 PR-101 1 I/O SBR
82MB02 (c) Iron Oxide, Dark VBS 60 1.8 PR-101 1 I/O SBR
82MB04 (c) Iron Oxide, Light VYS 60 1.83 PR-101 1 I/O SBR
82MB05 (c) Iron Oxide, Light YS 60 1.84 PR-101 1 I/O SBR
20EP01 (b) Red Lake C YS 50 1.23 PR-53:1 3 I EPDM
Stan-Tone
Pigment
Approx. %
Specific
Color
Heat
RED
23EP06 Specialty Naphthol
BS 50 1.06 PR-170 2 I/O (Mass) C EPDM
25EP12 Red 2B, Ca Salt Bs 49 1.2 PR-48:2 2 I/O EPDM
26EP03 Pyrazolone YS 41 1.03 PR-38 2 C I/O EPDM
28EP02 Red 2B, Ba Salt YS 50 1.33 PR-48:1 2 I/O EPDM
82EP02 Iron Oxide, Dark VBS 59 1.7 PR-101 1 I/O EPDM
82EP04 Iron Oxide, Light VYS 60 1.73 PR-101 1 I/O EPDM
BLUE
40MB05 (c) Phthalocyanine GS 48 1.19 PB-15:3 1 I/O SBR
40MB08 (c) Phthalocyanine RS 52 1.27 PB-15 1 I/O SBR
40MB10 (c) Phthalocyanine
RS-NC 48 1.22 PB-15:1 1 I/O SBR
40MB02 Ultramarine 51 1.35 PB-29 1 I/O SBR
40EP05 Phthalocyanine GS 44 1.14 PB-15:3 1 I/O EPDM
40EP08 Phthalocyanine RS 49 1.23 PB-15 1 I/O EPDM
40EP10 Phthalocyanine
RS-NC 48 1.11 PB-15:1 1 I/O EPDM
42EP02 Ultramarine GS 50 1.27 PB-29 1 I/O EPDM
GREEN
50MB05 Blend (Yellow/Blue) 48 1.21 N/A 3 I SBR
51MB01 (c) Phthalo Brominated
VYS 50 1.4 PG-36 1 I/O SBR
51MB03 (c) Phthalocyanine YS 47 1.34 PG-7 1 I/O SBR
51MB05 (c) Phthalocyanine BS 50 1.46 PG-7 1 I/O SBR
59MB01 Chromium Oxide 69 2.17 PG-17 1 I/O SBR
50EP05 Blend (Yellow/Blue) 48 1.16 N/A 3 I EPDM
51EP01 Phthalo Brominated
VYS 44 1.37 PG-36 1 I/O EPDM
51EP03 Phthalocyanine YS 47 1.33 PG-7 1 I/O EPDM
51EP05 Phthalocyanine Bs 45 1.37 PG-7 1 I/O EPDM
59EP01 Chromium Oxide 71 2.12 PG-17 1 I/O EPDM
VIOLET/MAGENTA
24MB03 Quinacridone Violet 30 1.06 PV-19 2 I/O SBR
24MB04 Ultramarine Violet 60 1.59 PV-15 1 I/O SBR
24MB06 Benzimidazolone 40 1.08 PV-32 2 I/O SBR
24MB07 Carbazole Violet 40 1.25 PV-23 2 I/O SBR
24EP03 Quinacridone Violet 31 1 PV-19 2 I/O EPDM
24EP07 Carbazole Violet 14 1.34 PV-23 2 I/O EPDM
Stan-Tone
Pigment
Approx. %
Specific
Color
Heat
BROWN
83MB01 (c) Iron Oxide, Tan HR 60 1.78 PBr-11 1 I/O SBR
83MB02 (c) Iron Oxide, Light 68 2.1 PBr-6 2 C I/O SBR
83MB03 (c) Iron Oxide, Dark 60 1.83 PBr-6 2 C I/O SBR
83EP02 Iron Oxide, Light 69 1.98 PBr-6 2 C I/O EPDM
83EP03 Iron Oxide, Dark 69 1.98 PBr-6 2 C I/O EPDM
BLACK
90MB01 (c) Furnace N-330 31 1.2 PBk-7 1 I/O SBR
90MB05 (c) Iron Oxide 60 1.8 PBk-11 2 C I/O SBR
90EP01 Furnace Black 33 1.05 PBk-7 1 I/O EPDM
90EP05 Iron Oxide 55 1.56 PBk-11 2 C I/O EPDM
ALUMINUM
61MB01 Aluminum 70 1.5 PM-1 1 I/O SBR
61EP01 Aluminum 60 1.31 PM-1 1 I/O EPDM
RS = Red Shade
YS = Yellow Shade
VYS = Very Yellow Shade
BS = Blue Shade
VBS = Very Blue Shade
GS = Green Shade
NC = Non-Crystallizing
HR = Heat-Resistant
(a) = Potential Migration at Low Use Levels
(b) = Poor Alkali Resistance - Not Recommended
for Open Steam Cure
(c) = Six Month Shelf Life
LIGHTFASTNESS
I = Indoor Only
I/O = Indoor or Outdoor
Mass = Outdoor Masstone Application Only
C = Some Caution Advised
HEAT STABILITY
1 = Above 400°F
2 = 350°F–400°F
3 = Below 350°F
C = Some Caution Advised
1.844.4AVIENT
www.avient.com
Copyright © 2024, Avient Corporation.
https://www.avient.com/sites/default/files/2020-10/avient-design-impact-protection-project.pdf
Avient Corporation 3
Simplified Drop Test
• 65g steel ball
• Dropped from 305mm
• Onto 3.175mm thickness flat
samples
Materials Tested
• Standard TPE 30 Shore A
• TPU alloy 60 Shore A
• Damping TPE 32 Shore A
VDT reduces
bounce
Avient Corporation 4
SIMULATION & CALIBRATION
E N 1 6 2 1 - 1 L E V E L 2
Image courtesy of Airobag TV
https://www.youtube.com/c/AirobagTV/videos
Simulation of Impact
A weight dropped onto protective element in
contact with rigid substrate
https://www.youtube.com/c/AirobagTV/videos
Avient Corporation 5
SIMULATION & CALIBRATION
E N 1 6 2 1 - 1 L E V E L 2
REFINING THE DESIGN
D E S I G N A N D M A T E R I A L C O M B I N A T I O N
Avient Corporation 6
• A number of different shapes and
designs are created and simulated to
determine which one works best
• Refining to meet EN standard
• VDT TPEs can help reach compliance
with EN1621-1 level 2 and EN1621-2
level 1
• Optimum protection can be achieved
by combining industrial design and
engineering
Avient Corporation 7
VALIDATION
P R O T O T Y P I N G W I T H 3 D P R I N T I N G
3D Printing Validation
-15% -10% -5% 0% 5% 10%
Density
Tensile Strength //
Tear resistance //
Rebound resilience 2mm
3D Printed VDT vs Injection Molded
VDT can be 3D printed for concept evaluation early in the design process
SUMMARY
Avient Corporation 8
• Enabled a new, compact design with a
customized VDT TPE formulation
• Improved user comfort and functionality
• Fulfilled EN standards
• Reduced number of prototyping tools
required
• Reduced time spent in product development
by 40 percent, enabling faster
commercialization of product
https://www.avient.com/sites/default/files/2022-09/Avient Pro Forma Financial Information.pdf
Additionally, Adjusted EPS excludes the impact of special
items and amortization expense associated with intangible assets.
2
PRO FORMA 2021 TO 2022 BRIDGE
3
2021 EPS from Continuing Operations 1.69$
Pro Forma & Special Items 1.33
Proforma 2021 Adjusted EPS 3.02$
FX Impact (0.22)
China Lockdowns / Russia Import Sales (0.24)
Outdoor High Performance (0.13)
Dyneema 0.06
Color, Additives and Inks 0.38
Legacy Specialty Engineered Materials 0.22
Other 0.01
Proforma 2022 Adjusted EPS 3.10$
COLOR, ADDITIVES AND INKS
7% (4%) (9%)
6% (10%)
0% 1%
2%
7%
10% 4% (3%)
12% (6%)
5% 6%
9%
610 650 624 649 587 565 581 526
2,402 2,390
589 650 589 649 543 565 545 526
2,266 2,390
116 121 112 119 93 95 88 79
409 414
113 121 106 119 87 95 84 79
390 414
10%
4
(1%)
PRO FORMA SPECIALTY ENGINEERED MATERIALS
16%8% (8%) (8%) 3% (6%) (6%)
(2%) 2%
20%12% (1%) (2%) 5% (1%) (2%)
3% 6%
314 338 348 343 325 300 321 295
1,308 1,276
303 338 329 343 303 300 301 295
1,236 1,276
67 78 75 77 70 66 66 62
278 283
65 78 73 77 67 66 63 62
268 283
5
Constant Currency Adjusted EPS
Adjusted EPS
PRO FORMA AVIENT
10% (3%) (21%)
3%
9% 5%
7% (5%) (9%)
(1%)
(1%) (12%)
1%
17% 8% (14%)
11%
14% 10%
11% 2% (3%)
5%
8% (5%)
7%
925 987 973 992 912 867 902 823
3,712 3,669
893 987 919 992 847 867 845 823
3,504 3,669
161 176 164 172 142 141 133 117
600 606
155 176 157 172 131 141 123 117
566 6068%
2%
0.84 0.98 0.87 0.96 0.70 0.68 0.61 0.48
3.02 3.10
0.79 0.98 0.82 0.96 0.63 0.68 0.56 0.48
2.80 3.10
17%
24%
6
March 31, 2022
March 31, 2021
Net income from continuing operations $ 64.7 $ 60.4
Net income attributable to noncontrolling interests (0.3) (0.4)
Net income from continuing operations attributable to Avient shareholders $ 64.4 $ 0.70 $ 60.0 $ 0.65
Special items, after tax $ 6.4 $ 0.07 $ 2.6 $ 0.03
APM pro forma adjustments 2.6 0.03 (3.1) (0.03)
Amortization expense, after tax 17.4 0.19 17.9 0.19
Adjusted pro forma net income / EPS $ 90.8 $ 0.98 $ 77.4 $ 0.84
Weighted average diluted shares 92.3 92.2
June 30, 2022
June 30, 2021
Net income from continuing operations $ 62.8 $ 50.2
Net income attributable to noncontrolling interests — (0.6)
Net income from continuing operations attributable to Avient shareholders $ 62.8 $ 0.68 $ 49.6 $ 0.54
Special items, after tax $ 3.2 $ 0.03 $ 11.7 $ 0.13
APM pro forma adjustments 5.2 0.06 1.4 0.02
Amortization expense, after tax 17.2 0.19 17.8 0.19
Adjusted pro forma net income / EPS $ 88.4 $ 0.96 $ 80.5 $ 0.87
Weighted average diluted shares 92.1 92.4
September 30, 2021
Reconciliation to Condensed Consolidated Statements of Income Avient EPS
Net income from continuing operations $ 33.4
Net income attributable to noncontrolling interests 0.3
Net income from continuing operations attributable to Avient shareholders $ 33.7 $ 0.37
Special items, after tax $ 11.7 $ 0.13
APM pro forma adjustments 1.5 0.02
Amortization expense, after tax 17.6 0.19
Adjusted pro forma net income / EPS $ 64.5 $ 0.70
Weighted average diluted shares 92.2
Adjusted EPS may not recalculate due to rounding.
1
December 31, 2021
Year Ended
December 31, 2021
Net income from continuing operations $ 11.2 $ 155.2
Net income attributable to noncontrolling interests 0.9 0.2
Net income from continuing operations attributable to Avient shareholders $ 12.1 $ 0.13 $ 155.4 $ 1.69
Special items, after tax $ 24.0 $ 0.26 $ 50.0 $ 0.54
APM pro forma adjustments 2.5 0.03 1.6 0.02
Amortization expense, after tax 17.8 0.19 71.1 0.77
Adjusted pro forma net income / EPS $ 56.4 $ 0.61 $ 278.1 $ 3.02
Weighted average diluted shares 92.4 92.1
Reconciliation of Color, Additives and Inks EBITDA
Operating
Income 88.8 86.3 66.8 61.2 303.1 94.5 93.6
Depreciation and
amortization 27.4 25.3 26.6 26.4 105.7 26.0 25.9
EBITDA $ 116.2 $ 111.6 $ 93.4 $ 87.6 $ 408.8 $ 120.5 $ 119.5
Q1 2021 Q2 2021 Q3 2021
Pro
forma
Pro
forma
Pro
forma
Pro
forma
Pro
forma
Pro
forma
Operating Income 32.6 9.1 41.7 35.8 13.9 49.7 30.0 15.2 45.2
Depreciation and
amortization 7.8 17.5 25.3 8.1 17.3 25.4 7.9 17.1 25.0
EBITDA $ 40.4 $ 26.6 $ 67.0 $ 43.9 $ 31.2 $ 75.1 $ 37.9 $ 32.3 $ 70.2
Q4 2021 YTD 2021
Pro
forma
Pro
forma
Pro
forma
Pro
forma
Operating Income 27.1 11.7 38.8 125.5 49.9 175.4
Depreciation and amortization 8.0 18.9 26.9 31.8 70.8 102.6
EBITDA $ 35.1 $ 30.6 $ 65.7 $ 157.3 $ 120.7 $ 278.0
2
Q1 2022 Q2 2022
Pro
forma
Pro
forma
Pro
forma
Pro
forma
Operating Income 38.3 15.4 53.7 35.2 17.7 52.9
Depreciation and amortization 7.8 16.6 24.4 7.7 16.6 24.3
EBITDA $ 46.1 $ 32.0 $ 78.1 $ 42.9 $ 34.3 $ 77.2
Q1 2021 Q2 2021 Q3 2021
Pro
forma
Pro
forma
Pro
forma
Pro
forma
Pro
forma
Pro
forma
Net income from
continuing operations 60.4 (3.1) 57.3 50.2 1.4 51.6 33.4 1.5 34.9
Income tax expense 16.3 1.1 17.4 13.8 1.3 15.1 2.0 2.5 4.5
Interest expense 19.3 11.1 30.4 19.5 11.2 30.7 19.0 11.2 30.2
Depreciation and
amortization 36.9 17.5 54.4 33.6 17.3 50.9 36.6 17.1 53.7
EBITDA 132.9 26.6 159.5 117.1 31.2 148.3 91.0 32.3 123.3
Special items, before
tax 2.4 — 2.4 14.2 — 14.2 19.9 — 19.9
Depreciation included
in special items (0.6) — (0.6) 1.4 — 1.4 (0.9) — (0.9)
Adjusted EBITDA $ 134.7 $ 26.6 $ 161.3 $ 132.7 $ 31.2 $ 163.9 $ 110.0 $ 32.3 $ 142.3
Q4 2021 YTD 2021
Pro
forma
Pro
forma
Pro
forma
Pro
forma
Net income from continuing operations 11.2 2.5 13.7 155.2 1.6 156.8
Income tax expense 16.2 (1.9) 14.3 48.3 3.7 52.0
Interest expense 17.5 11.1 28.6 75.3 44.6 119.9
Depreciation and amortization 37.9 18.9 56.8 145.0 70.8 215.8
EBITDA 82.8 30.6 113.4 423.8 120.7 544.5
Special items, before tax 20.6 — 20.6 57.1 — 57.1
Depreciation included in special items (1.6) — (1.6) (1.7) — (1.7)
Adjusted EBITDA $ 101.8 $ 30.6 $ 132.4 $ 479.2 $ 120.7 $ 599.9
3
Q1 2022 Q2 2022
Pro
forma
Pro
forma
Pro
forma
Pro
forma
Net income from continuing operations 64.7 2.6 67.3 62.8 5.2 68.0
Income tax expense 20.0 1.7 21.7 22.7 1.4 24.1
Interest expense 16.9 11.1 28.0 16.2 11.1 27.3
Depreciation and amortization 37.6 16.6 54.2 36.3 16.6 52.9
EBITDA 139.2 32.0 171.2 138.0 34.3 172.3
Special items, before tax 6.6 — 6.6 0.9 — 0.9
Depreciation included in special items (2.1) — (2.1) (1.1) — (1.1)
Adjusted EBITDA $ 143.7 $ 32.0 $ 175.7 $ 137.8 $ 34.3 $ 172.1
Reconciliation of Specialty Engineered Pro Forma Sales
Sales 214.7 238.9 231.7 226.3 911.6 243.1 242.3
Pro forma APM 98.9 108.8 93.8 94.9 396.4 94.8 100.5
Pro forma sales $ 313.6 $ 347.7 $ 325.5 $ 321.2 $ 1,308.0 $ 337.9 $ 342.8
Reconciliation of Avient Pro Forma Sales
Sales 826.0 864.5 818.0 807.1 3,315.6 892.2 891.0
Pro forma APM 98.9 108.8 93.8 94.9 396.4 94.8 100.5
Pro forma sales $ 924.9 $ 973.3 $ 911.8 $ 902.0 $ 3,712.0 $ 987.0 $ 991.5
4
IR Slides
V17 - 9.26 324pm IR Deck - AVNT-2022.09.27 Pre Release v2
https://www.avient.com/sites/default/files/2024-08/Avient-2023-Sustainability-Report_5.pdf
North Haven, Connecticut Stanley, North Carolina(b)
6.
Sant Andreu, Spain 6.
This training focuses on the importance of being an Inclusive Leader, introducing the 6 Traits of Top
Leaders, as well as Unconscious Bias and Recruiting Best Practices to ensure all candidates, internal
and external, have the best engagement experience.
https://www.avient.com/sites/default/files/resources/Investor%2520Day%2520-%2520May%25202012%2520-%2520Welcome%2520and%2520Introduction.pdf
Newlin
Page 6
Today’s Objectives
• Clear understanding of our mix
improvement strategy
• Instill confidence in PolyOne as a
growth companygrowth company
• Provide exposure and build relationships
with our exceptional management team
Unveiling of 2015 Performance Targets
Page 7
• Geon and M.A.
Hanna
consolidate
• Cultures clash –
commodity wins
• Dependent on
income derived from
commodity joint
ventures
The First 6 Years
• Globally organized along
three strategic platforms
• Non-core equity
investment dispositions
• Talent upgrades, discipline
instilled throughout
organization
• New CEO hired to
transform POL into
specialty business
�18 of 20 officers new
• Implemented four
pillar strategy
• Nearly 50% of
The Second 6 Years
History of PolyOne – A Transformation
• Focused on increasing
volume, not profits
• Heavily tied to cyclical
markets
2000 2006 2012
The FormationThe Formation
The TransformationThe Transformation
The New PolyOneThe New PolyOne
organization
• Demonstrated ability
to deliver
• Nearly 50% of
business operating
income derived from
Specialty Platform*
• Specialty assets
acquired
*Pro forma for ColorMatrix acquisition
Page 8
30%
50%
70%
90%
$10
$12
$14
$16
$18
PolyOnePolyOne
Stock Price
S&P 500 (relative performance)
Strategy and Execution Drive Results
| | | |
-50%
-30%
-10%
10%
30%
$0
$2
$4
$6
$8
$10
2006 2007 2008 2009 2010 2011 2012
Page 9
Four Pillar Strategy
The World’s Premier Provider of Specialized
Polymer Materials, Services & Solutions
Page 10
60%
80%
100%
%
o
f
O
p
ra
ti
g
I
co
m
*
Old
PolyOne
Transformation
2012
Target
“What We Said”
Mix Shift Highlights Specialty Transformation
Ahead of Schedule
*Operating Income excludes Corporate Charges
** Pro Forma for the acquisition of ColorMatrix and divestiture of SunBelt
2%
34%
42%
50% >50%
0%
20%
40%
2005 2008 2011 2011** 2012
%
o
f
O
p
ra
ti
g
I
co
m
*
JV's PP&S Distribution Specialty
Specialty OI $5M $46M $89M $117M “What We Said”
Page 11
2007 2012 Target 2011
“Where we were” “What we said” “Where we are”
1) Operating Income %
Specialty 3.2% 10% - 12% 8.9%
PP&S 6.1% 8% - 10% 7.2%
Pro forma ColorMatrix
Proof of Performance
Distribution 3.0% 4% - 5% 5.6%
2) Specialty Platform
sss% of Operating Income
20% >50% 50%
3) Specialty Vitality
Index
21% 35% - 40% 49%
4) ROIC* (pre-tax) 11% >15% 16%
5) Sales outside the US 37% >40% 40%
*ROIC is defined as TTM adjusted OI divided by the sum of average debt and equity over a 5 quarter period
Page 12
2011
Pro forma ColorMatrix
2015 Target
“Where we are” “Where we expect to be”
1) Operating Income %
Specialty 8.9%
PP&S 7.2%
12 – 16%
9 – 12%
Elevating our Expectations and Yours
PP&S 7.2%
Distribution 5.6%
2) Specialty Platform
% of Operating Income
50%
3) ROIC* (after-tax) 10%
4) Adjusted Annual
EPS Growth
3 yr CAGR = 71%
9 – 12%
6 – 7.5%
65 – 75%
15%
Double Digit Expansion
*ROIC is defined as TTM adjusted OI divided by the sum of average debt and equity over a 5 quarter period
Page 13
• Four pillar strategy, coupled with our ability to
execute is driving results
• Strong leadership team driving growth & executing
• Innovation and services provide differentiation and
How do we get there?
https://www.avient.com/sites/default/files/resources/PolyOne%2520IR%2520Presentation%2520-%2520Jefferies%2520Conference%2520-%25208%253A7%253A2018.pdf
�& � ( �( $&�"'���1 � ( 3�/ �$�.� ( � 6, $!
.* $ 6; �!
$8 ()=>>2 6?
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
www.avient.com
Copyright © 2020, Avient Corporation.
https://www.avient.com/sites/default/files/2021-05/renol-ul94-compliant-masterbatches-brochure.pdf
RENOL™ UL94 COMPLIANT
MASTERBATCHES
HOW TO USE THE TABLES
UL HB
GENERIC RESIN TYPE FLAME
MINIMUM
THICKNESS
MAXIMUM
LET-DOWN
Acetal Copolymer (POM) HB 1.50 1:20
Acrylonitrile Butadiene Styrene (ABS) HB 1.50 1:10
Ethylene Propylene Thermoplastic Rubber (EPTR) HB 1.50 1:20
High Impact Polystyrene (HIPS) HB 1.50 1:10
Liquid Crystal Polymer (LCP) HB 0.83 1:10
Polyamide (PA) HB 3.20 1:33
Polyamide (PA66 and PA 4/6) HB 0.81 1:20
Polyamide 6 (PA6) HB 0.75 1:25
Polyamide 66 (PA66) HB 0.40 1:40
Polybutylene Terephthalate (PBT) HB 0.81 1:20
Polybutylene Terephthalate/Polycarbonate (PBT/PC) HB 1.50 1:10
Polycarbonate (PC) HB 1.50 1:15
Polycarbonate/Acrylonitrile Butadiene Styrene (PC/ABS) HB 1.50 1:20
Polycarbonate/Polyethylene Terephthalate (PC/PET) HB 1.50 1:20
Polyethylene (PE) HB 1.50 1:50
Polyethylene Terephthalate (PET) HB 0.80 1:16.7
Polyketone HB 1.50 1:20
Polymethyl Methacrylate (PMMA) HB 3.00 1:25
Polypropylene (PP) HB 1.50 1:15
Polystyrene (PS) HB 0.83 1:15
Polyurethane (PUR) HB 1.50 1:25
Polyvinylchloride (PVC) HB 1.50 1:20
Styrene Acrylonitrile (SAN) HB 1.50 1:20
Thermoplastic Elastomer (TPE) HB 0.75 1:25
ASCEND
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyamide 66
21X1(a)(f2), 21SPC1(a)(f2),
21SPF1(a)(f2), 21SPG1(a)(f2),
21SPM1(a)(f2), 20NSP1(a)(f2)
0.75 V-2 1:40
22HSP(e) 0.75 V-2 1:40
64C-R 3.0 V-2 1:50
ECO366(e) 0.4 V-0 1:40
ECO366H(e) 0.2 V-0 1:25
FR350J 0.4 V-0 1:25
20NSP(a)(f2), 21SPF(a)(f2),
21SPM(a)(f2), 21SPC(a)(f2) 0.4 V-2 1:40
20NSP(a)(h)(f2), 21SPF(a)(h)(f2),
21SPM(a)(h)(f2), 21SPC(a)(h) (f2) 1.5 V-2 1:20
Polyamide 66/6
(PA66/6)
ECO315(e), ECO315J(e) 0.4 V-0 1:40
M344 3.0 V-0 1:25
909 0.75 V-0 1:25
BASF
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyamide 6
8202(t1), 8202 Blend (t1) 0.71 V-2 1:25
8202C(t1), 8202C BLEND (t1) 1.50 V-2 1:25
8202CHS(t1) (t3), 8202C HS Blend 1.50 V-2 1:25
8202HS(t1) 1.50 V-2 1:25
B3S
0.80 V-2 1:25
B3S Q661 1.50 V-2 1:25
B3S R03 1.50 V-2 1:25
8232G HSFR(t9), B3U10G5 (t9) 1.50 V-0 1:25
Polyamide 6/66
(PA6/66)
C3U (m) 0.40 V-0 1:25
KR4205(m), C3U (m), C3U (t)(m) 0.40 V-0 1:25
KR4205, C3U 0.40 V-0 1:25
Polyamide 66
1000(b), 1310-(b), Ultramid A3K Q603(+) 1.50 V-2 1:10
A3K (o) Q790(g)(f2) 0.41 V-2 1:20
A3K(f2), A3K Q601(f2) 0.41 V-2 1:20
A3SK 0.41 V-2 1:25
A5 3.00 V-2 1:33
A3W(f1), A3W FC (f1) 0.75 V-2 1:10
A3K R01 (t)(g)(f2) 0.40 V-2 1:20
Polybutylene
Terephthalate
B4406 G2 (o) Q798 1.50 V-0 1:20
B4406 G2(a), B4406 G2 (o) Q717(a) 1.50 V-0 1:20
B4406 G3 (o) Q798 1.50 V-0 1:20
B4406 G3(a), B4406 G3 (o) Q717(a) 1.50 V-0 1:20
B4406 G4 (o) Q798 1.50 V-0 1:20
B4406 G4(a2), B4406 G4 (o) Q717(a2) 1.50 V-0 1:20
B4406 G6 (o) Q798 3.00 V-0 1:12.5
B4406 G6(%) 1.50 V-0 1:20
B4406 G6(a1), B4406 G6 (o) Q717(a1),
B4406 G6 (o) Q717 High Speed(a1) 1.50 V-0 1:20
B4406(a), B4406 (o) Q717(a) 1.50 V-0 1:20
B4406@ 1.50 V-0 1:20
B4450 G5, B4450 G5 (t) 0.40 V-2 1:50
Polyurethane
(PUR) 11 85 A(a) FHF 000 (f2) 0.75 V-0 1:33
CELANESE
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Liquid Crystal
Polymer
(LCP)
A130(+), MT1310 1.50 V-0 1:40
Polyamide 66
(PA66) A3 GF 25 V0XI, A G5 FR C4 0.40 V-0 1:25
Polybutylene
Terephthalate
2012-2 1.50 V-0 1:20
2016(b) 1.50 V-0 1:20
3112-2 1.50 V-0 1:20
3116(b) 1.50 V-0 1:20
3216(b) 1.50 V-0 1:20
3310-2(f2) 1.50 V-0 1:20
3311-3(f2) 1.50 V-0 1:20
3316(b) 1.50 V-0 1:20
3316(b), 3316HF 1.50 V-0 1:20
COVESTRO
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polycarbonate
2407 + (z)(f1) 0.75-2.60 V-2 1:10
2807 + MAS183 0.75 V-2 1:25
6455 + (z)
6485 + (z)(f1) 1.50 V-0 1:25
Acrylonitrile
Butadiene Styrene
FR110 + 1.50 V-0 1:33
FR3005 HF + (z), FR3005 HF + BBS314 1.50 V-0 1:12.5
FR3010 + (z)
1.50 V-0 1:25
FR3010 HF + 3.00 V-0 1:25
FR3030 + 3.00 V-0 1:25
DSM
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyamide 46
(PA46) TE250F6(h1)(j) 0.50 V-0 1:25
Polyamide 6
F223-D(f1), F223-D /A(f1) 0.75 V-2 1:25
K222-KGV5(f1)
0.75 V-2 1:16.7
1.50 V-2 1:16.7
K-FKGS6/B(f1)(y) 0.80 V-0 1:25
Polyamide 66
(PA66) SG-KGS6/HV 0.75 V-0 1:25
Thermoplastic
Elastomer
(TPE)
PL460-S 1.60 V-0 1:25
Polyamide 4T
(PA4T) T11 (h) 0.40 V-0 1:20
DOMO
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyamide
(PA) J 60X1 V30 0.40 V-0 1:25
Polyamide 6
(PA6) PSB 286
0.80 V-2 1:25
3.00 V-2 1:25
Polyamide 66
A 205F(r4) 0.38 V-2 1:25
A 225F 0.75 V-2 1:25
A 50H1 (r3)(f2) 0.40 V-0 1:25
A 30G1 0.40 V-0 1:25
DUPONT
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyamide
(PA)
132F(+)(f1), 135F(+)(f1) 0.75 V-2 1:20
HTNFR42G30NH 0.40 V-0 1:25
Polyamide 6/12
(PA6/12) 151, 151L 1.50 V-2 1:25
Polyamide 66
101(r9)(f1), 101F(r9)(f1), 101L(r9)(f1),
E101(r9)(f1), E101L(r9)(f1) 0.75 V-2 1:20
103FHS(+), 103HSL(+), RN5077E(+),
E103HSL(+) 0.75 V-2 1:20
A428 0.75 V-0 1:20
FE3757(+) 0.75 V-2 1:25
FR15(+) 0.75 V-0 1:20
FR50(+)(f1) 0.35 V-0 1:20
FR7025V0F(+) 0.50 V-0 1:33
Polyamide 66/6
(PA66/6) FR72G25V0 0.80 V-0 1:25
Polyamide 66/6T
(PA66/6T) FR95G25V0NH 0.40 V-0 1:25
Polyamide 6T/66
(PA6T/66)
HTNFR52G15AL 0.75 V-0 1:33
HTNFR52G30BL(r3) 0.75 V-0 1:33
HTNFR52G30L(+), FE15502(+),
HTNFR52G30AL(+) 0.75 V-0 1:33
HTNFR52G30NH(r6)
0.40 V-0 1:25
0.75 V-0 1:10
HTNFR52G35BL 0.75 V-0 1:25
HTNFR52G35L(+), HTNFR52G35AL 0.75 V-0 1:33
Polyamide 6T/
MPMDT HTNFR51G35L(+) 0.81 V-0 1:33
Polybutylene
Terephthalate
LW9030FR 1.50 V-0 1:25
S650FR 1.50 V-0 1:25
SK642FR 1.50 V-0 1:25
SK652FR1 1.50 V-0 1:16.5
T841FR (r4) 1.50 V-0 1:25
Polyethylene
Terephthalate
(PET)
FR530(l)(+)(f1), FR530L(l)(+)(f1) 0.75 V-0 1:25
Thermoplastic
Elastomer
(TPE)
HTR8068 1.60 V-0 1:25
EXXONMOBIL
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Ethylene
Propylene
Thermoplastic
Rubber
(EPTR)
251-80W232(f7) 1.50 V-2 1:20
251-92W232 1.50 V-0 1:20
251-70W232
1.00 V-2 1:10
LANXESS
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyamide 6
B30S+(f1) 1.50 V-2 1:25
B31SK+ 1.50 V-2 1:25
Polybutylene
Terephthalate
B4235+ 1.50 V-0 1:10
TP364-302+, BF4232+(f1) 0.75 V-0 1:25
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polybutylene
Terephthalate
310(w) 1.50 V-0 1:20
310SE0(w) 1.50 V-0 1:20
310SE0(w),310SE0R(w) 1.50 V-0 1:20
420SE0(f1)(w)(GG)(rr1) 1.50 V-0 1:20
420SE0(f1)(w)(GG)(rr2) 1.50 V-0 1:20
457(w) 1.50 V-0 1:20
457(w), 451(w) 1.50 V-0 1:20
553(a)(f1)(w) 1.50 V-0 1:20
553(a)(f1)(w), 553E(a)(f1)(w),
553U(a)(f1)(w) 1.50 V-0 1:20
553(w)(f1), 553M(w)(f1) 1.50 V-0 1:20
DR48(w) 1.50 V-0 1:20
DR48,DR48M 1.50 V-0 1:20
V4760(a2) 0.40 V-0 1:20
EXVX1259, ENH4550 0.40 V-0 1:20
771 0.75 V-0 1:25
Polybutylene
Terephthalate/
Polycarbonate
(PBT/PC)
357(f1)(w)(IC), 357M(f1)(w)(IC),
357U(f1)(w)(IC) 1.50 V-0 1:20
357(f1)(w)(IC), 357U(f1)(w)(IC) 1.50 V-0 1:20
357X(f1) 1.50 V-0 1:20
V3900WX(GG)(f1)(IA),
V3901WX(GG)(f1)(IA)
3.00 V-0 1:20
1.50 V-0 1:20
357(w)(f2)(IC), 357M(w)(f2)(IC),
357U(w)(f2)(IC) 1.50 V-0 1:20
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polycarbonate
221(f2) 1.50 V-2 1:25
221R(f2) 1.50 V-2 1:25
500(f2), 500R(f2) 3.00 V-0 1:33
503(f1)
3.00 V-0 10:1
1.50 V-0 10:1
503(f1), 503R(f1)
3.00 V-0 10:1
1.50 V-0 10:1
943(ab) 1.50 V-0 1:20
943(f1) 1.50 V-0 1:20
943(f1), 923(f1) 1.50 V-0 1:20
950A, 920ASR, FXD911A(GG), 940ASR 1.50 V-2 1:25
CFR7630(f1)(gg*) 1.50 V-0 1:25
ML5139R(f2) 3.00 V-0 1:33
950A, FXD911A(GG), 940ASR 3.00 V-0 1:25
943 1.50 V-0 1:20
920A
Acrylonitrile
Butadiene Styrene
C2950 1.50 V-0 6:100
C6200(GG) 2.00 V-0 1:20
Acrylonitrile
Styrene Acrylate/
Polycarbonate
(ASA/PC)
HRA222 (GG) 0.80 V-2 1:20
SOLVAY
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyphenyl Sulfone
(PPSU) R-5100 (r1)(##), R-5000 (r1)(##) 1.50 V-0 1:10
Polyphthalamide
(PPA) AFA-4133 V0(+) (*) 0.75 V-0 1:25
BASE RESIN
GENERIC
SPECIFIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
ALBIS Polypropylene
(PP) PP 13 CV2 14 1.50 V-2 1:25
AVIENT Polyvinylchloride
M3700(X), M3755(X) 1.50 V-0 1:25
M3900 1.50 V-0 1:25
CHI MEI
Acrylonitrile
Butadiene Styrene
(ABS)
PA-765(+) 1.50 V-0 1:10
Acrylonitrile
Butadiene Styrene
PC-510(+) 1.50 V-0 1:25
EMS-CHEMIE Polyamide 6
(PA6) Grilon A 26 V0 0.75 V-0 1:25
FORMOSA Polycarbonate
(PC) #1700+(f2) 0.36-0.42 V-2 1:50
GEON Polyvinylchloride
85891(f1) 1.70 V-0 1:20
85891(f2) 1.70 V-0 1:20
M3700(X) 1.50 V-0 1:25
M3900
1:25
INEOS Polystyrene
(PS) 855 HV 3.00 V-1 100:4
INVISTA Polyamide 66
FRU4800 XHL (r1) 0.40 V-0 1:25
U4820L (r1) 0.40 V-2 1:25
BASE RESIN
GENERIC
SPECIFIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
KINGFA Polyamide 66
(PA66) PA66-R11G25 (##) 0.25 V-0 1:25
KURARAY Polyamide 9T
(PA9T) GP2300S 0.40 V-0 1:25
LG CHEM
Acrylonitrile
Butadiene Styrene
LUPOY GP-5106-F 3.00 V-0 1:20
LOTTE CHEMICAL
Acrylonitrile
Butadiene Styrene
(ABS)
VH-0800(+) 1.50 V-0 1:25
Polycarbonate
(PC) HN-1064(+)
0.75 V-2 1:10
1.20 V-1 1:10
Polystyrene
(PS) VH-1800+
1.50 V-0 1:25
MITSUBISHI Polycarbonate
(PC) S-2000+(f1) 1.50-1.80 V-2 1:10
POLYMER
PRODUCTS
Polystyrene
(PS)
ZYNTAR 351
2.00 V-0 1:20
1.50 V-0 1:20
ZYNTAR 7000 2.00 V-0 1:25
ZYNTAR 702 2.00 V-0 1:25
8020 2.00 V-0 1:20
8120 2.00 V-0 1:20
8130 1.50 V-0 1:20
POLYMER
RESOURCES
Polycarbonate
PC-FR1A-D, PC-
FR2A-D, PC-FR3A-D
3.00 V-0 1:33
1.50 V-2 1:33
SUMITOMO
Liquid Crystal
Polymer
(LCP)
E6007LHF(ra) 0.30 V-0 1:25
E6007LHF-MR(gt) 0.20 V-0 1:12.5
BASE RESIN
GENERIC
SPECIFIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
TORAY
Polyamide 6
(PA6) 1017 1.60 V-2 1:16.5
Polyamide 66
3004-V0(rr),
CM3004-V0(rr) 0.40 V-0 1:25
TRINSEO Polycarbonate
(PC) 891(w) 1.10 V-0 1:25
WELLMAN Polyamide 66/6
(PA66/6) 220-N, 21L-N, 22L-N 1.50 V-2 1:25
WESTLAKE Polyvinylchloride
6597(f1), HF-6597(f1) 1.50 V-0 1:25
SP-7107 (f1)(a) 3.00 V-0 1:25
5VA AND 5VB
BASE RESIN
GENERIC
SPECIFIC
MINIMUM
THICKNESS
FLAME
RATING COLORS
MAXIMUM
LET-DOWN
AVIENT Polyvinylchloride
(PVC) M3900 1.50 5VB
ALL 1:25
WHITE 1:10
COVESTRO
Acrylonitrile
Butadiene Styrene
FR3010 + (z) 3.00 5VA ALL 1:25
DUPONT
Polyamide 66/6T
(PA66/6T) FR95G25V0NH 1.50 5VA ALL 1:25
Polybutylene
Terephthalate
LW9030FR
2.00 5VA BLACK 1:25
3.00 5VA ALL 1:25
SK642FR 1.50 5VA BLACK 1:25
GEON Polyvinylchloride
(PVC) M3900 1.50 5VB
ALL 1:25
WHITE 1:10
Polybutylene
Terephthalate/
Polycarbonate
(PBT/PC)
V3900WX(GG)(f1)(IA),
V3901WX(GG)(f1)(IA) 3.00 5VA ALL 1:20
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