https://www.avient.com/sites/default/files/2022-02/Sustainability ESG Disclosures_Titanium Dioxide.pdf
Worker
Workers should follow the recommended safety measures contained within the
Safety Data Sheet (SDS) and on any product packaging.
https://www.avient.com/sites/default/files/2021-06/plastisol-storage-handling-technical-bulletin.pdf
As a result of these plastisol aging characteristics
and the potential differences in testing
methodology, it is strongly recommended that
incoming quality control (QC) specifications not
be established based on plastisol Technical Data
Sheets (TDS), or Certificates of Analysis (COA).
https://www.avient.com/sites/default/files/2022-11/PREPERM RF Materials 1-pager.pdf
RADIO FREQUENCY MATERIALS
Maximize your radio frequency (RF) performance
with PREPERM™ materials
OPTIMAL RF PROPERTIES
• Well-controlled dielectric constant range
2.55–23
• Ultra-low loss even at mmWave frequencies
• Stable performance even up to 220 GHz
SPEED UP YOUR CONCEPT
VALIDATION WITH
• Avient Design services
• Filaments for 3D printing
FROM PROTOTYPING TO MASS
PRODUCTION
• Injection molding process enables flexible
product designs
• Scalable production
• Customized sheets in high volumes
• Consistent quality in mass production
• Excellent total cost performance compared
to traditional materials
PREPERM™ IS A SUSTAINABLE CHOICE
Products’ life-cycle and environmental footprint are
important factors for designers.
https://www.avient.com/sites/default/files/2021-04/bergamid-seat-fastener-case-study.pdf
First, sheet metal
restricts design flexibility, and different automotive OEMs
request different attachment configurations for the part, so it
becomes extremely time-consuming to design and fabricate
multiple variations in metal.
https://www.avient.com/sites/default/files/resources/Investor%2520Day%2520-%2520May%25202012%2520-%2520Global%2520Color%252C%2520Additives%252C%2520and%2520Inks.pdf
Van Hulle
Page 53
United States
33%
47%
Canada
Asia
12%
Latin America
Eastern
2%
2011 Revenue: $0.7 Billion*2011 Revenue: $0.7 Billion* SolutionsSolutions
At a Glance
Building &
Construction
11%
Wire & Cable
15%
Consumer
Packaging
36%
Industrial
10%
Misc.
7%
HealthCare
3%
Transportation
Textiles
Canada
1%
Latin America
5%
2011 Revenue by Industry Segment*2011 Revenue by Industry Segment*
*Pro forma for the acquisition of ColorMatrix
Expanding ProfitsExpanding Profits
1.7%
4.6%
5.1% 5.5%
7.1%
9.6%
12-16%
2006 2007 2008 2009 2010 2011PF 2015
Operating Income % of Sales
Target
Page 54
Value Proposition
• GCAI is a global leader enabling OEMs and converters to
profitably expand their business with customized color and
additive solutions
Transformation Highlights
• Mix improvement and value-based selling has
Value Proposition and Transformation Highlights
• Mix improvement and value-based selling has
driven nearly 800 basis points increase in
operating margin since 2006
• 2011 acquisition of ColorMatrix accelerates
innovation pipeline and expansion into
new markets
> $12B Addressable Market
Page 55
• Unbiased, solution-based culture selling value
�Customer-centric approach
� Economic value impact documented for customers
• Complete package, product range and
service offering
�Custom solutions for customers’ unique requirements
Key Differentiators
�Custom solutions for customers’ unique requirements
� Industry-leading service offering
• Coordinated global infrastructure
�Consistency in product and
customer service
� Supply-chain reliability
Page 56
From Volume
Commodity white dominated mix
To Value
Focus on specialty color
Global Film Customer
Volume Revenue Gross Margin $
Mix Transformation – Executing the Strategy
2010 2011 2010 2011 2010 2011
Page 57
Global Packaging Customer
Volume Sales Gross Margin $
From Volume
Commodity white dominated mix
To Value
Focus on specialty color
Mix Transformation – Executing the Strategy
2010 2011 2010 2011 2010 2011
Page 58
• OnColor™ HC Plus
� Applications: Medical devices
� Customer benefits: Brand enhancement, expanded market
opportunities, speed-to-market
• WithStand™ Antimicrobial Solutions
� Applications: Healthcare devices, appliances, kitchen utensils
Key Innovations
� Applications: Healthcare devices, appliances, kitchen utensils
and surfaces, children’s toys
� Customer benefits: Expanded market opportunities, extended
product life
• OnCap™ Antifog
� Applications: Food packaging
� Customer benefits: Extended shelf life, improved product
aesthetics, production efficiencies
Page 59
• $1.5 billion attractive, growing market
• Additives improve performance and
reduce cost through light-weighting, reduced
waste, faster cycle times, and extended shelf
life of finished product
• Aligned with megatrend of protecting
the environment
Market Opportunity
Shelf-life extension
Greater product
consistency
Weight reduction
Performance Additives
the environment
Leading Global Supplier of Additives In Fast Growing PET Market
consistency
Recyclability and
reduced carbon
footprint
Color and special
effects
Enhanced product
aesthetics
High heat resistance
4% 4%
8%
9% 9%
10%
11%
14%
Western
North
America
South
America
MEA Easter
Asia
Pacific
China India
PET 2008-13P CAGR
Page 60
HyGuardTM Oxygen Barrier System
• Applications: Beverage containers, food packaging
• Function: Active scavenging system for
• Function: Active scavenging system for
oxygen-barrier improvement
• Customer benefits: Extended shelf-life,
light-weight, recyclable
Page 61
ExceliteTM Foaming Agent
• Applications: Vinyl sheet for digital printing
• Function: Chemical foaming agent for
weight reduction
• Customer benefits: Increased product
quality, operational efficiencies
Page 62
Joule RHBTM Advanced Reheat Technology
• Applications: PET containers
• Function: Infra-red absorber for improved
• Function: Infra-red absorber for improved
• Customer benefits: Sustainability,
operational and energy savings
reheating efficiency
Page 63
• Accelerate customer development
pipeline with OnColor™ HC Plus
• Provide solutions addressing infection
concerns in healthcare facilities
Areas of Focus
$8.7
$20.0
Healthcare
2006 2011PFconcerns in healthcare facilities
• Help customers expand into new
markets with HyGuard™ technology
• Extend food shelf life and consumer
appeal with OnCap™ Anti-Fog $130.2
$268.0
2006 2011PF
Packaging
2006 2011PF
(Revenue in $ millions)
2006 2011PF
2006 2011PF
Page 64
Critical Imperatives and 2015 Goal
Critical Imperatives
• Integrate and leverage ColorMatrix technology and
customer relationships
• Identify and focus on specialty applications within our
target markets
• Accelerate global expansion and profitability
improvements in emerging markets, leveraging
success in U.S. and Europe
2015 Goal
• 12 - 16% return on sales
Page 65
Page 66
https://www.avient.com/sites/default/files/resources/PolyOne%25202011%2520Annual%2520Report.pdf
These monomers are then
polymerized into chains called polymers, or plastic resin, such as polyethylene
and polypropylene, in its most basic form.
Off-Balance Sheet Arrangements
We have no off-balance sheet arrangements as defined in Item 303(a)(4)(ii)
of Regulation S-K.
dollars at the exchange rates in effect at the balance sheet date.
https://www.avient.com/sites/default/files/resources/Polyone%2520AR.pdf
These monomers are then polymerized into
chains called polymers, or plastic resin, such as polyethylene and polypropylene, in their most basic forms.
The major types of thermoplastics include polyethylene, polyvinyl chloride, polypropylene,
polystyrene, polyester and a range of specialized engineering resins.
Off-Balance Sheet Arrangements
We have no material off-balance sheet arrangements as defined in Item 303(a)(4)(ii) of Regulation S-K.
https://www.avient.com/sites/default/files/resources/PolyOne%25202017%2520Annual%2520Report.pdf
These monomers are then
polymerized into chains called polymers, or plastic resin, such as polyethylene and polypropylene, in their most
basic forms.
The major types of thermoplastics include polyethylene, polyvinyl chloride,
polypropylene, polystyrene, polyester and a range of specialized engineering resins.
At December 31, 2017, the
gross liability for unrecognized income tax benefits, including interest and penalties, totaled $22.5 million.
25POLYONE CORPORATION
Off-Balance Sheet Arrangements
We have no material off-balance sheet arrangements as defined in Item 303(a)(4)(ii) of Regulation S-K.
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
1.844.4AVIENT
www.avient.com
Copyright © 2020, Avient Corporation.
https://www.avient.com/sites/default/files/2023-06/Omnicolor Brochure.pdf
MULTIPURPOSE
COLORANTS
Polyethylene 1%
Polypropylene 1%
GP Polystyrene 1%
HI Polystyrene 1–2%
Acrylics (Opaque) 1%
PBT Polyester 1%
PET Polyester 1%
Polyurethane 1–2%
Polyamide (Nylon) 1%
Acetal 1%
SAN 1%
ABS 1–3%
PVC 1–3%
Polycarbonate 1%
Thermoplastic 1–3%
Alloys & Blends 1–3%
EVA 1%
Filled Polymers 1–3%
RECOMMENDED ADDITION RATES
CONCENTRATE SELECTION
Omnicolor colorants are generally
selected because of their versatility
where a wide range of polymers are
processed and their availability for
sale in small quantities.
PROCESS COMPATIBILITY
Omnicolor colorants can be used for
injection molding, blow molding,
and profile and sheet extrusion.