https://www.avient.com/sites/default/files/2022-02/Additives and Colorants for Stadium and Arena Seats Application Bulletin.pdf
UV STABILIZER/COLOR COMBINATIONS
• Combines color and UV stabilization for use
in PP and PA
• Ingredients screened with accelerated
weather testing*
• Excellent weather resistance properties
(against chalking, embrittlement)
• Long-term colorfastness and light stability
UV STABILIZER/FLAME RETARDANT/
COLOR COMBINATIONS
• Combines low halogen flame retardants,
UV stabilizers and color for use in PP and PA
• Ingredients screened with accelerated
weather testing*
• Excellent weather resistance properties
(against chalking, embrittlement)
• Compliant with local fire standards (e.g.:
AFNOR M 2 in France, DIN 4102 B 2 – B 1 in
Germany, UNI 8457 – 9174 C 1 in Italy, BKZ 5.2
in Switzerland, BS 5852.1990 CRIB 3-5 in UK)**
• Standard portfolio available for PP injection
molded applications
APPLICATION BULLETIN
* Laboratory weathering testing may not be determinative of all conditions of use;
the end user must determine suitability of a product for its intended use
** Contact us for more information on regulatory compliance
Copyright © 2022, Avient Corporation.
COLOR RAL REFERENCE COLOR RAL REFERENCE
1015 Brown/12 6026 Green/14
1034 Yellow/14 6032 Green/20
1018 Yellow/19 7004 Grey/21
1003 Yellow/20 8025 Brown/14
3020 Red/15 9022 Pearl Grey/1
5005 Blue/35 9010 White/5
5000 Blue/36
https://www.avient.com/sites/default/files/2020-12/portable-speakers-bulletin-selector-guide-2020.pdf
Versaflex™ TPE
PORTABLE SPEAKER SOLUTIONS
WATER AND DUST
PROTECTION,
DURABLE LOOK
AND FEEL
Versaflex™
CE 3120-40
Versaflex™
CE 3620
Versaflex™
CE 3115
Versaflex™
CE 3120-80
Application Gaskets Skins Skins Skins
Product
Aesthetics
Tacky
Translucent
42A
Silky feel
Natural
65A
Silky feel
Natural
65A
Silky feel
Natural
80A
Special
Characteristics
Low compression set
Low compression set
High flow
Abrasion resistance
High strength
Improved scratch/
mar, UV and abrasion
Overmolding
Polycarbonate
ABS
Copolyester
Polycarbonate
ABS
Copolyester
Polycarbonate
ABS
Copolyester
Polycarbonate
ABS
Copolyester
HOW VERSAFLEX TPEs MAKE THE DIFFERENCE IN PORTABLE SPEAKERS APPLICATIONS
GASKETS
Water and Dust Protection
- Tight housing seals with no leakage over time
Reduced Manufacturing Costs
- Eliminates sourcing and assembly steps required of
O-rings by overmolding directly onto the substrate;
strong adhesion to PC & ABS
- Faster cycle times than silicone or TPU
Design Freedom
- Injection molding TPEs in gaskets enables
complex designs in which simple O-rings would be
challenging to assemble
SPEAKER SKINS
Durable Look and Feel
- Silky feel soft touch
- Long lasting aesthetics with abrasion and UV
resistance
Reduced Manufacturing Costs
- Eliminates sourcing and assembly steps
required of silicone skins by overmolding
directly onto the substrate; strong
adhesion to PC & ABS
- Faster cycle times than silicone or TPU
Design Freedom
- Overmolding TPE removes the need for
mechanical interlocks and primers to get
silicone materials to adhere to substrates
To learn more about Versaflex TPEs
for portable speakers, contact Avient
at +1.844.4AVIENT.
https://www.avient.com/products/engineered-polymer-formulations/conductive-signal-radiation-shielding-formulations/therma-tech-thermally-conductive-formulations
Elevate Lighting
Learn how Therma-Tech material makes the difference in automotive adas sensors, cameras and ECUs
Learn how Therma-Tech material makes the difference in automotive ADAS sensors, cameras and electronic control units
https://www.avient.com/sites/default/files/2024-11/Stan-Tone RBX Product Bulletin.pdf
%
Pigment
Specific
Gravity
Color
Index
Heat
Stability Lightfastness System
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
Code
Pigment
Type
Approx. %
Pigment
Specific
Gravity
Color
Index
Heat
Stability Lightfastness System
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
Code
Pigment
Type
Approx. %
Pigment
Specific
Gravity
Color
Index
Heat
Stability Lightfastness System
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/2021-04/colormatrix-optica-specialty-toners-for-pc-product-bulletin.pdf
ColorMatrix™ Optica™
Specialty Toners for PC
Polycarbonate is used for the production of
automotive interiors and appliances to consumer
goods and electronics, replacing more traditional
materials such as glass and acrylic.
The
need for better PC color solutions has never been
greater.
ColorMatrix™ Optica™ Specialty Toners for PC is the
cutting-edge liquid toner for polycarbonate resins
that provides visual clarity for PC and improves
aesthetics on the product surface.
https://www.avient.com/sites/default/files/2020-09/chemically-compatible-tpes-for-cosmetic-pkg-application-bulletin.pdf
VERSAFLEX PKG
4345, 4355, 4365
VERSAFLEX PKG
4465
VERSAFLEX PKG
4570
VERSAFLEX PKG
4665
Chemical
Compatibility
Soaps, low-cost
solution for
non-polar oils
Soaps, some oils
Polar & non-polar oils,
non-polar solvents
Non-polar oils
(abrasion resistant)
Regulatory
Compliance*
REACH SVHC,
FDA 21 CFR
EU 10/2011
REACH SVHC &
FDA 21 CFR
REACH SVHC &
FDA CFR
REACH SVHC &
FDA CFR
Hardness 45A, 55A, 65A 65A 70A 65A
Overmolded
Substrate
Polypropylene Polypropylene
Polycarbonate
ABS
PC/ABS
Polycarbonate
ABS
PC/ABS
Color Translucent Translucent Natural Natural
* Please contact Avient for additional information
HOW CHEMICALLY COMPATIBLE VERSAFLEX PKG TPEs MAKE THE DIFFERENCE
IN COSMETIC PACKAGING
Chemical compatibility – Versaflex PKG TPEs do
not discolor, etch, crack or delaminate when in
contact with most soaps, lotions, oils, surfactants
and solvents found in cosmetics.
https://www.avient.com/idea/could-polyketone-be-next-generation-nylon-alternative
How is polyketone different?
A noticeable difference here is impact properties, which are improved for nylons since water plasticizes nylon and makes them more impact resistant.
However, it surpasses ABS, COPET and PC alloys.
https://www.avient.com/sites/default/files/2020-09/stan-tone-hcc-product-bulletin-1.pdf
%
Pigment
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. %
Pigment
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/resource-center/services/avient-design/engineering
Building accurate models allows us to compare the performance of different material solutions or designs for your application.
Download White Paper
Elevate Lighting System Design
https://www.avient.com/idea/smart-alternative-yields-savings-efficiency-mars-otomotiv
Replacing metal cuts heat sink costs for LED lighting assemblies
But manufacturing High Brightness LED lighting isn’t simple.
The Mars Otomotiv engineering team needed to eliminate all of these issues by finding a different material for the heat sinks.