https://www.avient.com/sites/default/files/2020-08/stan-tone-epx-product-bulletin.pdf
% Pigment Specific Gravity Color Index Lightfastness
WHITE
10EPX03 Titanium Dioxide, Rutile 57 1.95 PW-6 I/O
YELLOW
12EPX01 Diarylide AAOT GS 25 1.22 PY-14 I
12EPX03 Diarylide HR RS 20 1.2 PY-83 I/O (Mass)
13EPX02 Isoindolinone RS 30 1.3 PY-110 I/O
13EPX03 Benzimidazolone GS 40 1.27 PY-151 I/O (Mass)
81EPX01 Iron Oxide 40 1.62 PY-42 I/O
ORANGE
15EPX03 Benzimidazolone 30 1.26 PO-36 I/O
RED
23EPX04 Quinacridone BS 25 1.21 PV-19 I/O
23EPX06 Specialty Naphthol BS 30 1.21 PR-170 I/O (Mass) C
25EPX01 Red 2B, Ca Salt Bs 24 1.27 PR-48:2 I/O (Mass)
28EPX01 Red 2B, Ba Salt YS 23 1.29 PR-48:1 I/O (Mass)
82EPX01 Iron Oxide, Light BS 40 1.67 PR-101 I/O
82EPX02 Iron Oxide, Dark BVS 40 1.68 PR-101 I/O
82EPX04 Iron Oxide, Light VYS 40 1.67 PR-101 I/O
BLUE
40EXP03 Phthalocyanine GS 25 1.25 PB-15:3 I/O
40EXP05 Phthalocyanine RS 25 1.25 PB-15:3 I/O
42EXP02 Ultramarine 50 1.54 PB-29 I/O
49EXP01 Cobalt 50 1.83 PB-28 I/O
GREEN
50EPX02 Phthalocyanine BS 18 1.34 PG-7 I/O
50EPX03 Phthalocyanine YS 25 1.42 PG-7 I/O
59EPX01 Chromium Oxide 40 1.64 PG-17 I/O
VIOLET/MAGENTA
24EPX03 Quinacridone Violet 15 1.2 PV-19 I/O
24EPX04 Ultramarine Violet 50 1.66 PV-15 I/O
24EPX05 Quinacridone Magenta 20 1.21 PR-122 I/O
24EPX06 Benzimidazolone 20 1.2 PV-32 I/O
24EPX07 Carbazole Violet 15 1.2 PV-23 I/O
BROWN/TAN
83EPX01 Iron Oxide, Light 39 1.64 PBr-6 I/O
83EPX02 Iron Oxide, Dark 40 1.66 PBr-6 I/O
BLACK
90EPX01 Furnace - High Jet 14 1.23 PBk-7 I/O
90EPX04 Furnace - Medium 20 1.25 PBk-7 I/O
90EPX05 Iron Oxide 50 1.77 PBk-11 I/O
EPX
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/2021-02/versaflex-non-blooming-solution-technical-bulletin.pdf
TECHNICAL BULLETIN
1.844.4AVIENT
www.avient.com
PROPERTY TEST METHOD UNITS VERSAFLEX
™
CE 3130-80N
VERSAFLEX™
CE 3130-70N
Shore Hardness ASTM D2240 Shore A 79 69
Specific Gravity ASTM D792 g/cm3 1.08 1.04
Tensile Strength ASTM D412 psi 2,484 2,222
Melting Flow Index (190°C, 21.6kg) ASTM D1238 g/10min 5.2 4.4
Elongation ASTM D412 % 864 667
Flexural Modulus @ 300% ASTM D790 psi 975 855
Viscosity @ 11,170 sec, 200°C ASTM D3835 Pa.s 30.6 22.2
Abrasion (Mass Lost) ASTM D3389 mg 1.1 2.6
UV Resistance 0.68W/m
2
45°C 168hours — Good Good
Stain Resistance *Condition 1*Condition 2 — Excellent Excellent
Blooming 85% RH30°C,168 hours — Non Non
Processing (Demold) — — Excellent Good
Cycle Time — — Short Middle
Overmold Substrate — — PC/ABS PC/ABS
KEY PROPERTIES AND OVERMOLD PERFORMANCE
Copyright © 2021, Avient Corporation.
https://www.avient.com/sites/default/files/2020-05/polyone-investor-presentation-may-2020_0.pdf
Microsoft PowerPoint - PolyOne Investor Presentation 5.4.20_v8
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P E O P L E
P R O D U C T S P L A N E T
P E R F O R M A N C E
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JVs Performance Products & Solutions Distribution Specialty
To be the world’s
premier provider of
specialized polymer
materials, services and
solutions
To be the world’s
premier provider of
specialized polymer
materials, services
and sustainable
solutions
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2016 2017 2018 2019
Lightweighting Reduced Material Requirements Improved Recyclability
Renewable Energy Applications Eco-conscious Bio-derived Content
Reduced Energy Use VOC Reduction
$275M
$325M
$355M
$410M 14% Total Annual Growth
9% Organic Annual Growth
PolyOne Corporation 33
Senior management uses comparisons of adjusted net income from continuing operations attributable to PolyOne shareholders and diluted adjusted earnings per share (EPS) from continuing
operations attributable to PolyOne shareholders, excluding special items, to assess performance and facilitate comparability of results.
https://www.avient.com/sites/default/files/2021-03/in-house-plastisol-program-bulletin.pdf
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https://www.avient.com/sites/default/files/resources/Application%2520Bulletin%2520Resilience%2520HC.pdf
www.polyone.com
Copyright © 2016, PolyOne Corporation.
https://www.avient.com/sites/default/files/2021-03/packaging-solutions-for-film-sheet-product-selection-guide.pdf
PACKAGING
SOLUTIONS
Film & Sheet
SELECTION GUIDE
PRODUCT NAME PROPERTIES & APPLICATIONS
Anti-block
BOPET application (PV back sheet, packaging film, industry film)
Sleeve application (PETG)
Anti-static Migrating anti-static system
Flame retardant Halogen free flame retardant system, transparent, UL94 VTM-0
Light stabilizer
Protection for outdoor application (UV 380nm)
Protection for screen application (UV 400nm)
Matting agent Matting agent
Pinning agent Increased conductivity
O
2
scavenger Content protection against oxygen
White masterbatch
Blue shade white
Standard white
Black masterbatch
Carbon black
Cool black system
BOPET STANDARD PRODUCT PORTFOLIO
PRODUCT NAME PROPERTIES & APPLICATIONS
Anti-block
Standard anti-block
Printable A/B/A PET sheet and film
High-transparent and low COF
Anti-static
A/B/A film or sheet (transparency)
A/B/A film or sheet (matte)
Impact modifier Improve sheet elongation at low temperature
Chain extender IV improver, EU food and FDA approved
White masterbatch Standard white
Matting agent Surface matting agent
APET SHEET PRODUCT PORTFOLIO
PRODUCT NAME PROPERTIES & APPLICATIONS
Slip agent Mainly used for multilayer PE/PP film and composite film
Anti-block
Pure anti-block can be used in transparent film
Contain both anti-block and slip agent for polyolefin film
Processing masterbatch Used in blowing and tape casting of PE/PP (liquid)
Anti-oxidant
Protection of film from degrading while processing
Increase reclaimed ingredients in the formula
Light stabilizer
Protection of content
Low precipitation, which is especially suitable for thinner
PE products, such as film and spinning
Anti-fog
Good resistance to cold and hot fog,
and suitable for thinner film
Anti-static Applicable to multilayer PE/PP film and composite film
PO SHEET PRODUCT PORTFOLIO
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https://www.avient.com/sites/default/files/2023-07/2023 OHP Off Road Application Bulletin.pdf
Let’s not keep them waiting.
1.844.4AVIENT
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Copyright © 2023, Avient Corporation.
https://www.avient.com/sites/default/files/2025-01/Glasforms Dowel Bar Application Overview.pdf
Tests are performed on pultruded coupons made to reflect the same fiberglass content and resin system as the production part.
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https://www.avient.com/sites/default/files/2021-01/eccoh-cpr-product-bulletin.pdf
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Copyright © 2020, Avient Corporation.
https://www.avient.com/sites/default/files/2022-06/Maxxam FR Injection Molding Processing Guide.pdf
Vents should be placed at the intersection of each 90° bend in the runner
system off of the cold slug well and vented to atmosphere
PROBLEM CAUSE SOLUTION
Black Specks
Contamination
• Purge barrel with general purpose PP
• Verify correct nozzle is being used
• Pull screw for cleaning
Degraded/overheated
material
• Decrease melt temperature
• Decrease back pressure
• Decrease injection speed
• Use appropriately sized barrel
Brittleness
Degraded/overheated material
• Decrease melt temperature
• Decrease back pressure
• Decrease injection speed
• Use appropriately sized barrel
Gate location and/or size
• Relocate gate to nonstress area
• Increase gate size to allow higher flow rate and
lower molded-in stress
Burning
Process related
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Decrease injection rate
Mold design
• Clean, widen and increase number of vents
• Increase gate size to reduce shear
Fibers/Minerals on
Surface or Uneven
Surface Appearance
Melt temperature too low
• Increase melt temperature
• Increase mold temperature
• Increase injection speed
Insufficient packing
• Increase hold pressure and time
• Increase shot size
Flash
Injection pressure
too high
• Decrease injection pressure
• Increase clamp pressure
• Decrease injection rate
• Increase transfer position
Excess material volume
• Adjust transfer position
• Decrease pack pressure
• Decrease shot size
• Decrease injection rate
Melt and/or mold too hot
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Decrease screw speed
Loose clamp
• Reset mold height
• Increase clamp tonnage
Troubleshooting Recommendations
PROBLEM CAUSE SOLUTION
Incomplete Fill
Melt and/or mold too cold
• Increase nozzle and barrel temperatures
• Increase mold temperature
• Increase injection rate
Mold design
• Enlarge or widen vents and increase number
of vents
• Check that vents are unplugged
• Check that gates are unplugged
• Enlarge gates and/or runners
• Perform short shots to determine fill pattern
and verify proper vent location
• Increase wall thickness to move gas trap to
parting line
Shot size
• Adjust transfer position to 98% full
• Increase shot size
Nozzle Drool Nozzle temperature too hot
• Decrease nozzle temperature
• Decrease back pressure
• Increase screw decompression
Shrink
Too much shrink
• Increase cooling time
• Decrease mold temperature
Too little shrink
• Decrease cooling time
• Increase mold temperature
Sink Marks
Part geometry too thick
• Reduce wall thickness
• Reduce rib thickness
Melt too hot
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
Insufficient material
volume
• Adjust transfer position
• Increase shot size
• Increase injection rate
• Increase packing pressure
Troubleshooting Recommendations (continued)
PROBLEM CAUSE SOLUTION
Sticking in Mold
Overfilled cavity
• Decrease injection rate and pressure
• Decrease hold pressure
• Adjust transfer position
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Decrease cooling time
Mold design
• Increase draft angle
• Polish cores in direction of ejection
Part is too hot
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Increase cooling time
Warp
Process related
• Increase cooling time
• Increase melt temperature
• Increase pack pressure
• Increase pack time
• Decrease mold temperature
Mold design • Inspect for non-uniform mold cooling
Part design • Inspect for non-uniform wall thickness
Temperature control unit
incorrect temperature
• Check settings
• Inspect thermocouple
Weld Lines
Melt front temperatures
are too low
• Increase pack and hold pressure
• Increase melt temperature
• Increase injection rate
• Increase mold temperature
Mold design
• Increase gate size
• Perform short shots to determine fill pattern
and verify proper vent location
• Add vents and/or false ejector pin
• Move gate location
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