https://www.avient.com/products/polymer-colorants/colorant-dispersions/stan-tone-rbx-rubber-dispersions
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Stan-Tone™ RBX Rubber Dispersions
Stan-Tone™ EPX Epoxy Dispersions
Stan-Tone™ EPX Epoxy Dispersions are used in a variety of thermoset epoxy systems such as protective coatings, adhesives, epoxy flooring, electrical potting, laminates and decorative jewelry.
https://www.avient.com/products/polymer-colorants/colorant-dispersions/stan-tone-wdn-water-based-dispersions
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Products //
Polymer Colorants //
Colorant Dispersions //
Stan-Tone™ WDN Water-Based Dispersions
Stan-Tone™ EPX Epoxy Dispersions
Stan-Tone™ EPX Epoxy Dispersions are used in a variety of thermoset epoxy systems such as protective coatings, adhesives, epoxy flooring, electrical potting, laminates and decorative jewelry.
https://www.avient.com/resource-center/knowledge-base/article/choosing-right-composite?rtype%5B0%5D=1164
Thermoplastic Polymer Matrix
A thermoset is a cross-linked polymer that cannot be reshaped after it’s formed, cured, and cooled.
Common thermoset formulations include polyester, vinyl ester, epoxy and polyurethane (PU).
https://www.avient.com/resource-center/knowledge-base/article/choosing-right-composite
Thermoplastic Polymer Matrix
A thermoset is a cross-linked polymer that cannot be reshaped after it’s formed, cured, and cooled.
Common thermoset formulations include polyester, vinyl ester, epoxy and polyurethane (PU).
https://www.avient.com/sites/default/files/2020-08/thermoset-composites-tri-fold-product-selection-guide.pdf
PRODUCT MATERIAL DESCRIPTION COLOR MAX THICKNESS IN (MM) MAX WIDTH IN (CM) FLEXURAL MODULUS Msi (GPa) FLEXURAL STRENGTH ksi (MPa) GLASS % GC-70-UL Glass/Epoxy Any 0.1 (2.5) 17.75 (45) 5.8 (39.99) 210 (1448) 70 GC-66-ULW Glass/Epoxy, 90° Weft Any 0.1 (2.5) 17.75 (45) 4.5 (31.03) 130 (896) 66 GC-70-ULS Glass/Epoxy, 1080 Woven Scrim Any 0.1 (2.5) 17.75 (45) 5.8 (39.99) 210 (1448) 70 GC-70-ULZ Glass/Epoxy Natural 0.04 (1.0) 8.75 (22.2) 6.8 (46.89) 245 (1689) 70 GC-70-ULC Carbon/Epoxy Black 0.04 (1.0) 8.0 (20.3) 19.9 (137.21) 300 (2069) 70 http://www.polyone.com/content/product-selection-help-form BARSTOCK All barstock composites are machined to size with a surface finish prepared to fit customer requirements.
STANDARD BARSTOCK PRODUCTS PRODUCT MATERIAL DESCRIPTION COLOR MAX THICKNESS IN (MM) MAX WIDTH IN (CM) FLEXURAL MODULUS Msi (GPa) FLEXURAL STRENGTH ksi (MPa) GLASS % GC-67-UB Glass/Epoxy Black 0.575 (14.6) 11.75 (29.8) 5.8 (39.99) 153 (1055) 67 GC-67-UBZ Glass/Epoxy Black 0.5 (12.7) 8.75 (22.2) 5.8 (39.99) 153 (1055) 67 GC-60-UBC Carbon/Epoxy Black 0.25 (6.35) 4.0 (10.2) 12.5 (86.19) 150 (1034) 60 GC-67-UBW Glass/Epoxy, 90° Weft Blue 0.25 (6.35) 8.75 (22.2) 4.8 (33.10) 150 (1034) 67 http://www.polyone.com/content/product-selection-help-form PULTRUDED PROFILES - TYPICAL PROPERTIES The Glasforms™ pultrusion process creates continuous, constant cross-sectional profiles with consistent, uniform quality and exceptional mechanical performance.
These continuous fiber-reinforced polymer composites are ideal in applications where high stiffness and light weight performance are critical.
https://www.avient.com/news/polyone-invests-its-gsdi-specialty-dispersions-assets-and-technology
PolyOne’s specialty dispersions business operates within its Color, Additive and Inks segment and provides colorant solutions specifically formulated to the exacting specifications for carrier systems such as silicone, rubber, vinyl, epoxy, urethane, and plasticizers.
For more information on PolyOne’s value-added offerings in specialty dispersions and broad portfolio of polymer solutions and design services, visit www.polyone.com.
PolyOne Corporation, with 2015 revenues of $3.4 billion, is a premier provider of specialized polymer materials, services and solutions.
https://www.avient.com/sites/default/files/2023-12/Polystrand Thermoplastic Composite Panel Application _ Install Guide.pdf
USES & APPLICATIONS FOAM CORE PANELS Core Density 5 lb/ft3 8 lb/ft3 80 kg/m3 130 kg/m3 Panel Thickness 0.5 inch 0.75 inch 1.0 inch 0.5 inch 0.75 inch 1.0 inch 13mm 19mm 25mm 13mm 19mm 25mm Facesheet Configuration 5848 Quad-Ply 5848 Quad-Ply Property Test Method Unit Areal Weight Calculated lb/ft2 kg/m2 0.83 4.05 0.93 4.54 1.04 5.08 0.96 4.69 1.13 5.52 1.31 6.40 Flexural Strength ASTM D7249 psi MPa 104 0.72 112 0.77 102 0.70 168 1.16 171 1.18 172 1.19 Flexural Modulus ASTM D7249 psi MPa 834,000 5,750 605,000 4,171 375,000 2,586 889,000 6,129 672,000 4,633 481,000 3,316 Flexural Rigidity ASTM D7249 lb*in2 kN*mm2 33,000 95,000 64,000 183,000 100,000 286,000 42,000 120,000 71,000 203,000 126,000 361,000 TRUCK & RV • Ceilings • Cabinetry • Load floors • Sidewalls • Aerodynamic components BUILDING & CONSTRUCTION • Modular panels for temporary structures • Garage & industrial doors • Walls & flooring RAIL • Doors • Flooring • Interior panels MARINE • Stringers • Bulkheads • Ceilings & decking • Doors & cabinetry HONEYCOMB CORE PANELS Core Density 5 lb/ft3 80 kg/m3 Panel Thickness 0.5 inch 1.0 inch 13mm 25mm Facesheet Configuration 6536 X-Ply 6536 Tri-Ply 6536 X-Ply 6536 Tri-Ply Property Test Method Unit Areal Weight Calculated lb/ft2 kg/m2 0.49 2.39 0.63 3.08 0.63 3.08 0.8 3.91 Flexural Strength ASTM D7249 psi MPa 33 0.23 82 0.57 46 0.32 97 0.67 Flexural Modulus ASTM D7249 psi MPa 418,000 2,882 693,000 4,778 265,000 1,827 368,000 2,537 Flexural Rigidity ASTM D7249 lb*in2 kN*mm2 15,000 43,000 27,000 77,000 41,000 117,000 75,000 215,000 SUPPORT SPAN DEFLECTION Meets performance required for marine applications Predictive deflection in various load cases.
TAB TESTING OF VARIOUS INSTALLATION METHODS Hammerhead™ PETG Laminate Hammerhead™ PETG Laminate BOTTOM PANEL LEG LENGTH BREAK STRENGTH PETG Skins with Plywood Core 1 in/25 mm 1.5 in/38 mm 2 in/51 mm 2400 lbs/1089 kg 2820 lbs/1279 kg 2748 lbs/1246 kg Hammerhead with 5 lb/ft3 (80 kg/m3) Core Density 2 in 51 mm 665 lbs 302 kg Hammerhead with 7 lb/ft3 (115 kg/m3) Core Density 2 in 51 mm 881 lbs 400 kg Hammerhead with 8 lb/ft3 (135 kg/m3) Core Density 2 in 51 mm 1084 lbs 492 kg Marine Plywood 2 in 51 mm 770 lbs 349 kg Glass/Epoxy with Plywood Core 2 in 51 mm 1055 lbs 479 kg Glass/Polyester with Balsa Core 2 in 51 mm 919 lbs 417 kg L-Bracket Installation Hammerhead™ PETG Laminate Hammerhead™ PETG Laminate BOTTOM PANEL LEG LENGTH BREAK STRENGTH PETG Skins with Plywood Core 2 in 51 mm 2375 lbs 1077 kg Marine Plywood 2 in 51 mm 770 lbs 349 kg Glass/Polyester with Balsa Core 2 in 51 mm 797 lbs 362 kg U-Channel Installation ITW Plexus MA420 adhesive was used in all tab testing installations except where noted.
GL AS S/ EP OX Y TA B M AT ER IA L N O T AB BOTTOM PANEL LEG LENGTH BREAK STRENGTH Hammerhead with 5 lb/ft3 (80 kg/m3) Core Density 2 in 51 mm 420 lbs 191 kg Hammerhead with 7 lb/ft3 (115 kg/m3) Core Density 2 in 51 mm 370 lbs 168 kg Hammerhead with 8 lb/ft3 (135 kg/m3) Core Density 2 in 51 mm 332 lbs 151 kg Marine Plywood 2 in 51 mm 984 lbs 446 kg Glass/Polyester with Balsa Core 2 in 51 mm 1298 lbs 589 kg Hammerhead with 5 lb/ft3 (80 kg/m3) Core Density - ITW Plexus MA420 Adhesive NA 501 lbs 227 kg Hammerhead with 7 lb/ft3 (115 kg/m3) Core Density - ITW Plexus MA420 Adhesive NA 839 lbs 381 kg Hammerhead with 8 lb/ft3 (135 kg/m3) Core Density - ITW Plexus MA420 Adhesive NA 1156 lbs 524 kg Hammerhead with 8 lb/ft3 (135 kg/m3) Core Density - Crestomer 1152PA Adhesive NA 1530 lbs 694 kg Hammerhead with 8 lb/in3 (135 kg/m3) Core Density - Crestomer M1-30 Adhesive NA 1471 lbs 667 kg Mixed Conditions ADHESIVE DESCRIPTION ADHESIVE GRADE MANUFACTURER AVERAGE BOND STRENGTH STANDARD DEVIATION FAILURE MODE BEST ADHESION 2k Urethane 75421 LORD 2281 psi 15.73 MPa 184 psi 1.27 MPa Substrate Cohesive 2k Acrylic SA1-705 GRY1 ACRALOCK 2211 psi 15.24 MPa 78 psi 0.54 MPa Substrate 2k Acrylic Plexus MA420 ITW 2171 psi 14.97 MPa 262 psi 1.81 MPa Substrate 2k Acrylic SA10-05 Blk1 ACRALOCK 2102 psi 14.49 MPa 138 psi 0.95 MPa Substrate 2k Urethane 75451 LORD 2047 psi 14.11 MPa 68 psi 0.47 MPa Cohesive 2k Acrylic SA1-705 GRY 1:1 ACRALOCK 1966 psi 13.56 MPa 68 psi 0.47 MPa Substrate 2k Acrylic Scotch-Weld 8010 3M 1907 psi 13.15 MPa 61 psi 0.42 MPa Adhesive Cyanoacrylate Gorilla Glue Gorilla Glue 1885 psi 13.00 MPa 432 psi 2.98 MPa Cohesive 2k Acrylic Crestabond PP-04 Scott Bader 1873 psi 12.91 MPa 281 psi 1.94 MPa Substrate 2k Acrylic SA10-05 Blk 10:1 ACRALOCK 1779 psi 12.27 MPa 127 psi 0.88 MPa Cohesive 2k Urethane 75422 LORD 1716 psi 11.83 MPa 190 psi 1.31 MPa Cohesive Adhesive 2k Urethane 75452 LORD 1535 psi 10.58 MPa 98 psi 0.68 MPa Adhesive 2k Methacrylate PolyFuse Icon Containment 1610 psi 11.10 MPa 98 psi 0.68 MPa Adhesive INTERMEDIATE ADHESION 2k Acrylic FA10-05 Blk C010817 ACRALOCK 724 psi 4.99 MPa 58 psi 0.40 MPa Cohesive 2k Acrylic FA10-05 Blk1 ACRALOCK 722 psi 4.98 MPa 44 psi 0.30 MPa Cohesive 2k Epoxy Loctite Epoxy Instant Mix Loctite 508 psi 3.50 MPa 81 psi 0.56 MPa Adhesive 2k Epoxy Gorilla Epoxy Gorilla Glue 341 psi 2.35 MPa 198 psi 1.37 MPa Adhesive NOT RECOMMENDED 2k Epoxy Loctite Epoxy Marine Loctite 0 0 No bond ADHESIVE SELECTION Brand names of the adhesives are owned by the respective manufacturers.
https://www.avient.com/resource-center/knowledge-base/article/avoid-these-three-mistakes-get-most-color
Coloring polymers in any process gives a degree of freedom and flexibility that’s not possible with pre-colored polymers.
Sticking to the tried-and-true colors and avoiding special effects or patterns
Learn more about your polymer coloring options by contacting an expert at Avient today!
https://www.avient.com/resource-center/knowledge-base/article/avoid-these-three-mistakes-get-most-color?rtype%5B0%5D=1164
Coloring polymers in any process gives a degree of freedom and flexibility that’s not possible with pre-colored polymers.
Sticking to the tried-and-true colors and avoiding special effects or patterns
Learn more about your polymer coloring options by contacting an expert at Avient today!
https://www.avient.com/sites/default/files/2021-12/Chemically Resistant Materials Whitepaper.pdf
Solubility parameters of the polymer and stress cracking agent 3.
The Trilliant HC8900 and Edgetek ET8900 series are polymer blends based on linear aliphatic PK.
Polymer Engineering & Science 2012, 53 (3), 453–467. 5.