Category: | Copolyester , Copolyester |
Manufacturer: | Eastman Chemical Company |
Trademark: | Cadence™ |
Fillers: | - |
Ports: | Qinzhou, Shekou, Shanghai, Ningbo |
Delivery Terms | FOB, CIF, DAP, DAT, DDP |
PDF: | PEe5hQ_Cadence-GS1.pdf ![]() |
PRICE: | Order Products email sales@su-jiao.com |
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Eastman Cadence™ GS1 is Eastman's original copolyester for film calendering. Calendered films made of Eastman Cadence™ copolyesters are non-crystallizing, are halogen-free, offer wide calendering and thermoforming windows and have good low-temperature toughness. They are cooperative in secondary operations such as solvent-bonding, lamination, decoration, cold-forming, punching/cutting and embossment. Eastman Cadence™ resins require no pre-drying or additional stabilizers. This product has been GREENGUARD INDOOR AIR QUALITY CERTIFIED®. The GREENGUARD INDOOR AIR QUALITY CERTIFIED® Mark is a registered certification mark used under license through the GREENGUARD Environmental Institute (GEI). GEI is an industry-independent, non-profit organization that oversees the GREENGUARD Certification Program. The GREENGUARD Certification Program is an industry independent, third-party testing program for low-emitting products and materials for indoor environments. For more information about GEI and to obtain printable certificates for Eastman™ Copolyesters, visit www.greenguard.org. Choose Eastman Chemical Company under the Manufacturer category and click search to display a list of our products. This product has been CRADLE TO CRADLE CERTIFIED Silver. The CRADLE TO CRADLE CERTIFIED Mark is a registered certification mark used under license through McDonough Braungart Design Chemistry (MBDC). MBDC is a global sustainability consulting and product certification firm. The CRADLE TO CRADLE® framework moves beyond the traditional goal of reducing the negative impacts of commerce ('eco-efficiency'), to a new paradigm of increasing its positive impacts ('eco-effectiveness'). At its core, Cradle to Cradle design perceives the safe and productive processes of nature's 'biological metabolism' as a model for developing a 'technical metabolism' flow of industrial materials. Product components can be designed for continuous recovery and reutilization as biological and technical nutrients within these metabolisms. For more information about MBDC and to obtain printable certificates for Eastman Copolyesters, visit www.mbdc.com. Choose Eastman Chemical Company under Company Name in C2C Certified products to display a list of our products. |
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Physical | Nominal Value | Unit | Test Method |
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Density | ASTM D1505 | ||
-- 1 | 1.27 | g/cm³ | |
-- | 1.28 | g/cm³ | |
Water Absorption (23°C, 24 hr) | 0.16 | % | ASTM D570 |
Inherent Viscosity 2 | Internal Method | ||
23°C | 0.71 | ||
Pellets : 23°C | 0.75 |
Films | Nominal Value | Unit | Test Method |
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Film Thickness - Tested | 170 | µm | |
Secant Modulus | ASTM D882 | ||
MD : 170 µm | 1600 | MPa | |
TD : 170 µm | 1600 | MPa | |
Tensile Strength | ASTM D882 | ||
MD : Yield, 170 µm | 49.0 | MPa | |
TD : Yield, 170 µm | 49.0 | MPa | |
MD : Break, 170 µm | 63.0 | MPa | |
TD : Break, 170 µm | 46.0 | MPa | |
Tensile Elongation | ASTM D882 | ||
MD : Yield, 170 µm | 5.0 | % | |
TD : Yield, 170 µm | 5.0 | % | |
MD : Break, 170 µm | 420 | % | |
TD : Break, 170 µm | 300 | % | |
Elmendorf Tear Strength | ASTM D1922 | ||
MD : 170 µm | 730 | g | |
TD : 170 µm | 900 | g | |
Oxygen Permeability (23°C, 170 µm, 50% RH) | 7.0 | cm³·mm/m²/atm/24 hr | ASTM D3985 |
Water Vapor Transmission Rate (38°C, 100% RH, 170 µm) | 7.0 | g/m²/24 hr | ASTM F372 |
Impact | Nominal Value | Unit | Test Method |
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Instrumented Dart Impact | ASTM D3763 | ||
-20°C, Energy at Peak Load | 0.700 | J | |
0°C, Energy at Peak Load | 1.20 | J | |
23°C, Energy at Peak Load | 1.60 | J |
Thermal | Nominal Value | Unit | Test Method |
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Deflection Temperature Under Load | ASTM D648 | ||
0.45 MPa, Unannealed | 70.0 | °C | |
1.8 MPa, Unannealed | 62.0 | °C | |
Glass Transition Temperature | 81.0 | °C | DSC |
Vicat Softening Temperature | 81.0 | °C | ASTM D1525 |
CLTE - Flow (23°C) | 7.7E-5 | cm/cm/°C | ASTM D696 |
Specific Heat | DSC | ||
23°C | 1300 | J/kg/°C | |
100°C | 1700 | J/kg/°C | |
150°C | 1800 | J/kg/°C | |
200°C | 2000 | J/kg/°C | |
250°C | 2100 | J/kg/°C |
Electrical | Nominal Value | Unit | Test Method |
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Surface Resistivity | 1.2E+16 | ohms | ASTM D257 |
Volume Resistivity (23°C) | 3.9E+16 | ohms·cm | ASTM D257 |
Dielectric Strength 3(23°C) | 15 | kV/mm | ASTM D149 |
Dielectric Constant | ASTM D150 | ||
23°C, 1 kHz | 2.88 | ||
23°C, 1 MHz | 2.68 | ||
Dissipation Factor | ASTM D150 | ||
23°C, 1 kHz | 0.022 | ||
23°C, 1 MHz | 0.021 | ||
Arc Resistance | 131 | sec | ASTM D495 |
Flammability | Nominal Value | Unit | Test Method |
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Oxygen Index | 24 | % | ASTM D2863 |
Optical | Nominal Value | Unit | Test Method |
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Gloss (60°, 170 µm) | 107 | ASTM D2457 | |
Transmittance (Total, 170 µm) | 90.0 | % | ASTM D1003 |
Haze (170 µm) | 2.7 | % | ASTM D1003 |
Note Message | |
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1 . | Film, 170 µm |
2 . | EMN-A-AC-G-V-1 |
3 . | 500 V/sec, Method A (Short-Time) |
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