Neostar™ FN007

Category: Copolyester Elastomer (Ether) , Copolyester Elastomer (Ether)
Manufacturer: Eastman Chemical Company
Trademark: Neostar™
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: 5Sm8ID_Neostar-FN007.pdf
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Eastman Neostar™ Elastomer FN007 is the third in Eastman's series of tough, clear, durable, general purpose grade copolyester ethers. Though originally designed for use in the profile and automotive markets, this innovative copolymer has also found use in tubing and packaging applications. Its excellent chemical, heat, and puncture resistance combined with its strength and durability make it a good choice for applications that require flex-crack resistance and a general utility in harsh environments. Eastman Neostar™ Elastomer FN007 can be injection molded, extruded in blown film or tubing, or extrusion blow molded. The target inherent viscosity of this product is 1.23.

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.
General Information
Features
  • Durable
  • General Purpose
  • Good Chemical Resistance
  • Good Dimensional Stability
  • Good Flexibility
  • Good Strength
  • Good Toughness
  • Halogen Free
  • High Heat Resistance
  • Puncture Resistant
Uses
  • Automotive Applications
  • Cast Film
  • Film
  • General Purpose
  • Packaging
  • Profiles
  • Tubing
Appearance
  • Clear/Transparent
Forms
  • Pellets
Processing Method
  • Blown Film
  • Extrusion Blow Molding
  • Injection Molding
  • Profile Extrusion
PhysicalNominal ValueUnitTest Method
Specific Gravity 1.13g/cm³ASTM D792
Melt Mass-Flow Rate (MFR) (230°C/2.16 kg)4.0g/10 minASTM D1238
Water Absorption (23°C, 24 hr)0.40%ASTM D570
Inherent Viscosity 1(23°C)1.2Internal Method
ThermalNominal ValueUnitTest Method
Heat of Fusion (23°C)27.0kJ/kgASTM E793
Additional InformationNominal ValueUnitTest Method
Tear Strength (23°C)350NASTM D1004
HardnessNominal ValueUnitTest Method
Durometer Hardness ASTM D2240
    Shore A, 23°C 95
    Shore D, 23°C 55
MechanicalNominal ValueUnitTest Method
Tensile Modulus (23°C)170MPaASTM D638
Tensile Strength ASTM D638
    Yield, 23°C, 3.00 mm, Injection Molded 213.0MPa
    Break, 23°C, 2.00 mm 323.0MPa
Tensile Elongation ASTM D638
    Yield, 23°C 38%
    Break, 23°C 400%
Flexural Modulus (23°C)150MPaASTM D790
Coefficient of Friction 4> 1.0ASTM D1894
FilmsNominal ValueUnitTest Method
Film Thickness - Tested 130µm
Secant Modulus ASTM D882
    Tangent, MD : 130 µm 197MPa
    Tangent, TD : 130 µm 221MPa
Tensile Strength ASTM D882
    TD : Yield, 130 µm 11.2MPa
    MD : Break, 130 µm 41.5MPa
    TD : Break, 130 µm 18.1MPa
Tensile Elongation ASTM D882
    MD : Yield, 130 µm 46%
    TD : Yield, 130 µm 20%
    MD : Break, 130 µm 330%
    TD : Break, 130 µm > 550%
Oxygen Permeability (30°C, 130 µm)940cm³/m²/24 hrASTM D1434
Water Vapor Transmission 5150g/m²/24 hrASTM F372
ElastomersNominal ValueUnitTest Method
Clash-Berg Modulus ASTM D1043
    -70°C 930MPa
    -28°C 240MPa
ImpactNominal ValueUnitTest Method
Notched Izod Impact (-40°C)40J/mASTM D256
ThermalNominal ValueUnitTest Method
Brittleness Temperature < -75.0°CASTM D746
Glass Transition Temperature -3.00°CDSC
Vicat Softening Temperature 170°CASTM D1525 6
Peak Melting Temperature 205°CASTM D3418
Peak Crystallization Temperature (DSC) 140°CDSC
CLTE - Flow (23°C)1.5E-4cm/cm/°CASTM D696
Specific Heat DSC
    25°C 71600J/kg/°C
    100°C 81800J/kg/°C
    150°C 92000J/kg/°C
    175°C 102300J/kg/°C
    200°C 113100J/kg/°C
    225°C 122300J/kg/°C
Thermal Conductivity (23°C)0.19W/m/KASTM C177
OpticalNominal ValueUnitTest Method
Gloss (45°, 130 µm)73ASTM D2457
Refractive Index 1.510ASTM D542
Transmittance ASTM D1003
    Total, 130 µm 94.0%
    Regular, 130 µm 91.0%
Haze (130 µm)1.0%ASTM D1003
Note Message
1 .EMN-A-AC-G-V-1
2 .Type I, 500 mm/min
3 .Type IV, 500 mm/min
4 .0.13 mm
5 .0.13 mm
6 .Loading 1 (10 N)
7 .Solid
8 .Solid
9 .Solid
10 .Solid
11 .Transition, apparent specific heat, including the effects of the heat of fusion.
12 .Melt
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