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IROGRAN® A 60 E 4902

Thermoplastic Polyurethane Elastomer (Polyester)

Supplied by Huntsman Corporation

The technical datasheet with complete property values for IROGRAN® A 60 E 4902 is available to members of the Prospector Plastics Database.
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Product Description
IROGRAN A 60 E 4902 is a soft, high performance polyester based thermoplastic polyurethane intended for extrusion and moulding applications.

IROGRANA 60 E 4902 is part of the HUNTSMAN Film and Sheet and Injection-Moulding product ranges. It is processable at low temperatures and offers a specially designed, flexible material suitable for elastic films & mouldings.

PERFORMANCE FEATURES
  • Excellent elasticity
  • Excellent wear performance
  • Good low temperature flexibility
  • Enhanced Hydrolytic Stability
  • Enhanced UV stability
  • Low temperature processability
General  
Material Status 
  • Commercial: Active
Availability 
  • North America
Features 
  • Good Flexibility
  • Good Processability
  • Good UV Resistance
  • Good Wear Resistance
  • High Elasticity
  • Hydrolytically Stable
  • Low Temperature Flexibility
  • Soft
Uses 
  • Film
  • Sheet
 
Forms 
  • Pellets
Processing Method 
  • Film Extrusion
  • Injection Molding
  • Sheet Extrusion
Physical
Nominal Value
Unit
Test Method
Specific Gravity 2
     
--
 
ASTM D792
--
g/cm³
DIN 53478
Melt Volume-Flow Rate (MVR) (160°C/8.7 kg)
in³/10min
 
Mechanical
Nominal Value
Unit
Test Method
Abrasion 2
     
--
mm³
DIN 53516
--
mm³
ASTM D395
Elastomers
Nominal Value
Unit
Test Method
Tensile Set 3 (200% Strain)
%
ASTM D412, DIN 53504
Tensile Stress 4
     
100% Strain, 0.0250 in
psi
ASTM D412
100% Strain, 0.0250 in
psi
DIN 53504
300% Strain, 0.0250 in
psi
ASTM D412
300% Strain, 0.0250 in
psi
DIN 53504
Tensile Strength 4
     
Break, 0.0250 in
psi
ASTM D412
Break, 0.0250 in
psi
DIN 53504
Tensile Elongation 4
     
Break, 0.0250 in
%
ASTM D412
Break, 0.0250 in
%
DIN 53504
Tear Strength 4
     
0.0250 in
lbf/in
ASTM D624
0.0250 in
lbf/in
DIN 53515
Compression Set 2
     
73°F, 70.0 hr
%
ASTM D395
158°F, 24.0 hr
%
ASTM D395
73°F, 70.0 hr
%
DIN 53517
158°F, 24.0 hr
%
DIN 53517
Bayshore Resilience
%
ASTM D2632
Hardness
Nominal Value
Unit
Test Method
Durometer Hardness
     
Shore A, Injection Molded
 
ASTM D2240
Shore D, Injection Molded
 
ASTM D2240, DIN 53505
Shore A, Injection Molded
 
DIN 53505
Thermal
Nominal Value
Unit
Test Method
Melting Temperature
°F
Internal Method
TMA 4
    Internal Method
High: 25.0 mil
°F
 
Low: 25.0 mil
°F
 
Related Terminology
Product names can be difficult to match. You may have searched any one of these terms to find this product: IROGRAN® A 60 E 4902, IROGRAN A 60 E 4902, IROGRAN® , IROGRAN, IROGRANA60E4902, A 60 E 4902, A60, 60E, E4902, A60E4902, Thermoplastic Polyurethane Elastomer, Thermoplastic Polyurethane Elastomer (Polyester), Thermoplastic Polyurethane Elastomer Polyester, TPU-Polyester, TPUPolyester, TPU:Polyester, TPU/Polyester, TPU+Polyester, TPU_Polyester, TPU Polyester, Thermoplastic Polyurethane, TPU, Huntsman, ThermoplasticPolyurethaneElastomerPolyester, ThermoplasticPolyurethane, 60A
Features
Features may also be described by the following terms: Low Temperature Flexibility, Good Wear Resistance, Wear Resistant, Good UV Resistance, UV Resistant, Ultraviolet Resistant, Ultraviolet Light Resistant, Good Flexibility, Flexible, High Elasticity, Highly Elastic, Good Processability, Easy Processing.
Injection
Nominal Value
Unit
 
Drying Temperature - Hot Air Dryer
°F
 
Drying Time - Hot Air Dryer
hr
 
Dew Point
°F
 
Rear Temperature
°F
 
Middle Temperature
°F
 
Front Temperature
°F
 
Nozzle Temperature
°F
 
Extrusion
Nominal Value
Unit
 
Drying Temperature
°F
 
Drying Time
hr
 
Cylinder Zone 1 Temp.
°F
 
Cylinder Zone 2 Temp.
°F
 
Cylinder Zone 3 Temp.
°F
 
Cylinder Zone 4 Temp.
°F
 
Cylinder Zone 5 Temp.
°F
 
Adapter Temperature
°F
 
Die Temperature
°F
 
Notes
1Typical properties: these are not to be construed as specifications.
2Injection Molded
3Extruded Film, 0.025 in
4Extruded Film
 
IDES
Copyright © 2012 IDES
The information presented on this datasheet was acquired by IDES from the producer of the material. IDES makes substantial efforts to assure the accuracy of this data. However, IDES assumes no responsibility for the data values and strongly encourages that upon final material selection, data points are validated with the material supplier.