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Texin® 288

Thermoplastic Polyurethane Elastomer (Polyester)

Supplied by Bayer MaterialScience LLC

The technical datasheet with complete property values for Texin® 288 is available to members of the Prospector Plastics Database.
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Product Description
Texin 288 is an aromatic polyester-based thermoplastic polyurethane with a hardness of approximately 88A. It can be processed by injection molding. Extrusion processes are also possible for some applications. Texin 288 resin is characterized by excellent low-temperature properties and excellent fuel and oil resistance. It also offers outstanding abrasion resistance, impact strength, toughness and flexibility.

Typical applications include casters, couplings, sleeves, gears, bushings, industrial components and identification tags. As with any product, use of Texin 288 resin in a given application must be tested (including field testing, etc.) in advance by the user to determine suitability.
General  
Material Status 
  • Commercial: Active
Availability 
  • North America
Features 
  • Aromatic
  • Fuel Resistant
  • Good Abrasion Resistance
  • Good Flexibility
  • Good Impact Resistance
  • Good Toughness
  • Low Temperature Resistant
  • Oil Resistant
Uses 
  • Bushings
  • Gears
  • Industrial Applications
RoHS Compliance 
Automotive Specifications 
Processing Method 
  • Extrusion
  • Injection Molding
 
Physical
Nominal Value
Unit
Test Method
Specific Gravity
     
--
 
ASTM D792
--
g/cm³
ISO 1183
Molding Shrinkage
     
Flow: 0.100 in
in/in
ASTM D955
Across Flow: 0.100 in
in/in
ASTM D955
Across Flow: 0.100 in
%
ISO 2577
Flow: 0.100 in
%
ISO 2577
Mechanical
Nominal Value
Unit
Test Method
Flexural Modulus (73°F)
psi
ASTM D790, ISO 178
Taber Abrasion Resistance (1000 Cycles, 1000 g, H-18 Wheel)
mg
ASTM D1044
Elastomers
Nominal Value
Unit
Test Method
Tensile Stress
    ASTM D412, ISO 37
100% Strain
psi
 
300% Strain
psi
 
Tensile Strength (Break)
psi
ASTM D412, ISO 37
Tensile Elongation (Break)
%
ASTM D412, ISO 37
Tear Strength
     
-- 2
lbf/in
ASTM D624
--
lbf/in
ISO 34-1
Compression Set
    ASTM D395B, ISO 815
73°F, 22.0 hr 3
%
 
73°F, 22.0 hr
%
 
158°F, 22.0 hr
%
 
158°F, 22.0 hr 3
%
 
Bayshore Resilience
%
ASTM D2632
Hardness
Nominal Value
Unit
Test Method
Durometer Hardness
    ASTM D2240, ISO 868
Shore A
 
 
Shore D
 
 
Thermal
Nominal Value
Unit
Test Method
Glass Transition Temperature
°F
DMA
Vicat Softening Temperature 4
°F
ISO 306/A50, ASTM D1525 5
Related Terminology
Product names can be difficult to match. You may have searched any one of these terms to find this product: Texin® 288, Texin 288, Texin® , Texin, Texin288, 288, 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, Bayer, ThermoplasticPolyurethaneElastomerPolyester, ThermoplasticPolyurethane
Features
Features may also be described by the following terms: Good Abrasion Resistance, Abrasion Resistant, Good Flexibility, Flexible, Good Impact Resistance, Low Temperature Resistant, Low Temperature Performance, Good Toughness, Tough.
Automotive Specifications
This plastic material has approval for 1 automotive specifications from the following agencies (the number in parentheses shows the number of specifications for that agency): GM (1).
Injection
Nominal Value
Unit
 
Drying Temperature
°F
 
Drying Time
hr
 
Suggested Max Moisture
%
 
Suggested Max Regrind
%
 
Rear Temperature
°F
 
Middle Temperature
°F
 
Front Temperature
°F
 
Nozzle Temperature
°F
 
Processing (Melt) Temp
°F
 
Mold Temperature
°F
 
Injection Pressure
psi
 
Injection Rate
 
 
Back Pressure
psi
 
Screw Speed
rpm
 
Cushion
in
 
Injection Notes
Hold Pressure: 60 to 80% of Injection Pressure
Notes
1Typical properties: these are not to be construed as specifications.
2Die C
3Post-cured for 16 hours at 230°F
40.125 in
5Rate A (50°C/h), Loading 1 (10 N)
 
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.