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Bayflex® XGT-50 BLACK

Polyurethane (Polyether, MDI)

Supplied by Bayer MaterialScience LLC

The technical datasheet with complete property values for Bayflex® XGT-50 BLACK is available to members of the Prospector Plastics Database.
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Product Description
Bayflex XGT-50 Black is a black-pigmented elastomeric polyurethane system used in the reaction injection molding (RIM) process. The formulated system is supplied as two liquid components: Component A is a diphenylmethane diisocyanate (MDI) prepolymer ,and Component B is a polyether polyol system. Note: The polyol component phase separates upon standing and must be thoroughly mixed via mechanical means prior to use.

Bayflex XGT-50 Black system has a flexural modulus of 50,000 psi* at room temperature. It is used in applications requiring excellent impact properties, such as bumpers for buses and other vehicles. As with any product, use of Bayflex XGT-50 Black system in a given application must be tested (including but not limited to field testing) in advance by the user to determine suitability.
General  
Material Status 
  • Commercial: Active
Availability 
  • North America
Features 
  • Good Impact Resistance
Uses 
  • Automotive Bumper
Appearance 
  • Black
Forms 
  • Liquid
Processing Method 
  • Reaction Injection Molding (RIM)
Physical
Nominal Value
Unit
Test Method
Specific Gravity
 
ASTM D792, ASTM D1622
Molding Shrinkage - Flow (0.125 in)
in/in
Internal Method
Mechanical
Nominal Value
Unit
Test Method
Flexural Modulus
    ASTM D790
-22°F, 0.125 in
psi
 
73°F, 0.125 in
psi
 
149°F, 0.125 in
psi
 
Taber Abrasion Resistance (1000 Cycles, 1.0E+6 g, H-18 Wheel)
mg
ASTM D1044
Elastomers
Nominal Value
Unit
Test Method
Tensile Strength (Break, 0.125 in)
psi
ASTM D412
Tensile Elongation (Break, 0.125 in)
%
ASTM D412
Tear Strength 2 (0.125 in)
lbf/in
ASTM D624
Impact
Nominal Value
Unit
Test Method
Notched Izod Impact (0.125 in)
ft·lb/in
ASTM D256
Hardness
Nominal Value
Unit
Test Method
Durometer Hardness (Shore D, 0.125 in)
 
ASTM D2240
Thermal
Nominal Value
Unit
Test Method
CLTE - Flow (0.125 in)
in/in/°F
ASTM D696
Flammability
Nominal Value
Unit
Test Method
Flammability (0.13 in)
 
FMVSS 302
Thermoset
Nominal Value
Unit
Test Method
Thermoset Components 3
     
Part A
 
 
Part B
 
 
Shelf Life (86°F)
wk
 
Additional Information
Nominal Value
Unit
Test Method
Heat Sag - 4 in Overhang 4 (250°F, 0.13 in)
in
ASTM D3769
Part A
  • Type: Isocyanate
  • Appearance: Water white to clear pale yellow liquid
  • Specific Gravity @ 25°C: 1.21
  • Viscosity @25°C: 700 mPa-s
  • Flash Point PMCC: 213 °C
  • NCO: 22.9 %

Part B
  • Type: Polyol
  • Appearance: Black liquid
  • Specific Gravity @ 25°C: 1.05
  • Viscosity @25°C: 600 mPa-s
  • Flash Point PMCC: 119 °C
  • Water: 0.09 wt%
  • Hydroxyl Number: 316 mg KOH/g

Molding Parameters
  • Material Temperature: 32 to 38 °C
  • Mold Temperature: 60 to 70 °C
  • Typical Cure Time, 0.125 in: 120 to 180 sec
  • Polyol Nucleation - Specific Gravity: 0.75 to 0.80 0
  • shot time: 11 to 12 sec
Related Terminology
Product names can be difficult to match. You may have searched any one of these terms to find this product: Bayflex® XGT-50 BLACK, Bayflex XGT50 BLACK, Bayflex® , Bayflex, BayflexXGT50BLACK, XGT, XGT-50 BLACK, XGT50 BLACK, XGT:50 BLACK, XGT/50 BLACK, XGT+50 BLACK, XGT_50 BLACK, XGT 50 BLACK, XGT50, 50BLACK, XGT50BLACK, Polyurethane, XGT_50BLACK, Polyurethane (Polyether, MDI), Polyurethane Polyether MDI, PUR-Ether/MDI, PUREtherMDI, PUR-Ether:MDI, PUR-Ether+MDI, PUR-Ether-MDI, PUR-Ether_MDI, PUR-Ether MDI, PUR:Ether/MDI, PUR/Ether/MDI, PUR+Ether/MDI, PUR_Ether/MDI, PUR Ether/MDI, PUR, Bayer, PolyurethanePolyetherMDI, PUREther_MDI, PUREther MDI, PUR_EtherMDI, PUR EtherMDI, 50XGT
Features
Features may also be described by the following terms: Good Impact Resistance.
Uses
Uses may also be described by the following terms: Automotive Bumper, Automotive Bumpers.
Notes
1Typical properties: these are not to be construed as specifications.
2Die C
31.05 Index
41 hr
 
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.