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Rulon Bearings

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Solvay CYCOM® 2040 Epoxy Prepreg Unidirectional Tape with T800-140
Categories: Polymer; Thermoset; Epoxy

Material Notes: CYCOM® 2040 is a very tough modified epoxy resin system with exceptional high temperature performance. It is suitable for highly stressed components exposed to elevated temperature environments (under bonnet/engine bay) including impact/crash structures. A two hour cure at 180°C (356°F) generates a Tg of over 200°C (392°F)* and offers excellent mechanical properties at both ambient and elevated temperatures. CYCOM 2040 is available on woven and unidirectional carbon, glass and man-made fibers.

Features & Benefits:

  • High levels of mechanical property retention at elevated temperatures
  • Controlled flow
  • Excellent cured surface quality
  • Low cured resin density (1.21g/cm³)
  • Free-standing post curable to 200°C (356°F) for maximum temperature performance
  • Shop life of 21 days at ambient [23°C (73°F)]
  • Available in a wide range of fibers and fabric weaves
Suggested Applications:
  • Primary vehicle structures including chassis, engine frames suspension components and aerodynamic wings
  • Impact structures including nose cone, side and rear
  • Components requiring operating temperatures up to 200°C (392°F)
Nominal reinforcement content for reported properties is 36% T800-140.

Information provided by Cytec, subsequently acquired by Solvay.

Vendors: No vendors are listed for this material. Please click here if you are a supplier and would like information on how to add your listing to this material.
 
Physical PropertiesOriginal ValueComments
Density 1.21 g/ccCured Unfilled Resin
Viscosity >= 16000 cP
@Temperature 150 °C
Neat Resin
Storage Temperature <= -18.0 °C
 
Mechanical PropertiesOriginal ValueComments
Tensile Strength 6600 psi
@Temperature 150 °C
90° orientation, Actual 53.2% VF
 7500 psi
@Temperature 24.0 °C
90° orientation, Actual 53.2% VF
 309000 psi
@Temperature 150 °C
0° orientation, Actual 53.2% VF
 348000 psi
@Temperature 24.0 °C
0° orientation, Actual 53.2% VF
 349000 psi
@Temperature 150 °C
0° orientation, Normalized 60% VF
 373000 psi
@Temperature 24.0 °C
0° orientation, Normalized 60% VF
Tensile Modulus 5.90 GPa
@Temperature 150 °C
90° orientation, Actual 53.2% VF
 7.50 GPa
@Temperature 24.0 °C
90° orientation, Actual 53.2% VF
 150 GPa
@Temperature 150 °C
0° orientation, Actual 53.2% VF
 160 GPa
@Temperature 24.0 °C
0° orientation, Actual 53.2% VF
 170 GPa
@Temperature 150 °C
0° orientation, Normalized 60% VF
 172 GPa
@Temperature 24.0 °C
0° orientation, Normalized 60% VF
Flexural Strength 13000 psi
@Temperature 150 °C
90° orientation, Actual 53.2% VF
 16000 psi
@Temperature 24.0 °C
90° orientation, Actual 53.2% VF
 204000 psi
@Temperature 150 °C
0° orientation, Actual 53.2% VF
 230000 psi
@Temperature 150 °C
0° orientation, Normalized 60% VF
 244000 psi
@Temperature 24.0 °C
0° orientation, Actual 53.2% VF
 276000 psi
@Temperature 24.0 °C
0° orientation, Normalized 60% VF
Flexural Modulus 6.80 GPa
@Temperature 150 °C
90° orientation, Actual 53.2% VF
 7.00 GPa
@Temperature 24.0 °C
90° orientation, Actual 53.2% VF
 141 GPa
@Temperature 24.0 °C
0° orientation, Actual 53.2% VF
 159 GPa
@Temperature 24.0 °C
0° orientation, Normalized 60% VF
 160 GPa
@Temperature 150 °C
0° orientation, Actual 53.2% VF
 181 GPa
@Temperature 150 °C
0° orientation, Normalized 60% VF
Compressive Strength 123.3 MPa
@Temperature 150 °C
90° orientation, Actual 53.2% VF
 186.3 MPa
@Temperature 24.0 °C
After Impact, Actual 53.2% VF
 271.2 MPa
@Temperature 24.0 °C
90° orientation, Actual 53.2% VF
 1073 MPa
@Temperature 150 °C
0° orientation, Actual 53.2% VF
 1210 MPa
@Temperature 150 °C
0° orientation, Normalized 60% VF
 1304 MPa
@Temperature 24.0 °C
0° orientation, Actual 53.2% VF
 1471 MPa
@Temperature 24.0 °C
0° orientation, Normalized 60% VF
Compressive Modulus 7100 MPa
@Temperature 150 °C
90° orientation, Actual 53.2% VF
 9300 MPa
@Temperature 24.0 °C
90° orientation, Actual 53.2% VF
 133000 MPa
@Temperature 24.0 °C
0° orientation, Actual 53.2% VF
 143000 MPa
@Temperature 150 °C
0° orientation, Actual 53.2% VF
 150000 MPa
@Temperature 24.0 °C
0° orientation, Normalized 60% VF
 161000 MPa
@Temperature 150 °C
0° orientation, Normalized 60% VF
Bearing Yield Strength 903.2 MPaActual 53.2% VF
Poissons Ratio 0.010
@Temperature 24.0 °C
90° orientation, Actual 53.2% VF
 0.030
@Temperature 150 °C
90° orientation, Actual 53.2% VF
 0.32
@Temperature 24.0 °C
0° orientation, Actual 53.2% VF
 0.41
@Temperature 150 °C
0° orientation, Actual 53.2% VF
 0.85
@Temperature 24.0 °C
±45°, Actual 53.2% VF
 0.91
@Temperature 150 °C
±45°, Actual 53.2% VF
Shear Modulus 2.38 GPa
@Temperature 150 °C
In Plane, Actual 53.2% VF
 3.30 GPa
@Temperature 24.0 °C
In Plane, Actual 53.2% VF
Shear Strength 9000 psi
@Temperature 150 °C
Interlaminar, Actual 53.2% VF
 12000 psi
@Temperature 150 °C
In Plane, Actual 53.2% VF
 12600 psi
@Temperature 150 °C
In Plane, Actual 53.2% VF
 14100 psi
@Temperature 24.0 °C
Interlaminar, Actual 53.2% VF
 18400 psi
@Temperature 24.0 °C
In Plane, Actual 53.2% VF
 
Thermal PropertiesOriginal ValueComments
Maximum Service Temperature, Air 200 °C
Glass Transition Temp, Tg >= 200 °Cfollowing 180°C (356°F) cure
 
Processing PropertiesOriginal ValueComments
Gel Time 58.0 min
@Temperature 167 °C
Shelf Life 12.0 Month

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to go back to viewing the property data in MatWeb's normal format.

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PCYTED132 / 180434

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