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Elmet Technologies

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Solvay CYCOM® 2020 Epoxy + T800-6K 5H 280 5-Harness Satin Fabric Prepreg, Postcured
Categories: Polymer; Thermoset; Epoxy; Epoxy/Carbon Fiber Composite

Material Notes: CYCOM® 2020 is a versatile curing, toughened epoxy resin that can be cured from 180°F to 350°F (80°C to 180°C), depending on service temperature requirements. This prepreg resin extracts the maximum possible performance from carbon fibers. The excellent overall balance of properties delivered by CYCOM 2020 has made it the product of choice for many Formula 1 race teams in structural applications. CYCOM 2020 can be either autoclave or vacuum bag cured. Free-standing postcures can also be employed. A one hour cure at 275°F (135°C) gives a Tg of more than 310°F (155°C). The same cure cycle provides excellent mechanical properties with retention of those properties at temperature; 70% of shear strength is retained at 250°F (120°C). CYCOM 2020 is available on both woven and unidirectional carbon, glass and aramid fiber and has a tack-life under ambient conditions in excess of four weeks, maintaining good drape and tack characteristics throughout.

Features & Benefits:

  • Excellent translation of fiber properties
  • Excellent retention of mechanical properties at 240°F (120°C) temperature
  • High impact resistance
  • Controlled flow
  • Good drape and tack
  • Excellent cured surface finish
  • Shop life of 8 weeks at ambient temperature, 75°F (24°C)
Suggested Applications:
  • High stress extreme performance mast and boom applications
  • Structural Formula 1 applications
Property data for CYCOM 2020 T800-6K 5H 280 42% Resin Content 5-Harness Satin Fabric with standard cure (1 hour at 275°F (135°C)) and post-cure (2 hours at 356°F (180°C)).

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 1.25 g/ccCured Resin
Viscosity 2000 cP
@Temperature 120 °C
Neat Resin
 5000 cP
@Temperature 132 °C
Neat Resin
 10000 cP
@Temperature 94.0 °C
Neat Resin
 100000 cP
@Temperature 63.0 °C
Neat Resin
 
Mechanical PropertiesOriginal ValueComments
Tensile Strength 133000 psi
@Temperature 177 °C
0° Orientation; ASTM D3039
Tensile Modulus 78.0 GPa
@Temperature 177 °C
0° Orientation; ASTM D3039
Flexural Strength 72000 psi
@Temperature 177 °C
0° Orientation; ASTM D790
Flexural Modulus 57.0 GPa
@Temperature 177 °C
0° Orientation; ASTM D790
Compressive Strength 369 MPa
@Temperature 177 °C
0° Orientation; ASTM D695
Compressive Modulus 68000 MPa
@Temperature 177 °C
0° Orientation; ASTM D695
Shear Modulus 1.10 GPa
@Temperature 177 °C
±45° Orientation, In-plane; ASTM D3518
Shear Strength 5400 psi
@Temperature 177 °C
Interlaminar Short Beam; ASTM D2344
 8300 psi
@Temperature 177 °C
±45° Orientation, In-plane; ASTM D3518
 
Thermal PropertiesOriginal ValueComments
Maximum Service Temperature, Air 240 °FExcellent Mechanical Property Retention
Glass Transition Temp, Tg 100 °CCure Cycle: 10 hour at 176°F (80°C)
 120 °CPeak tan d, Cure Cycle: 10 hour at 176°F (80°C)
 126 °CCure Cycle: 4 hours at 212°F (100°C)
 150 °CPeak tan d, Cure Cycle: 4 hours at 212°F (100°C)
 151 °CCure Cycle: 0.5 hour at 275°F (135°C)
 153 °CCure Cycle: 1 hour at 275°F (135°C)
 170 °CCure Cycle: 1 hour at 302°F (150°C)
 177 °CPeak tan d, Cure Cycle: 0.5 hour at 275°F (135°C)
 177 °CPeak tan d, Cure Cycle: 1 hour at 275°F (135°C)
 185 °CCure Cycle: 1 hour at 275°F (135°C) plus 2 hours at 356°F (180°C)
 190 °CPeak tan d, Cure Cycle: 1 hour at 302°F (150°C)
 205 °CPeak tan d, Cure Cycle: 1 hour at 275°F (135°C) plus 2 hours at 356°F (180°C)
 
Processing PropertiesOriginal ValueComments
Processing Temperature 180 - 350 °FCure Temp. Range
 275 °F
@Time 3600 sec
Standard Cure Cycle
Gel Time 15.0 min
@Temperature 120 °C
Shelf Life 12.0 Month
@Temperature <=-12.0 °C

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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PCYTED131a / 193484

Ensinger PEI

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