LOCTITE 3D | IND403 HDT80 High Modulus

    Henkel LOCTITE 3D IND403 HDT80 High Modulus is a tough resin for applications in tooling production. The material has great surface finish and can withstand mechanical stresses. It is available in black.

    $230.00
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    The LOCTITE 3D IND403 HDT80 High Modulus Resin

    The IND403 is a temperature resistant resin that showcases an excellent surface finish and outstanding dimensional accuracy. Due to these features the LOCTITE 3d IND403 HDT80 is recommended for use in tooling production for low temperature processes. This resin is stress resistant and can withstand high chemical stressors while maintaining dimensional stability, which additionally makes it the ideal material for interior applications.

    Key Features

    • High heat deflection temperature, HDT 80° C
    • Tough material
    • Good dimensional stability
    • Good surface finish
    Mechanical PropertiesMethodGreenPost Processed
    Tensile Stress at YieldASTM D63856.1 ± 8 MPa91 ± 2 MPa
    Tensile Stress at BreakASTM D63846.5 ± 2.5 MPa87 ± 3 MPa
    Young's ModulusASTM D6382176 ± 72 MPa2750 ± 65 MPa
    Elongation at FailureASTM D63815 ± 10 %8.5 ± 2 %
    Maximum Flexural StressASTM D79081 ± 2136 ± 1.5 MPa
    Flexural ModulusASTM D7901879 ± 342880 ± 50 MPa
    Flexural Strain at BreakASTM D790> 10 %> 10 %
    Impact Strength - IZOD NotchedASTM D25627.2 ± 4.7
    Impact Strength - IZOD UnnotchedASTM D256> 250
    Other PropertiesMethodGreenPost Processed
    Hardness Shore D (0, 3 seconds)ASTM D224081D, 76D80D, 78D
    Solid DensityASTM D14751.17 g/cm³1.20 g/cm³
    Volumetric ShrinkageInternal8.67 %10.99 %
    Thermal ConductivityASTM D59300.22 W/m*K
    Heat CapacityASTM D59301.35 J/g*K
    Heat Deflection Temperature at 0.455 MPaASTM D64864 ± 1.6° C81.7 ± 1° C
    Heat Deflection Temperature at 1.82 MPaASTM D64864.7° C
    Viscosity at 25° CASTM D7867100 ± 200 cP
    Liquid DensityASTM D14751.08 g/mL

    Data sheet

    Young’s Modulus (MPa)
    2176 ± 72 MPa / 2750 ± 65 MPa
    Liquid Density
    1.08 g/mL