Technical datasheet

Proxima® HPR 2100

Supplied byMateria (ExxonMobil)- Last Updated on Oct 18, 2023

Proxima® HPR 2100 by Materia is an ultra low viscosity, two-part olefin thermoset system created with proprietary blends of DCPD & other co-monomers and additives. Provides most superior toughness performance, good stiffness and glass transition temperature. It features heat tolerance & processability of thermoset, excellent impact strength & damage tolerance of thermoplastic, as well as low moisture absorption and corrosion resistance of fluoropolymer. Possible applications include automotive, electrical/ electronics, industrial infrastructure, oil & gas, transportation and wind energy. Suitable for fabrication by reaction injection molding, resin transfer molding, vacuum-assisted resin transfer molding and rotomolding. Proxima® HPR 2100 is designed to be an alternative for traditional resins including epoxy, vinyl ester and polyester resins.
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Proxima® HPR 2100 properties

Mechanical properties

PropertiesValue & unitTest conditionTest method
Compressive Modulus0.0 Visible After LoginVisible After LoginVisible After Login
Compressive Strength0.0 Visible After LoginVisible After LoginVisible After Login
Elongation at Break0.0 Visible After LoginVisible After LoginVisible After Login
Elongation at Yield0.0 Visible After LoginVisible After LoginVisible After Login
Flexural Modulus0.0 Visible After LoginVisible After LoginVisible After Login
Flexural Strength0.0 Visible After LoginVisible After LoginVisible After Login
Hardness, Shore D0.0 Visible After LoginVisible After LoginVisible After Login
Impact Strength, Notched Izod0.0 Visible After LoginVisible After LoginVisible After Login
Modulus of Elasticity0.0 Visible After LoginVisible After LoginVisible After Login
Shear Strength0.0 Visible After LoginVisible After LoginVisible After Login

Other properties

PropertiesValue & unitTest conditionTest method
Tensile Strength at Yield0.0 Visible After LoginVisible After LoginVisible After Login
Viscosity0.0 Visible After LoginVisible After LoginVisible After Login

Physical properties

PropertiesValue & unitTest conditionTest method
Density0.0 Visible After LoginVisible After LoginVisible After Login
Water Absorption0.0 Visible After LoginVisible After LoginVisible After Login

Thermal properties

PropertiesValue & unitTest conditionTest method
CTE, Linear0.0 Visible After LoginVisible After LoginVisible After Login
Deflection Temperature at 1.8 MPa (264 psi)0.0 Visible After LoginVisible After LoginVisible After Login
Glass Transition Temperature (Tg)0.0 Visible After LoginVisible After LoginVisible After Login

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