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Huntsman Brand
4 Products
found on Huntsman
Huntsman
SHOKLESS™ E
Isolation: Microcellular Elastomer (E) technology for reaction injection molding (RIM) or open-pour damping applications.
Huntsman
SHOKLESS™ FD
Product End Uses:
Battery Packs, Battery Cells, Battery Module Encapsulation, Electric Vehicle (EV) Battery
Chemical Family:
Polyurethanes (PU)
Composites Processing Methods:
Potting, Encapsulation
Features:
Light Weight, Good Tensile Properties, Broad Processing Window, Low Viscosity, Low Temperature Curing, Durable, High Elongation, Fast Curing, Good Mechanical Properties, Good Compressive Strength
Thermal and vibration: Full density (FD), lightweight foam technology for the potting and fixation of cells mounted in EV batteries or as moldable encapsulants in battery modules or packs. This technology can be used via common polyurethane dispensing process or pre-fabricated.
Huntsman
SHOKLESS™ LD
Product End Uses:
Battery Packs, Battery Cells, Battery Module Encapsulation, Electric Vehicle (EV) Battery
Composites Processing Methods:
Potting, Encapsulation
Features:
Light Weight, Good Tensile Properties, Broad Processing Window, Low Viscosity, Low Temperature Curing, Durable, High Elongation, Fast Curing, Good Mechanical Properties, Good Compressive Strength
Thermal and vibration: Low density (LD), lightweight foam technology for the potting and fixation of cells mounted in EV batteries or as moldable encapsulants in battery modules or packs. This technology can be used via common polyurethane dispensing process or pre-fabricated.
Huntsman
SHOKLESS™ MD
Product End Uses:
Battery Packs, Battery Cells, Battery Module Encapsulation, Electric Vehicle (EV) Battery
Composites Processing Methods:
Potting, Encapsulation
Features:
Light Weight, Good Tensile Properties, Broad Processing Window, Low Viscosity, Low Temperature Curing, Durable, High Elongation, Fast Curing, Good Mechanical Properties, Good Compressive Strength
Thermal and vibration: Mid density (MD), lightweight foam technology for the potting and fixation of cells mounted in EV batteries or as moldable encapsulants in battery modules or packs. This technology can be used via common polyurethane dispensing process or pre-fabricated.