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15 product grades found
Martinal ® TM-2550
Martinal® TM-2550 aluminum hydroxide is a thermally conductive material designed to be used either by itself or in blends with other fillers to obtain high loadings in epoxy, polyurethane and silicone-based gap-fillers.
Martinal ® TM-2590
Martinal® TM-2590 aluminum hydroxide is a thermally conductive material designed to be used either by itself or in blends with other fillers to obtain high loadings in epoxy, polyurethane and silicone-based gap-fillers.
Martinal ® TM-3620
Martinal® TM-3620 aluminum hydroxide is a thermally conductive material designed to be used either by itself or in blends with other fillers to obtain high loadings in epoxy, polyurethane and silicone-based gap-fillers.
Martinal ® TM-3810
Martinal® TM-3810 aluminum hydroxide is a thermally conductive material designed to be used either by itself or in blends with other fillers to obtain high loadings in epoxy, polyurethane and silicone-based gap-fillers.
Martinal ® TM-8510
Martinal® TM-8510 is an optimized alumina trihydrate that was specifically designed to improve processing viscosities, and therefore moldability of complex parts, in sheet molding compounds (SMC) at loading levels ranging from 250 phr to greater than 350 phr. These high loading levels allow SMC materials to pass the UL2596 Torch and Grit test.
Martoxid ® TM-1250
Martoxid® TM-1250 calcined aluminum oxide is a thermally conductive super ground aluminum oxide utilized as a filler in thermoplastics, thermosets and resins. Used for thermal management and improvement of mechanical, electrical and rheological properties.
Martoxid ® TM-1320
Martoxid® TM-1320 calcined aluminum oxide is a thermally conductive super ground aluminum oxide utilized as a filler in thermoplastics, thermosets, resins etc. Used for thermal management, improvement of mechanical, electrical, and rheological properties.
Martoxid ® TM-1410
Martoxid® TM-1410 calcined aluminum oxide is a thermally conductive super ground aluminum oxide utilized as a filler in thermoplastics, thermosets and resins. Used for thermal management and improvement of mechanical, electrical and rheological properties.
Martoxid ® TM-2090
Martoxid® TM-2090 calcined aluminum oxide is a thermally conductive sub-micron, superground aluminum oxide utlized as a filler in thermoplastics, thermosets and resins. Used for thermal management and improvement of mechanical, electrical and rheological properties.
Martoxid ® TM-2250
Martoxid® TM-2250 calcined aluminum oxide is a thermally conductive super ground aluminum oxide utlized as a filler in thermoplastics, thermosets and resins. Used for thermal management and improvement of mechanical, electrical and rheological properties.
Martoxid ® TM-2320
Martoxid® TM-2320 calcined aluminum oxide is a thermally conductive super ground aluminum oxide utilized as a filler in thermoplastics, thermosets, resins etc. Used for thermal management, improvement of mechanical, electrical, and rheological properties.
Martoxid ® TM-2410
Martoxid® TM-2410 calcined aluminum oxide is a thermally conductive super ground aluminum oxide utilized as a filler in thermoplastics, thermosets, resins etc. Used for thermal management, improvement of mechanical, electrical, and rheological properties.
Martoxid ® TM-3220
Martoxid® TM-3220 calcined aluminum oxide is a thermally conductive super ground aluminum oxide utilized as a filler in thermoplastics, thermosets, resins etc. Used for thermal management, improvement of mechanical, electrical, and rheological properties.
Martoxid ® TM-3310
Martoxid® TM-3310 calcined aluminum oxide is a thermally conductive super ground aluminum oxide utilized as a filler in thermoplastics, thermosets, resins etc. Used for thermal management, improvement of mechanical, electrical, and rheological properties.
Martoxid ® TM-3510
Martoxid® TM-3510 calcined aluminum oxide is a thermally conductive super ground aluminum oxide utilized as a filler in thermoplastics, thermosets, resins etc. Used for thermal management, improvement of mechanical, electrical, and rheological properties.