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Dispersix 2017-08-10T13:20:42+00:00
Dispersix Logo

Dispersix is a growing family of hybrid inorganic-organic microspheres that deliver breakthrough gains in productivity for silica-reinforced HCR compounds.

Dispersix products are optimized for HCR silicone cure chemistry and are suitable for opaque, non-white silicone compounds. Look to Dispersix ASC for easy to engineer value-added property gains without significant changes in hardness, modulus, scorch and Mooney viscosity.

  • Reduced mixing time

  • Reduced energy consumption

  • Higher extrusion, and molding rates

  • Enhanced surface smoothness

  • Reduced shrinkage, warp and mold fouling

  • Greater product uniformity

  • Greater batch-batch consistency

  • Reduced shrinkage

  • Reduced warp and mold fouling

Dispersix Logo

Dispersix is a growing family of hybrid inorganic-organic microspheres that deliver breakthrough gains in productivity for silica-reinforced HCR compounds.

Dispersix products are optimized for HCR silicone cure chemistry and are suitable for opaque, non-white silicone compounds. Look to Dispersix ASC for easy to engineer value-added property gains without significant changes in hardness, modulus, scorch and Mooney viscosity.

  • Reduced mixing time

  • Reduced energy consumption

  • Higher extrusion, and molding rates

  • Enhanced surface smoothness

  • Reduced shrinkage, warp and mold fouling

  • Greater product uniformity

  • Greater batch-batch consistency

  • Reduced shrinkage

  • Reduced warp and mold fouling

Dispersix is a growing family of hybrid inorganic-organic microspheres that deliver breakthrough gains in productivity for silica-reinforced HCR compounds.

MORE ABOUT DISPERSIX
Product D50 D98 Cure System Reactivity
Dispersix 4PC 4 15 Peroxide Vinyl
Dispersix 4PC-2 4 15 All Peroxide
  • Lower total energy of mixing

  • Enhanced flow under shear

  • Crosslinking of polymer

  • Enhanced physical properties

  • Lower drop temperature

  • Reduced mold fouling

  • Shorter molding cycle time

  • Better surface smoothness