Release Coating

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High-Temperature Release Agents

High Temp Release Coating | ReleaSys™ HTX30-GR

ReleaSys HTX30-GR is Miller-Stephenson's top-of-the-line high temperature coating, superior to both the ReleaSys HTX-A and ReleaSys HTX.  This water-based coating utilizes our proprietary blend of highly lubricious ceramic particles and next-generation, ultra-high temperature binder system to deliver unmatched release performance from room temperature up to 1000°C. This coat has been shown to provide numerous releases of molten aluminium and magnesium, glass, and highly abrasive plastic composites such as PEEK from a single application. We achieved a coating which outperforms all other water-based or solvent-based boron nitride or graphite coatings.

  • Miller-Stephenson Next-Generation Binder System
  • Highly lubricious ceramic coating; Extreme abrasion resistance
  • Optimized for high temperature, abrasive environments
  • Exceptional release ease with no transfer
  • Rapid drying and short cure times
  • Ultra-low VOC, water-based formulation
  • Environmentally-friendly

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General Purpose Mold Release Agents

Release Coatings | ReleaSys™ 9700S

ReleaSys™ 9700S is our premier release coating designed from its origination to be the most technologically advanced release agent available, offering superior performance in a variety of molding configurations and substrates. Utilizing our next-generation polymer chemistry, Miller-Stephenson has developed a release agent which provides unmatched durability, surface adhesion, and absolutely no transfer. A truly revolutionary product, ReleaSys™ 9700S performs in the most demanding operations, offering unmatched reapplication intervals, part quality, and ease of release. ReleaSys™ 9700S is used for release of components in Automotive, Marine, and Aerospace. Benefits include:

  • Miller-Stephenson's most advanced release agent
  • Superior Durability; Most releases per application
  • Ideal for the most demanding applications
  • No mold build-up or transfer
  • Ultra-low odor formula

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