Fischer-Tropsch Hydrocarbons as Processing Aides in Injection Molding

Authors

  • Stefan De Goede Sasol Chemicals, Germany Author
  • Steve Torchia Sasol Chemicals, North America Author
  • Justyn Miller Sasol Chemicals, North America Author
  • Pieter van Helden Sasol Chemicals, South Africa Author
  • Jerrie Vermeulen Sasol Chemicals, South Africa Author

DOI:

https://doi.org/10.47363/JEAST/2024(6)272

Keywords:

Molding, Hydrocarbons

Abstract

Polymer producers and converters are continuously evaluating options to reduce costs by producing faster, reducing energy consumption, reducing scrap and improving finished article mechanical and aesthetic properties. Recently, however, sustainability and overall environmental impact have also become prominent themes for converters.

Processing aides are commonly used in blown film extrusion and injection molding. Specifically in injection molding silicone spray, fluoropolymers and oleochemicals are used. An alternative is to use higher molecular weight Fischer-Tropsch (FT) hydrocarbons as a polymer processing aide and mold release agent due to its good compatibility with the polymer compound matrix. Formulating with these hydrocarbons allows the converter to reduce cycle time, produce faster to reduce labor, to reduce energy consumption and improve certain properties of the injection molded article. Ultimately FT as a polymer processing aide could be an important tool to a converter to reduce manufacturing costs and improve quality

Author Biographies

  • Stefan De Goede, Sasol Chemicals, Germany

    Stefan De Goede, Sasol Chemicals, Germany

  • Steve Torchia, Sasol Chemicals, North America

    Steve Torchia, Sasol Chemicals, North America

  • Justyn Miller, Sasol Chemicals, North America

    Justyn Miller, Sasol Chemicals, North America 

  • Pieter van Helden, Sasol Chemicals, South Africa

    Pieter van Helden, Sasol Chemicals, South Africa

  • Jerrie Vermeulen, Sasol Chemicals, South Africa

    Jerrie Vermeulen, Sasol Chemicals, South Africa

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Published

2024-09-11