Untersuchungen zur Verbesserung des Kalandrierens hochviskoser Kautschukmischungen: Teil 3

Research output: Contribution to journalArticleResearchpeer review

Authors

  • Oliver Krieger
  • Benjamin Klie
  • Ulrich Giese

Research Organisations

External Research Organisations

  • Viega GmbH & Co. KG
  • German Institute of Rubber Technology (DIK e.V.)
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Details

Translated title of the contributionInvestigations to Improve Calendering of High Viscous Rubber Compounds : Part 3
Original languageGerman
Pages (from-to)47-54
Number of pages8
JournalKGK Kautschuk Gummi Kunststoffe
Volume75
Issue number4
Publication statusPublished - Aug 2022

Abstract

High viscous rubber compounds frequently show processing difficulties during calendering. The inefficient TACK behavior of the compound leads to premature detachment of the calendered sheet and causes wrinkling and blistering, trapping of air and geometric fluctuations in thickness and width. Through the development of a new type of calendering methodology it is possible to process high viscous rubber compounds into high-quality sheets with sheet height up to 2 mm. By using the tackifier combination investigated in Part 1 and 2 of this publication [1] [2], the conveying behavior of the compound into the feeding nip can be improved significantly and the highest possible line velocity can be increased considerably.

ASJC Scopus subject areas

Cite this

Untersuchungen zur Verbesserung des Kalandrierens hochviskoser Kautschukmischungen: Teil 3. / Krieger, Oliver; Klie, Benjamin; Giese, Ulrich.
In: KGK Kautschuk Gummi Kunststoffe, Vol. 75, No. 4, 08.2022, p. 47-54.

Research output: Contribution to journalArticleResearchpeer review

Krieger, Oliver ; Klie, Benjamin ; Giese, Ulrich. / Untersuchungen zur Verbesserung des Kalandrierens hochviskoser Kautschukmischungen : Teil 3. In: KGK Kautschuk Gummi Kunststoffe. 2022 ; Vol. 75, No. 4. pp. 47-54.
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abstract = "High viscous rubber compounds frequently show processing difficulties during calendering. The inefficient TACK behavior of the compound leads to premature detachment of the calendered sheet and causes wrinkling and blistering, trapping of air and geometric fluctuations in thickness and width. Through the development of a new type of calendering methodology it is possible to process high viscous rubber compounds into high-quality sheets with sheet height up to 2 mm. By using the tackifier combination investigated in Part 1 and 2 of this publication [1] [2], the conveying behavior of the compound into the feeding nip can be improved significantly and the highest possible line velocity can be increased considerably.",
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