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Characterization and Modeling of Ply/Tool and Ply/Ply Slippage Phenomena of Unidirectional Polycarbonate CF Tapes.
Kapshammer, Andreas; Laresser, Daniel; Miron, Matei C; Baudach, Felix; Major, Zoltan.
Affiliation
  • Kapshammer A; Institute of Polymer Product Engineering, Johannes Kepler University Linz, Altenberger Str. 69, 4040 Linz, Austria.
  • Laresser D; Competence Center CHASE GmbH, Hafenstraße 47-51, 4020 Linz, Austria.
  • Miron MC; Competence Center CHASE GmbH, Hafenstraße 47-51, 4020 Linz, Austria.
  • Baudach F; Covestro Deutschland AG, B207, R428, 51365 Leverkusen, Germany.
  • Major Z; Institute of Polymer Product Engineering, Johannes Kepler University Linz, Altenberger Str. 69, 4040 Linz, Austria.
Polymers (Basel) ; 15(17)2023 Aug 23.
Article in En | MEDLINE | ID: mdl-37688146
ABSTRACT
Thermoplastic tapes are commonly processed by the rapid and efficient stamp forming process. During this forming process, the individual unidirectional tapes of the composite stack move relative to each other and relative to the surface of the tool while being in contact with the corresponding counterpart. As a result, the material exhibits a certain resistance against this movement, which is generally dependent on velocity, normal pressure, and temperature. Therefore, this work investigates the ply/tool and ply/ply slippage of unidirectional, carbon fiber reinforced polycarbonate tapes and provides an alternative implementation of the experimentally observed slippage using cohesive zone modeling. The backbone of the modeling approach is an experimental data set obtained from pull-through experiments. In comparison to common slippage or friction theories, the force plateau of thermoplastic UD tapes at elevated temperatures is observed after an initial force peak has been overcome. For both configurations, ply/tool and ply/ply, a reduction of the initial force peak was observed for increasing temperature. Furthermore, the resulting plateau force value is at least 36% higher in the ply/ply configuration compared to the ply/tool configuration at 200 °C. The derived cohesive zone model allows for accurate modeling of the initial force peak and the plateau.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Polymers (Basel) Year: 2023 Type: Article Affiliation country: Austria

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Polymers (Basel) Year: 2023 Type: Article Affiliation country: Austria