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Analysis of Isothermal Processes for the Accelerated Production of Composite Structure

Science-Report aus dem Faserinstitut Bremen, Bd. 23

Johannes Jakob Stolz

ISBN 978-3-8325-6078-2
138 pages, year of publication: 2026
price: 54.00 €
The thesis contributes to the development of manufacturing approaches for structural CFRP aerospace components using dry fibre processes such as resin transfer moulding (RTM). It focuses on key challenges of isothermal processing, where parts are demoulded close to curing temperature and subsequently subjected to rapid cooling outside the production tool. FEM simulations are used for multiphysics calculations, supported by experiments, to investigate these phenomena.

To model the separation of the composite part from the metal tool by impact, dynamic mechanical calculations are performed using an explicit solver to determine the system's dynamic response. This involves analysing the oscillation of the part and tool based on mathematical approaches for low-velocity impacts. The risk of impact-induced damage during demoulding is evaluated using an implicit solver in combination with the three-dimensional Puck inter-fibre failure criterion.

In addition, the study examines the effects of rapid and non-uniform cooling after demoulding. The resulting inhomogeneous temperature fields lead to thermally induced stresses, which are evaluated together with residual stresses from the manufacturing process. Their potential to cause damage is analysed using the Puck failure initiation criterion.

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Keywords:
  • Resin transfer moulding
  • Residual stress calculation
  • Process simulation
  • Part demoulding
  • Multiphysics

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