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  4. Experimental and Numerical Investigation of Thermoforming Behaviour of Thermoplastic Composite Sandwich Materials
 
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2025
Doctoral Thesis
Title

Experimental and Numerical Investigation of Thermoforming Behaviour of Thermoplastic Composite Sandwich Materials

Abstract
Lightweight sandwich systems are specialized composite materials known for their excellent weight specific mechanical properties. The novel combination of thin continuous fibre reinforced thermoplastic face sheets and low-density honeycomb core are so-called organosandwich materials. These structural materials are used in different applications, such as aerospace, automotive, marine, wind turbines etc. In addition to the structural benefits, they offer several other key benefits like recyclability and shorter manufacturing cycle times. The hybrid-manufacturing process called TS-Moulding enables and extends the application of flat semi-finished organosandwich materials into complex shaped geometry parts that suit diverse industries.
The new materials and their related processing technologies always require a detailed study about the material behaviour and process-related defects to improve the reproducibility. Using FEM tools, the process optimization, design and development of the components become more efficient. However, complex materials and thermo-mechanical based manufacturing processes require detailed study of process parameters and characterization of the materials which is described in this research study.
Thesis Note
Zugl.: Magdeburg, Univ., Diss., 2025
Author(s)
Minupala, Varun Kumar
Fraunhofer-Institut für Mikrostruktur von Werkstoffen und Systemen IMWS  
Publisher
Fraunhofer Verlag  
Link
Link
Language
English
Fraunhofer-Institut für Mikrostruktur von Werkstoffen und Systemen IMWS  
Keyword(s)
  • Material science

  • Composites

  • Honeycomb sandwich

  • Thermoforming process

  • Manufacturing

  • Production and industrial engineering

  • Process simulation

  • Sustainability

  • Composite sandwich structures

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