Macroscopic forming simulation of unidirectional non crimp fabrics: Hyperelastic material modeling and 3D solid shell approach
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Forming a flat stack of engineering textiles into a complex three-dimensional shape is the first step in various liquid composite molding processes for manufacturing continuous fiber-reinforced plastics. Forming significantly impacts subsequent process steps and a final component's structural behavior. This work presents an experimental analysis of the relevant deformation mechanisms of non-crimp fabrics during forming and consequent development of efficient macroscopic modeling approaches.
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Forming a flat stack of engineering textiles into a complex three-dimensional shape is the first step in various liquid composite molding processes for manufacturing continuous fiber-reinforced plastics. Forming significantly impacts subsequent process steps and a final component's structural behavior. This work presents an experimental analysis of the relevant deformation mechanisms of non-crimp fabrics during forming and consequent development of efficient macroscopic modeling approaches.
Bol
Forming a flat stack of engineering textiles into a complex three-dimensional shape is the first step in various liquid composite molding processes for manufacturing continuous fiber-reinforced plastics. Forming significantly impacts subsequent process steps and a final component's structural behavior. This work presents an experimental analysis of the relevant deformation mechanisms of non-crimp fabrics during forming and consequent development of efficient macroscopic modeling approaches.
AmazonPagina's: 358, Editie: Eerste editie, Paperback, Universität Karlsruhe TH
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