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This book highlights a novel and robust platform in the form of
in-situ characterization setup for creating X-ray computed
tomography (XCT)-based textile material twins. In this hybrid
experimental-numerical platform, XCT images of different complex
fibrous reinforcements at different levels of compaction are
acquired. The images are converted into computational models for
resin flow simulations. The capabilities of this hybrid framework
are applied to a variety of reinforcements used in liquid composite
molding processes such as 2D, 3D fabrics and dry tapes. This book
is a milestone in the development of virtual manufacturing
protocols using material twins of textiles, providing a step closer
to the digitalization of advanced composites used in manufacturing
processes for industry 4.0.
This book highlights a novel and robust platform in the form of
in-situ characterization setup for creating X-ray computed
tomography (XCT)-based textile material twins. In this hybrid
experimental-numerical platform, XCT images of different complex
fibrous reinforcements at different levels of compaction are
acquired. The images are converted into computational models for
resin flow simulations. The capabilities of this hybrid framework
are applied to a variety of reinforcements used in liquid composite
molding processes such as 2D, 3D fabrics and dry tapes. This book
is a milestone in the development of virtual manufacturing
protocols using material twins of textiles, providing a step closer
to the digitalization of advanced composites used in manufacturing
processes for industry 4.0.
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