2022
DOI: 10.1080/00405000.2022.2026566
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Modelling and analysis of the mechanical and forming behaviours of 3D warp interlock carbon woven fabrics according to the structural design parameters

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Cited by 2 publications
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“…In addition, it was found that because the metal z-filaments can sustain higher plastic deformation than their carbon counterpart, they are less effective than carbon z-filaments at increasing fatigue resistance under both mode I and mode II loadings [20]. Meanwhile, researchers also simulated the damage form of composites with 3D structures through various analysis models to predict the mechanical properties of composites [21][22][23][24]. However, there is currently limited research on the 3D preform structure design.…”
mentioning
confidence: 99%
“…In addition, it was found that because the metal z-filaments can sustain higher plastic deformation than their carbon counterpart, they are less effective than carbon z-filaments at increasing fatigue resistance under both mode I and mode II loadings [20]. Meanwhile, researchers also simulated the damage form of composites with 3D structures through various analysis models to predict the mechanical properties of composites [21][22][23][24]. However, there is currently limited research on the 3D preform structure design.…”
mentioning
confidence: 99%