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Study of the Ballistic Impact Behavior of Protective Multi-Layer Composite Armor

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摘要 The abalone shell,a composite material whose cross-section is composed of inorganic and organic layers,has high strength and toughness.Inspired by the abalone shell,several multi-layer composite plates with different layer sequences and thicknesses are studied as bullet-proof material in this paper.To investigate the ballistic performance of this multi-layer structure,the complete characterization model and related material parameters of large deformation,failure and fracture ofAl_(2)O_(3)ceramics andCarbon Fiber Reinforced Polymer(CFRP)are studied.Then,3D finite element models of the proposed composite plates with different layer sequences and thicknesses impacted by a 12.7 mm armor-piercing incendiary(API)are built using Abaqus to predict failure.The simulation results show that the CFRP/Al2O3 ceramic/Ultrahigh Molecular Weight Polyethylene(UHMWPE)/CFRP(1 mm/4 mm/4 mm/1 mm)composite is the optimized stack of layers.The simulation results under specified layer sequence and thickness have a reasonable correlation with the experimental results and reflect the failure and fracture of the multi-layer composite protective armor.
出处 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第7期171-199,共29页 工程与科学中的计算机建模(英文)
基金 funded by the National Natural Science Foundation of China(W.Zhang,Grant No.12220101002) Shaanxi Provincial Key Science and Technology Innovation Team(Y.Xu,Grant No.2023-CX-TD-14) the Young Talent Fund of Association for Science and Technology in Shaanxi,China(D.Jia,Grant No.20230240) the Chinese Studentship Council(D.Jia,Grant No.201908060224).
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