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Modeling quasi-static and high strain rate deformation and failure behavior of a (±45) symmetric E-glass/polyester composite under compressive loading

机译:模拟(±45)对称电子玻璃/聚酯复合材料在压缩载荷下的准静态和高应变率变形和破坏行为

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摘要

Quasi-static (1 × 10−3–1 × 10−2 s−1) and high strain rate (∼1000 s−1) compressive mechanical response and fracture/failure of a (±45) symmetric E-glass/polyester composite along three perpendicular directions were determined experimentally and numerically. A numerical model in LS-DYNA 971 using material model MAT_162 was developed to investigate the compression deformation and fracture of the composite at quasi-static and high strain rates. The compressive stress–strain behaviors of the composite along three directions were found strain rate sensitive. The modulus and maximum stress of the composite increased with increasing strain rate, while the strain rate sensitivity in in-plane direction was higher than that in through-thickness direction. The damage progression determined by high speed camera in the specimens well agreed with that of numerical model. The numerical model successfully predicted the damage initiation and progression as well as the failure modes of the composite.
机译:准静态(1×10−3–1×10−2 s-1)和高应变速率(〜1000 s-1)的压缩机械响应以及(±45)对称电子玻璃/聚酯复合材料的断裂/破坏沿三个垂直方向进行了实验和数值确定。建立了使用材料模型MAT_162的LS-DYNA 971数值模型,以研究复合材料在准静态和高应变速率下的压缩变形和断裂。发现复合材料沿三个方向的压缩应力-应变行为对应变速率敏感。复合材料的模量和最大应力随着应变率的增加而增加,而面内方向的应变率敏感性高于厚度方向的应变率敏感性。高速相机测定样品的损伤程度与数值模型吻合良好。数值模型成功地预测了复合材料的破坏起因和进展以及破坏模式。

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