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Experimental and numerical analyses of the mechanical behaviors of three-dimensional orthogonal woven composites under compressive loadings with different strain rates

机译:三维正交编织复合材料在不同应变率下的压缩载荷下力学行为的实验和数值分析

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摘要

Quasi-static and high strain rate compressive behaviors of basalt/vinyl ester 3D orthogonal woven composites along three perpendicular yarn directions were investigated experimentally and numerically. An elastic-plastic numerical model based on the 3D fabric architecture of the 3D orthogonal woven composites was developed to analyze the compressive deformation and failure mode under different strain rate loading conditions. The stress-strain curves obtained from experimental along three directions were used to validate the finite element model. The agreement between the experimental and finite element model results proves the validity of the finite element model. From the experimental results, the strain rate sensitive and anisotropy of the compressive behaviors was found. The finite element results were employed to analyze the locations of stress propagation, the 3D stress state, and the progressive failure behavior. It was also found that this model has a similar failure shape of "broom" at one end of the composite along both of weft and warp compressive directions, while an inclined shear band was formed in through-thickness compression. This result indicates that Z-yarn contributed significantly to the in-plane responses. Additionally, the absorbed energies that induce the complete damage of the composite coupons at various strain rates were also calculated and discussed.
机译:实验和数值研究了玄武岩/乙烯基酯3D正交机织复合材料沿三个垂直纱线方向的准静态和高应变率压缩行为。建立了基于3D正交编织复合材料的3D织物结构的弹塑性数值模型,以分析不同应变率加载条件下的压缩变形和破坏模式。从实验获得的沿三个方向的应力-应变曲线用于验证有限元模型。实验结果与有限元模型结果的吻合证明了有限元模型的有效性。从实验结果,发现应变率敏感和各向异性的压缩行为。有限元结果被用于分析应力传播的位置,3D应力状态和渐进式破坏行为。还发现,该模型在复合材料的一端沿纬向和经向压缩方向均具有类似的“扫帚”破坏形状,而在全厚度压缩过程中形成了倾斜剪切带。该结果表明Z-纱线对面内响应做出了显着贡献。另外,还计算并讨论了在各种应变速率下引起复合材料试件完全损坏的吸收能。

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