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Experimental and numerical investigation of high strain rate mechanical behavior of a 0/45/90/ - 45 quadriaxial E-Glass/Polyester composite

机译:0/45/90 /-45四轴电子玻璃/聚酯复合材料高应变速率力学行为的实验和数值研究

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摘要

Quasi-static (10−3–10−1 s−1) and high strain rate (∼900 s−1) compression behavior of an E-Glass fiber woven fabric reinforced Polyester matrix composites was investigated by using a Shimadzu AG-I testing machine and a Split Hopkinson Pressure Bar apparatus in the Dynamic Testing and Modeling Laboratory of Izmir Institute of Technology. During the experiments, a high speed camera was used to determine deformation behavior. In both directions, modulus and failure strength increased with increasing strain rate. Higher strain rate sensitivity for both elastic modulus and failure strength was observed in the in-plane direction. Based upon these experimental data, a numerical model was developed using the commercial explicit finite element code LS-DYNA to investigate compressive deformation and damage behavior of composites. Excellent agreement was demonstrated for the case of high strain rate loading. Also, the fracture geometries were successfully predicted with the numerical model.
机译:使用Shimadzu AG-I测试研究了E玻璃纤维织物增强聚酯基复合材料的准静态(10−3–10−1 s−1)和高应变率(〜900 s−1)压缩行为机器和伊兹密尔理工学院动态测试与建模实验室的Split Hopkinson压力杆设备。在实验过程中,使用高速相机确定变形行为。在两个方向上,模量和破坏强度都随着应变率的增加而增加。在面内方向上观察到对弹性模量和破坏强度的更高的应变率敏感性。基于这些实验数据,使用商品化的显式有限元代码LS-DYNA建立了数值模型,以研究复合材料的压缩变形和破坏行为。在高应变速率载荷的情况下,表现出极好的一致性。而且,用数值模型成功地预测了断裂几何形状。

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