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Dynamic compressive mechanical properties and a new constitutive model of 2D-C/SiC composites

机译:2D-C / SiC复合材料的动态压缩力学性能和本构模型

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The layer-directional compressive properties of 2D-C/SiC composites were investigated at strain rates ranging from 10~(-4) to 2.8 × 10~3 s~(-1). The quasi-static experiments were performed using the electronic universal testing machine, and the dynamic experiments were conducted by the split Hopkinson pressure bar system. The results show that the dynamic compressive stress-strain curves are non-linear. The failure strength and the elasticity modulus vary linearly to the logarithm of the strain rate, and the failure strain reduces with an increasing strain rate. Scatter of dynamic compressive failure strength obeys Weibull distribution and the Weibull parameter m is 5.27. The damage angle of dynamic compression is larger than that of static loading. Observed on SEM, the ruptured surface is smooth at high loading rate and more cracked fibers appear in the specimens than at lower strain rate. Based on the experimental results, a new constitutive model is proposed in this paper.
机译:研究了在10〜(-4)至2.8×10〜3 s〜(-1)应变速率下2D-C / SiC复合材料的层向压缩性能。使用电子万能试验机进行准静态实验,并使用分离式Hopkinson压力杆系统进行动态实验。结果表明,动态压缩应力-应变曲线是非线性的。破坏强度和弹性模量随应变率的对数线性变化,并且破坏应变随着应变率的增加而减小。动态压缩破坏强度的散布服从威布尔分布,威布尔参数m为5.27。动态压缩的破坏角大于静态压缩的破坏角。在SEM上观察到,在高加载速率下破裂的表面是光滑的,并且比在较低应变速率下破裂的纤维更多地出现在样品中。根据实验结果,提出了一种新的本构模型。

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