Non steady-state intersonic cracks in elastomer membranes under large static strain

T. Corre, M. Coret, E. Verron, B. Leblé
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引用次数: 4

Abstract

International audience Dynamic crack propagation in elastomer membranes is investigated; the focus is laid on cracks reaching the speed of shear waves in the material. The specific experimental setup developed to measure crack speed is presented in details. The protocol consists in (1) stretching an elastomer membrane under planar tension loading conditions, then (2) initiating a small crack on one side of the membrane. The crack speed is measured all along the crack path in both reference and actual configurations, including both acceleration and deceleration phases, i.e. non steady-state crack propagation phases. The influence of the prescribed stretch ratio on crack speed is analysed in the light of both these new experiments and the few previously published studies. Conclusions previously drawn for steady-state crack growth are extended to non steady-state conditions: stretch perpendicular to the crack path governs crack speed in intersonic crack propagation regime, and the role of the stretch in crack direction is minor.
大静应变下弹性体膜的非稳态声间裂纹
弹性体膜的动态裂纹扩展研究重点放在材料中达到横波速度的裂缝上。详细介绍了为测量裂纹速度而开发的专用实验装置。该方案包括(1)在平面张力加载条件下拉伸弹性体膜,然后(2)在膜的一侧启动一个小裂纹。在参考配置和实际配置下,沿裂纹路径测量裂纹速度,包括加速和减速阶段,即非稳态裂纹扩展阶段。结合这些新实验和少数已发表的研究,分析了规定拉伸比对裂纹速度的影响。将之前关于裂纹稳态扩展的结论推广到非稳态条件下:在声速裂纹扩展中,垂直于裂纹路径的拉伸控制裂纹速度,而裂纹方向的拉伸作用较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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