解压缩超剪切裂缝沿由小裂缝组成的直射孔线扩展的加速和减速

Koji Uenishi , Kaichi Akimoto , Masanao Sekine
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引用次数: 0

摘要

我们通过实验研究了二维动态裂缝沿一条包含多个小尺度裂缝的直射孔线的扩展。如果在脆性聚碳酸酯试样中只存在一条射孔线,那么由于外部准静态载荷的作用,动态裂缝似乎沿着射孔线以“解压缩”的方式单向传播,只是将裂缝的边缘连接起来,而不会转向和分支。然而,仔细观察高速摄像机实验获得的照片,可以发现裂缝扩展并不总是单向的,其速度也在亚音速和超剪切水平之间来回波动,即在传播过程中速度可以低于或高于试件的相关剪切波速。一般来说,在裂缝离开已存在的小裂缝边缘时,扩展速度最大,而在裂缝接近射孔线上下一个裂缝边缘时,扩展速度较低。此外,裂缝扩展速度在超剪切水平上的波动可能会产生多个不同马赫角的马赫波前。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acceleration and deceleration of unzipping supershear fracture propagating along a straight perforation line consisting of small-scale cracks
We experimentally investigate two-dimensional dynamic fracture propagation along a straight perforation line containing multiple small-scale cracks. If there exists only one single perforation line in a brittle polycarbonate specimen, dynamic fracture due to application of external quasi-static loading seems propagating unidirectionally in an “unzipping” way along the perforation line, simply linking the edges of the cracks without diverting and branching. However, a closer look into the photographs experimentally obtained by a high-speed video camera shows that fracture propagation is not always unidirectional and its speed also fluctuates back-and-forth between subsonic and supershear levels, i.e. the speed can be lower or higher than the relevant shear wave speed of the specimen during propagation. Generally, the propagation speed becomes maximum just before the fracture leaves the edge of a preexisting small-scale crack and it is low just before the fracture approaches the edge of the next crack in the perforation line. Furthermore, the fluctuation of fracture propagation speed at supershear levels may generate multiple Mach (shock) wavefronts with different Mach angles.
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CiteScore
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