首页> 外文期刊>International Journal of Fracture >Sliding along frictionally held incoherent interfaces in homogeneous systems subjected to dynamic shear loading: a photoelastic study
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Sliding along frictionally held incoherent interfaces in homogeneous systems subjected to dynamic shear loading: a photoelastic study

机译:在承受动态剪切载荷的均匀系统中沿摩擦保持的非相干界面滑动:光弹性研究

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An experimental investigation was conducted to study dynamic sliding at high strain rates along incoherent (frictional) interfaces between two identical plates. The plates were held together by a uniform compressive stress, while dynamic sliding was initiated by an impact-induced shear loading. The case of freely-standing plates with no external pressure was also investigated. The dynamic stress fields that developed during the events were recorded in a microsecond time scale by high-speed photography in conjunction with classical dynamic photoelasticity. Depending on the choice of experimental parameters (impact speed and superimposed static pressure), pulse-like and crack-like sliding modes were observed. Visual evidence of sub-Rayleigh, intersonic and even supersonically propagating pulses were discovered and recorded. Unlike classical shear cracks in coherent interfaces of finite strength, sliding areas in frictional interfaces seem to grow at various discrete speeds without noticeable acceleration phases. A relatively broad loading wave caused by the interference between the impact wave and the preexisting static stress field was observed emanating from the interface. There was a cusp in the stress contours at the interface, indicating that the propagation speed was slightly faster along the interface than in the bulk. The observed propagation speeds of the sliding tips were dependent on the projectile speed. They spanned almost the whole interval from sub-Rayleigh speeds to nearly the sonic speed of the material, with the exception of a forbidden gap between the Rayleigh wave speed and the shear wave speed. Supersonic trailing pulses generating Mach lines of different inclination angles, emanating from the sliding zone tips, were discovered. In addition, behind the sliding tip, wrinkle-like opening pulses were observed for a wide range of impact speeds and confining stresses. They always traveled at speeds between the Rayleigh wave speed and the shear wave speed of the material.
机译:进行了一项实验研究,以研究高应变率下沿两个相同板之间非相干(摩擦)界面的动态滑动。板通过均匀的压应力保持在一起,而动态滑动则是由冲击引起的剪切载荷引起的。还研究了没有外部压力的自由站立板的情况。通过高速摄影结合经典的动态光弹性,以微秒为单位记录了事件期间产生的动态应力场。根据实验参数的选择(冲击速度和叠加静压力),观察到脉冲状和裂纹状滑动模式。发现并记录了次瑞利,声速乃至超声传播脉冲的视觉证据。与有限强度的相干界面中的经典剪切裂缝不同,摩擦界面中的滑动区域似乎以各种离散速度增长,而没有明显的加速阶段。观察到由冲击波和先前存在的静态应力场之间的干扰引起的相对较宽的载荷波。界面处的应力轮廓出现尖峰,表明沿界面的传播速度比整体中的传播速度略快。观察到的滑动尖端的传播速度取决于弹丸速度。它们跨越了从次瑞利速度到材料声速的几乎整个时间间隔,但瑞利波速度和切变波速度之间的间隙被禁止。发现了从滑动带尖端发出的产生不同倾角马赫线的超音速尾随脉冲。另外,在滑动尖端的后面,观察到皱纹状的打开脉冲,其冲击速度和限制应力范围很广。它们始终以瑞利波速度和材料的剪切波速度之间的速度行进。

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