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Dynamic sliding of frictionally held bimaterial interfaces subjected to impact shear loading

机译:承受摩擦剪切载荷的摩擦保持双材料界面的动态滑动

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摘要

The fast frictional sliding along an incoherent interface of a bimaterial system composed of a Homalite and a steel plate is studied experimentally in a microsecond time-scale. The plates are held together by a static uniform compressive pre-stress while dynamic sliding is initiated by asymmetric impact. The full-field technique of dynamic photoelasticity is simultaneously used with a local technique of velocimetry based on laser interferometry. In the case where the impact loading is applied to the Homalite plate, a shear Mach line originates from a disturbance propagating along the interface supersonically with respect to the dilatational wave speed of Homalite and it crosses the P-wave front. The sliding starts well behind the P-wave front in Homalite and it propagates with a supershear speed with respect to Homalite. A fast interface wave and a wrinkle-like opening pulse (detachment wave) travelling along the interface are observed. When the impact loading is applied to the steel plate, the local sliding velocity measurement reveals that sliding initiates with the arrival of the P-wave front in the steel plate.
机译:在微秒级的时间范围内,实验研究了沿着由Homalite和钢板组成的双材料系统非相干界面的快速摩擦滑动。板块通过静态均匀的压缩预应力保持在一起,而动态滑动则通过不对称冲击而开始。动态光弹性的全场技术与基于激光干涉法的测速局部技术同时使用。在冲击载荷施加于霍姆石板上的情况下,剪切马赫线源自于相对于霍姆石的膨胀波速度沿界面超音波传播的扰动,并且其横穿P波前。滑动开始于Homalite的P波前缘之后,并且相对于Homalite以超剪切速度传播。观察到快速的界面波和沿着界面传播的皱纹状的张开脉冲(脱离波)。当冲击载荷施加到钢板上时,局部滑动速度测量表明,滑动是随着P波波前到达钢板而开始的。

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