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Experimental study of dynamic frictional sliding modes along incoherent interfaces

机译:非相干界面动摩擦滑模的实验研究

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摘要

Dynamic sliding along incoherent (frictional) interfaces is investigated experimentally in a microsecond time scale. A bimaterial system comprised of Homalite and steel plates and a homogeneous system consisting of two Homalite plates are considered. The plates are held together by a uniform compressive stress while dynamic sliding is initiated by an impact-induced shear loading. The evolution of maximum shear stress contours is recorded by high-speed photography in conjunction with dynamic photoelasticity. Simultaneously with photoelasticity, a newly-developed technique based on laser interferometry is employed to locally measure the sliding speed at the interface.The response of the Homalite-steel bimaterial system differs according to whether the impact loading is applied to the Homalite plate or to the steel plate. In the first case, a disturbance traveling along the interface at a constant speed close to the Rayleigh wave speed of steel generates a shear Mach line crossing the P-wave front. Sliding initiates behind the P-wave front in the Homalite plate and it propagates at a supershear speed with respect to the shear wave speed of Homalite. A disturbance, traveling at constant speeds between the shear wave speed and the longitudinal wave speed of Homalite, appears behind the sliding tip. Wrinkle-like opening pulses, propagating along the bimaterial interface at a constant speed between the Rayleigh wave and the shear wave speed of Homalite, are also observed. When the impact loading is applied to the steel plate, sliding at a given point initiates with the arrival of the P-wave front there, so that the rupture is sonic with respect to steel and supersonic with respect to Homalite.In all the experiments performed on the bimaterial structure (Homalite-steel), sliding always occurred in a crack-like mode. In the case of a homogeneous system of Homalite plates however, direct physical evidence of different modes of sliding is recorded. Crack-like sliding, pulse-like sliding and mixed mode sliding in the form of pulses followed by a crack are discovered. Supersonic trailing pulses are also recorded. Behind the sliding tip, wrinkle-like opening pulses are developed for a wide range of impact speeds and confining stresses.
机译:沿不连贯(摩擦)界面动态滑动的实验时间为微秒。考虑了由Homalite和钢板组成的双材料系统以及由两个Homalite板组成的均质系统。板通过均匀的压应力保持在一起,而动态滑动则通过冲击引起的剪切载荷来启动。通过高速摄影结合动态光弹性记录最大剪切应力轮廓的变化。与光弹性同时,采用基于激光干涉测量技术的新技术来局部测量界面处的滑动速度。根据冲击载荷是施加到霍马石板上还是施加到冲击板上,荷马石-钢双材料系统的响应会有所不同。铁盘子。在第一种情况下,沿着界面以接近钢的瑞利波速度的恒定速度传播的扰动会产生横穿P波前沿的剪切马赫线。滑动始于霍马特板中的P波前缘之后,并且相对于霍马特的剪切波速度以超剪切速度传播。在滑动尖端的后面出现了扰动,该扰动以恒定的速度在剪切波速度和Homalite的纵向波速度之间传播。还观察到在双材料界面上以霍利石的瑞利波和切变波速度之间的恒定速度传播的皱纹状打开脉冲。当将冲击载荷施加到钢板上时,在给定点处的滑动会随着P波波前的到达而开始,从而使破裂相对于钢为声波,而相对于硬铁矿为超音速。在双材料结构(Homalite钢)上,滑动总是以裂纹状发生。然而,在均质的Homalite板系统中,记录了不同滑动方式的直接物理证据。发现了以脉冲形式出现裂缝的裂纹状滑动,脉冲状滑动和混合模式滑动。超音速尾随脉冲也被记录下来。在滑动尖端的后面,出现了皱纹状的张开脉冲,适用于各种冲击速度和限制应力。

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    Lykotrafitis George;

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  • 年度 2006
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