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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Particle Velocimetry and Photoelasticity Applied to the Study of Dynamic Sliding Along Frictionally-Held Bimaterial Interfaces: Techniques and Feasibility
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Particle Velocimetry and Photoelasticity Applied to the Study of Dynamic Sliding Along Frictionally-Held Bimaterial Interfaces: Techniques and Feasibility

机译:粒子测速、光测弹性学应用研究动态滑动Frictionally-Held Bimaterial接口:技术和可行性

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摘要

A laser interferometry-based technique was developed to locally measure the in-plane components of particle velocity in dynamic experiments. This technique was applied in the experimental investigation of dynamic sliding along the incoherent (frictional) interface of a Homalite-steel bimaterial structure. The bimaterial specimen was subjected to uniform compressive stress and impact-induced shear loading. The evolution of the dynamic stress field was recorded by high-speed photography in conjunction with dynamic photoelasticity. The combination of the full-field technique of photoelasticity with the local technique of velocimetry was proven to be a very powerful tool in the investigation of dynamic sliding. A relatively broad loading wave with an eye-like structure emanated from the interface. The particle velocity measurements established that sliding started behind the eye-like fringe pattern. It propagated with supershear speed with respect to Homalite. A shear Mach line originating from the sliding tip is visible in the photoelastic images. A vertical particle velocity measurement revealed the existence of a wrinkle-like pulse traveling along the bimaterial interface. The wrinkle-like pulse followed the initial shear rupture tip and propagated at a specific subshear speed.
机译:激光interferometry-based技术开发本地测量平面粒子速度的动态组件实验。实验调查的动态滑动沿着语无伦次(摩擦)的接口Homalite-steel bimaterial结构。bimaterial标本受到制服压应力和冲击造成的剪切装载。字段被高速摄影记录结合动态光测弹性学。藉由此技术的组合光测弹性学与当地的技术测速是被证明是一个非常强大的工具调查的动态滑动。相对广泛的加载波像结构的界面,传出。粒子速度测量证实滑动开始像背后的边缘模式。Homalite。来自滑动提示是可见的光弹性图像。速度测量显示的存在长皱纹的过程和脉冲沿着bimaterial旅行接口。初始剪切断裂和传播具体subshear速度。

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