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Experimental and theoretical study on stick-slip behaviour of contact pair based on real contact state evolution

机译:基于真正接触状态演化的接触对粘滑行为的实验与理论研究

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It is an important subject to establish an accurate kinematic model with friction in mechanics, mechanical engineering and aerospace. Based on the principle of total reflection method, an experimental apparatus for dynamic observation of interface contact behavior is built for studying the evolution of contact state of transparent solid materials during stick slip motion. The displacement difference between the front- end and back-end of the slider in the contact pair stick-slip experiment is analyzed. The evolution of real contact area during stick-slip process is captured by the camera. It is found that in the stick stage, the center area with the largest contact strength in the contact area of interface asperity hardly moved. The displacement difference is mainly caused by the compression deformation of the slider and the micro slip in the local contact area. Based on the evolution rule of real contact area, the analytical model of massdamping-spring model considering stick-slip friction is established. The main contact parameters are determined by experimental identification, and the governing equation of the model is solved by the central difference method. Finally, the numerical results are compared with the experimental results to verify the effectiveness of the model. The model can qualitatively reflect the phenomenon of the displacement difference between the front-end and back-end of slider in stick-slip.
机译:它是建立一种准确的运动学模型,在机械,机械工程和航空航天中建立准确的运动模型。基于总反射方法的原理,建立了一种用于动态观察界面接触行为的实验装置,用于研究粘附运动期间透明固体材料的接触状态的演变。分析了接触对粘滑实验中滑块的前端和后端之间的位移差异。通过相机捕获粘滑过程中真实接触区域的演变。结果发现,在杆阶段,中心区域具有最大的接触强度在接触面积的界面凹凸不平。位移差异主要是由滑块的压缩变形和局部接触区域中的微滑引起的。基于真实接触区域的演化规则,建立了考虑粘滑摩擦的块状弹簧模型的分析模型。主要接触参数由实验识别确定,并且模型的控制方程通过中央差异法解决。最后,将数值结果与实验结果进行比较,以验证模型的有效性。该模型可以定性地反映滑块前端和后端之间的位移差异的现象。

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