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Identification of Contact Stress on Non-conforming Contact Interface Based on Local Displacement Measurement

机译:基于局部位移测量的非符合接触界面的接触应力识别

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摘要

The experimental identification of contact stress is important in many areas. In this paper, we present an inverse method for identifying the stress distribution on non-conforming contact interface based on local displacement measurements. A mechanical model is established to formulate the relationship between the contact stress and the displacement field near the interface. An optical method, named segmentation-aided digital image correlation is utilized to measure the near-field displacement. The contact stress is then inversed by finding the optimal model that best matches the measurements. Three model parameters, i.e., the contact center, contact length and maximum contact stress, are identified through an optimization procedure. The parameters are initialized by an image processing method and then iteratively refined by minimizing the discrepancy between the model predictions and the measured displacements. Both simulated and real-world experiments are conducted and the results verify the effectiveness of the proposed method.
机译:接触应力的实验识别在许多领域很重要。在本文中,我们提出了一种逆方法,用于基于局部位移测量来识别非符合触点界面上的应力分布的逆方法。建立机械模型以制定接触应力与界面附近的接触应力与位移场之间的关系。一种名为分段辅助数字图像相关的光学方法来测量近场位移。然后通过找到最佳匹配测量的最佳模型来颠倒接触应力。通过优化程序识别三种模型参数,即接触中心,接触长度和最大接触应力。通过图像处理方法初始化参数,然后通过最小化模型预测和测量的位移之间的差异来迭代地改进。进行模拟和实际实验,并进行结果验证了该方法的有效性。

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