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A Novel Micro-Contact Stiffness Model for the Grinding Surfaces of Steel Materials Based on Cosine Curve-Shaped Asperities

机译:基于余弦曲线形凹凸的钢材磨削表面微接触刚度模型

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摘要

Contact stiffness is an important parameter for describing the contact behavior of rough surfaces. In this study, to more accurately describe the contact stiffness between grinding surfaces of steel materials, a novel microcontact stiffness model is proposed. In this model, the novel cosine curve-shaped asperity and the conventional Gauss distribution are used to develop a simulated rough surface. Based on this simulated rough surface, the analytical expression of the microcontact stiffness model is obtained using contact mechanics theory and statistical theory. Finally, an experimental study of the contact stiffness of rough surfaces was conducted on different steel materials of various levels of roughness. The comparison results reveal that the prediction results of the present model show the same trend as that of the experimental results; the contact stiffness increases with increasing contact pressure. Under the same contact pressure, the present model is closer to the experimental results than the already existing elastic–plastic contact (CEB) and finite-element microcontact stiffness (KE) models, whose hypothesis of a single asperity is hemispherical. In addition, under the same contact pressure, the contact stiffness of the same steel material decreases with increasing roughness, whereas the contact stiffness values of different steel materials under the same roughness show only small differences. The correctness and accuracy of the present model can be demonstrated by analyzing the measured asperity geometry of steel materials and experimental results.
机译:接触刚度是描述粗糙表面接触行为的重要参数。在这项研究中,为了更准确地描述钢材磨削表面之间的接触刚度,提出了一种新颖的微接触刚度模型。在此模型中,使用新颖的余弦曲线形凹凸和常规的高斯分布来开发模拟的粗糙表面。基于这个模拟的粗糙表面,使用接触力学理论和统计理论获得了微接触刚度模型的解析表达式。最后,在不同粗糙度水平的不同钢材上进行了粗糙表面接触刚度的实验研究。比较结果表明,该模型的预测结果与实验结果具有相同的趋势。接触刚度随着接触压力的增加而增加。在相同的接触压力下,本模型比已有的弹塑性接触(CEB)模型和有限元微接触刚度(KE)模型更接近实验结果,后者的单个粗糙面假设为半球形。此外,在相同的接触压力下,相同钢材的接触刚度随粗糙度的增加而降低,而不同钢材在相同粗糙度下的接触刚度值仅显示出很小的差异。该模型的正确性和准确性可以通过分析所测量的钢材的粗糙几何形状和实验结果来证明。

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