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Debonding between coating and substrate due to rolling-sliding contact

机译:滚动接触导致涂层与基材之间的脱胶

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摘要

Rolling-sliding contact of layered elastic solid is an important technical issue, since surfaces are often subjected to contact stresses. Generally, elastic surfaces are coated to increase wear resistance of the materials. However, coating materials sometimes debonds from substrate due to tangential and normal forces acting on the surface. Because of these forces, or existing bonding faults, cracks form between coating and substrate. If these forces are applied continuously, the crack propagates resulting in dehonding. In this study, a numerical solution is applied to interface cracking. The variations of the stress intensity factors (K_Ⅰ, K_Ⅱ) with load position are obtained for various cases such as different combinations material of coating layer and substrate and changes in the coefficient of friction on the surface. Effects of the combination of the materials and the coefficient of friction on the stress intensity factors are discussed. The direction of the propagation of interface crack is also examined.
机译:层状弹性固体的滚动接触是一个重要的技术问题,因为表面经常承受接触应力。通常,涂覆弹性表面以增加材料的耐磨性。但是,由于作用在表面上的切向力和法向力,涂料有时会从基材上剥离。由于这些力或现有的粘结故障,在涂层和基材之间会形成裂纹。如果连续施加这些力,则裂纹会扩展,从而导致脱落。在这项研究中,数值解被应用于界面裂纹。在不同情况下,如涂层和基体的组合材料不同以及表面摩擦系数的变化,得出了应力强度因子(K_Ⅰ,K_Ⅱ)随载荷位置的变化。讨论了材料和摩擦系数的组合对应力强度因子的影响。还检查了界面裂纹扩展的方向。

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