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A MODEL FOR JUNCTION GROWTH OF A SPHERICAL CONTACT

机译:球形触点结长的模型

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摘要

The evolution of the contact area (junction growth) of an elastic-plastic preloaded spherical contact subjected to an additional tangential loading is investigated theoretically. The normal preloading leads to the formation of a junction that can support additional tangential load. A gradual increase of this tangential load, while the normal preload remains constant, can incept plasticity of the contact zone in case the initial normal preload was elastic or enhance an existing one, thus lowering the tangential stiffness of the junction. Finally, the tangential stiffness approaches zero which corresponds to sliding inception (i.e. loss of stability). The evolution of the contact area during the tangential loading prior to sliding inception reveals an essential junction growth which depends on the magnitude of the normal preload. The mechanism causing this junction growth seems to be new points of the sphere surface, which originally lay outside of the initial contact area that are coming into contact with the rigid flat during the tangential loading. A theoretical relation is developed for the dependence of junction growth on the normal preload, which correlates well with some limited experiments.
机译:理论上研究了承受附加切向载荷的弹塑性预加载球形接触的接触面积(结生长)的演变。正常的预紧力导致形成可以支撑额外切向载荷的接合点。在法向预载荷保持恒定的同时,此切向载荷的逐渐增加会在初始法向预载荷具有弹性或增强现有预应力的情况下接受接触区的塑性,从而降低连接处的切向刚度。最后,切向刚度接近于零,这对应于滑动开始(即,稳定性的损失)。在滑动开始之前的切向载荷过程中,接触面积的变化揭示了一个重要的结点增长,这取决于法向预载荷的大小。导致此接合点增长的机制似乎是球体表面的新点,它们最初位于初始接触区域之外,并且在切向载荷期间与刚性平面接触。建立了一个理论关系,用于结生长对正常预载的依赖性,这与一些有限的实验很好地相关。

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