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Elastic-plastic spherical contact under combined normal and tangential loading in full stick

机译:法向和切向载荷相结合的弹塑性球形接触

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摘要

The behavior of an elastic-plastic contact between a deformable sphere and a rigid flat under combined normal and tangential loading with full stick contact condition is investigated theoretically. Sliding inception is treated as a plastic yield failure mechanism, which allows static friction modeling under highly adhesive conditions. Several contact parameters such as: junction tangential stiffness, static friction force and static friction coefficient are extensively investigated. The phenomenon of junction growth and the evolution of the plastic zone in the contact region are briefly described. It is found that at low normal dimensionless loads the static friction coefficient decreases sharply with increasing normal load, in breach with the classical laws of friction. As the normal load further increases the static friction coefficient approaches a constant value that is about 0.3 for many material properties combinations.
机译:从理论上研究了在完整的棒接触条件下,在法向和切向载荷相结合的条件下,可变形球体与刚性平面之间的弹塑性接触行为。滑动开始被视为塑性屈服失效机制,该机制允许在高度粘合条件下进行静摩擦建模。广泛研究了几种接触参数,例如:结点切向刚度,静摩擦力和静摩擦系数。简要描述了结生长现象和接触区域塑性区的演变。发现在低法向无量纲载荷下,静摩擦系数随着法向载荷的增加而急剧下降,这与经典的摩擦定律相反。随着法向载荷的进一步增加,对于许多材料特性组合,静摩擦系数都接近约0.3的恒定值。

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