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Closed-Form Equations for Contact Force and Moment in Elastic Contact of Rough Surfaces

机译:粗糙表面弹性接触中接触力和弯矩的闭式方程

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摘要

It is reasonable to expect that, when two nominally flat rough surfaces are brought into contact by an applied resultant force, they must support, in addition to the compressive load, an induced moment. The existence of a net applied moment would imply noneven distribution of contact force so that there are more asperities in contact over one region of the nominal area. In this paper, we consider the contact between two rectangular rough surfaces that provide normal and tangential contact force as well as contact moment to counteract the net moment imposed by the applied forces. The surfaces are permitted to develop slight angular misalignment, and thereby contact moment is derived. Through this scheme, it is possible to also define elastic contribution to friction since the half-plane tangential contact force on one side of an asperity is no longer balanced by the half-plane tangential force component on the opposite side. The elastic friction force, however, is shown to be of a much smaller order than the contact normal force. Approximate closed-form equations are found for contact force and moment for the contact of rough surfaces.
机译:可以合理预期的是,当两个名义上平坦的粗糙表面通过施加的合力接触时,除了压缩负载外,它们还必须支撑感应力矩。施加的净力矩的存在意味着接触力的分布不均匀,因此在标称面积的一个区域上接触时会有更多的凹凸。在本文中,我们考虑了两个矩形粗糙表面之间的接触,该表面提供了法向和切向接触力以及接触力矩,以抵消所施加的力所施加的净力矩。允许表面出现轻微的角度偏差,从而得出接触力矩。通过该方案,由于在粗糙的一侧上的半平面切向接触力不再由在相反侧上的半平面切向力分量平衡,因此还可以定义对摩擦的弹性贡献。然而,弹性摩擦力被显示为比接触法向力小得多。对于粗糙表面的接触力和力矩,找到了近似的封闭形式方程。

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  • 来源
    《Modelling and simulation in engineering》 |2011年第2期|p.24.1-24.14|共14页
  • 作者

    Ali Sepehri; Kambiz Farhang;

  • 作者单位

    Department of Mechanical Engineering and Energy Processes, Southern Illinois University Carbondale,Carbondale, IL 62901, USA;

    Department of Mechanical Engineering and Energy Processes, Southern Illinois University Carbondale,Carbondale, IL 62901, USA;

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