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CONTACT STIFFNESS OF NEW AND WORN SURFACES

机译:新的和破旧的表面的接触刚度

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The presence of surface texture/roughness on engineering surfaces results in contacts between surfaces being considerably more compliant than if the interfaces were smooth and flat. The inclusion of a local contact stiffness can be critical to the accurate analytical or computational modeling of mechanical contacts. We present measurements of contact stiffness for five pairs of freshly prepared and worn of steel surfaces. The worn surfaces variously contain surface glazes, oxide layers, subsurface cracks, inclusions and wear particles. Contact resonance frequencies between sample interfaces are measured at various applied pressures. With known modal masses, the contact stiffness is easily calculated and presented on a per unit area basis. For a given contact pair, the contact stiffness is nonlinear, increasing with nominal pressure and decreasing with increasing surface roughness. We compare these results with the Greenwood-Williamson (G-W) Theory of rough surface contact. The expected pressure and summit height dependencies are observed in the measured data. When there are wear particles within the contact, the stiffness is reduced when the underlying surfaces are very smooth. If the underlying surfaces are rough, the presence of wear particles have little effect on the contact stiffness.
机译:在工程表面上的表面纹理/粗糙度的存在导致表面之间的接触比界面平滑且平坦的曲线相当符合。包含局部接触刚度可能对机械触点的准确分析或计算建模至关重要。我们提供了钢表面的五对新建和磨损的接触刚度的测量。磨损的表面各种各样地包含表面玻璃,氧化物层,地下裂缝,夹杂物和磨损颗粒。在各种施加的压力下测量样品界面之间的接触谐振频率。具有已知的模态,易于计算接触刚度并按单位面积的基础呈现。对于给定的接触对,接触刚度是非线性的,随着标称压力的增加和随着表面粗糙度的增加而降低。我们将这些结果与Greenwood-Williamson(G-W)的粗糙表面接触理论进行比较。在测量数据中观察到预期的压力和峰值高度依赖性。当接触内的磨损颗粒时,当下面表面非常光滑时,刚度减小。如果底层表面粗糙,则磨损颗粒的存在对接触刚度几乎没有影响。

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