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首页> 外文期刊>Tribology Transactions >The Effect of Scale-Dependent Hardness on Elasto-Plastic Asperity Contact between Rough Surfaces
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The Effect of Scale-Dependent Hardness on Elasto-Plastic Asperity Contact between Rough Surfaces

机译:尺度相关硬度对粗糙表面之间弹塑性粗糙接触的影响

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Statistical methods are used to model elasto-plastic contact between two rough surfaces using a recent finite element model of elasto-plastic hemispherical contact and also recent advances in strain gradient modeling. The elasto-plastic hemispherical contact model used to model individual asperities accounts for a varying hardness effect due to deformation of the contact geometry that has been documented by other works. The strain gradient model accounts for changes in hardness due to scaling effects, The contact between surfaces with hypothetical material and surface properties, such as the elastic modulus, yield strength, and roughness are modeled. A model is also constructed to consider a variable asperity contact radius to evaluate if the strain gradient model will affect it differently. The models produce predictions for contact area, contact force, and surface separation. The strain gradient effects decrease the real area of contact and increase the average contact load in comparison to the model without these effects. The strain gradient model seems to have a larger influence on the predictions of contact load and area than does considering a variable asperity contact radius for the cases considered in this work.
机译:使用最新的弹塑性半球接触有限元模型以及应变梯度建模的最新进展,使用统计方法对两个粗糙表面之间的弹塑性接触进行建模。用于建模单个凹凸的弹塑性半球形接触模型说明了由于接触几何形状变形而导致的变化的硬度效应,该效应已被其他工作证明。应变梯度模型考虑了因缩放效应而导致的硬度变化。对具有假定材料和表面特性(例如弹性模量,屈服强度和粗糙度)的表面之间的接触进行了建模。还构建了一个模型,以考虑可变的粗糙接触半径,以评估应变梯度模型是否会对它产生不同的影响。该模型产生接触面积,接触力和表面分离的预测。与没有这些影响的模型相比,应变梯度效应会减小实际的接触面积并增加平均接触载荷。应变梯度模型似乎对接触载荷和面积的预测影响更大,而对于本研究中考虑的情况而言,应变梯度模型考虑的是可变的粗糙接触半径。

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