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Elastic-plastic adhesive contact of non-Gaussian rough surfaces

机译:非高斯粗糙表面的弹塑性粘合剂接触

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The paper describes an analysis of adhesion at the contact between non-Gaussian rough surfaces using the Weibull distribution with skewness as the key parameter to characterize asymmetry. The analysis uses an improved elastic-plastic model of contact deformation that is based on accurate Finite Element Analysis (FEA) of an elastic-plastic single asperity contact. Large range of interference values is considered starting from fully elastic through elastic-plastic to fully plastic regime of contacting asperities. The well-established elastic and plastic adhesion indices are used to consider the different conditions that arise as a result of varying load and material parameters. The loading and unloading behaviour for different combinations of the adhesion indices and skewness values are obtained as functions of mean separation between the surfaces. Transitional values of adhesion indices and skewness at which the influence of surface forces becomes insignificant are found to depend on material and surface parameters. Comparison with studies using previous elastic-plastic model that was based on some arbitrary assumptions shows significant differences in loading behaviour.
机译:本文使用以偏度为关键的韦伯分布作为表征不对称性的关键参数,对非高斯粗糙表面之间的接触处的粘附力进行了分析。该分析使用了改进的接触变形弹塑性模型,该模型基于弹塑性单粗糙接触的精确有限元分析(FEA)。从完全弹性到弹塑性再到完全塑性的接触粗糙区域,应考虑大范围的干扰值。公认的弹性和塑性粘合指数用于考虑由于载荷和材料参数变化而产生的不同条件。获得粘附指数和偏度值的不同组合的加载和卸载行为,作为表面之间平均间距的函数。发现表面力影响不明显的粘合指数和偏度的过渡值取决于材料和表面参数。与使用先前基于一些任意假设的弹塑性模型的研究进行的比较显示,载荷行为存在显着差异。

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