首页> 外文期刊>International Journal of Solids and Structures >Adhesive contact of an elastic semi-infinite solid with a rigid rough surface: Strength of adhesion and contact instabilities
【24h】

Adhesive contact of an elastic semi-infinite solid with a rigid rough surface: Strength of adhesion and contact instabilities

机译:弹性半无限固体与刚性粗糙表面的粘接接触:粘接强度和接触不稳定性

获取原文
获取原文并翻译 | 示例
           

摘要

The effect of adhesion on the contact behavior of elastic rough surfaces is examined within the framework of the multi-asperity contact model of Greenwood and Williamson (1966), known as theGWmodel. Adhesive surface interaction is modeled by nonlinear springs with a force-displacement relation governed by the Lennard-Jones (LJ) potential. Constitutive models are presented for contact systems characterized by low and high Tabor parameters, exhibiting continuous (stable) and discontinuous (unstable) surface approach, respectively. Constitutive contact relations are obtained by integrating the force-distance relation derived from the LJ potential with a finite element analysis of single-asperity adhesive contact. These constitutive relations are then incorporated into theGWmodel, and the interfacial force and contact area of rough surfaces are numerically determined. The development of attractive and repulsive forces at the contact interface and the occurrence of instantaneous surface contact (jump-in instability) yield a three-stage evolution of the contact area. It is shown that the adhesion parameter introduced by Fuller and Tabor (1975)governs the strength of adhesion of contact systems with a high Tabor parameter, whereas the strength of adhesion of contact systems with a low Tabor parameter is characterized by a new adhesion parameter, defined as the ratio of the surface roughness to the equilibrium interatomic distance. Applicable ranges of aforementioned adhesion parameters are interpreted in terms of the effective surface separation, obtained as the sum of the effective distance range of the adhesion force and the elastic deformation induced by adhesion. Adhesive strength of rough surfaces in the entire range of the Tabor parameter is discussed in terms of a generalized adhesion parameter, defined as the ratio of the surface roughness to the effective surface separation.
机译:在Greenwood和Williamson(1966)的多粗糙接触模型(称为GW模型)的框架内,研究了粘合对弹性粗糙表面接触行为的影响。胶粘剂表面相互作用是通过非线性弹簧建模的,该弹簧具有受Lennard-Jones(LJ)势控制的力-位移关系。提出了针对具有低和高Tabor参数的接触系统的本构模型,分别显示了连续(稳定)和不连续(不稳定)的表面方法。本构接触关系是通过将从LJ电位导出的力-距离关系与单孔胶粘剂接触的有限元分析相结合而获得的。然后将这些本构关系合并到GW模型中,并通过数值确定粗糙表面的界面力和接触面积。接触界面处吸引力和排斥力的发展以及瞬时表面接触的发生(跳入不稳定性)会导致接触区域的三个阶段演变。结果表明,Fuller和Tabor(1975)引入的附着力参数控制着具有高Tabor参数的接触系统的附着强度,而具有低Tabor参数的接触系统的附着强度具有新的附着力参数,定义为表面粗糙度与平衡原子间距离之比。前述粘合参数的适用范围是根据有效表面分离来解释的,该有效表面分离为粘合力的有效距离范围和由粘合引起的弹性变形的总和。在Tabor参数的整个范围内,粗糙表面的粘合强度将根据广义粘合参数进行讨论,广义粘合参数定义为表面粗糙度与有效表面间距的比值。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号