首页> 外文会议>STLE/ASME international joint tribology conference 2010 >A CONTINUUM MECHANICS MODEL OF ADHESIVE CONTACT BASED ON THE LENNARD-JONES POTENTIAL
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A CONTINUUM MECHANICS MODEL OF ADHESIVE CONTACT BASED ON THE LENNARD-JONES POTENTIAL

机译:基于Lennard-Jones势的粘着接触的连续力学模型

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A continuum model of adhesive interaction between elastic surfaces is presented. Surface interaction between two elastic spheres is modeled by the Lennard-Jones (L-J) potential. The analysis is based on the equivalent system of a rigid sphere of reduced radius in close proximity with an elastic half-space of effective elastic modulus. The critical gap at the instant of the "jump-in" and "jump-out" contact instabilities is determined by an elastic solution of the half-space surface displacement. A finite element model, in which surface interaction is modeled by nonlinear springs of a prescribed force-displacement governed by the L-J potential, is also used to analyze adhesive surface interaction. The analytical model is validated by finite element results of the critical central gap at the instant of jump-in and jump-out instabilities for different values of the Tabor parameter.
机译:提出了弹性表面之间的粘合剂相互作用的连续模型。两个弹性球体之间的表面相互作用由Lennard-Jones(L-J)势建模。该分析基于半径减小的刚性球体与有效弹性模量的弹性半空间非常接近的等效系统。 “跳入”和“跳出”接触不稳定性瞬间的临界间隙由半空间表面位移的弹性解确定。还使用有限元模型来分析胶粘剂表面的相互作用,在该有限元模型中,表面相互作用是通过由L-J电位控制的规定力-位移的非线性弹簧来建模的。对于Tabor参数的不同值,在跳入和跳出不稳定性瞬间的关键中心间隙的有限元结果验证了该分析模型的有效性。

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