Abstract Effect of surface tension on the behavior of adhesive contact based on Lennard-Jones potential law
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Effect of surface tension on the behavior of adhesive contact based on Lennard-Jones potential law

机译:基于Lennard-Jones势定律的表面张力对胶粘剂接触行为的影响

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AbstractThe present study explores the effect of surface tension on adhesive contact behavior where the adhesion is interpreted by long-range intermolecular forces. The adhesive contact is analyzed using the equivalent system of a rigid sphere and an elastic half space covered by a membrane with surface tension. The long-range intermolecular forces are modeled with the Lennard‒Jones (L‒J) potential law. The current adhesive contact issue can be represented by a nonlinear integral equation, which can be solved by Newton‒Raphson method. In contrast to previous studies which consider intermolecular forces as short-range, the present study reveals more details of the features of adhesive contact with surface tension, in terms of jump instabilities, pull-off forces, pressure distribution within the contact area, etc. The transition of the pull-off force is not only consistent with previous studies, but also presents some new interesting characteristics in the current situation.
机译: 摘要 本研究探讨了表面张力对胶粘剂接触行为的影响,其中胶粘剂是通过远距离分子间力来解释的。使用刚性球体和由具有表面张力的膜覆盖的弹性半空间的等效系统分析粘合剂接触。远程分子间力是用Lennard‒Jones(L‒J)势定律建模的。当前的胶粘剂接触问题可以用非线性积分方程表示,可以用牛顿·拉夫森方法求解。与以前的将分子间作用力视为短距离的研究相反,本研究从跳变不稳定性,拉脱力,接触区域内的压力分布等方面揭示了粘合剂与表面张力接触的特征的更多细节。拉力的转变不仅与以前的研究一致,而且在当前情况下也呈现出一些有趣的新特征。

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