论文标题

粘弹性接触的速率依赖性粘附。第一部分:与橡胶的型号多损害接触中的接触区域和接触线速度

Rate-dependent adhesion of viscoelastic contacts. Part I: contact area and contact line velocity within model multi-asperity contacts with rubber

论文作者

Violano, Guido, Chateauminois, Antoine, Afferrante, Luciano

论文摘要

在这项工作中,我们研究了从粘弹性有机硅底物脱离具有微观耐受性的粘弹性硅胶基板时所涉及的耗散效应。作为基线,首先研究了单个绿色,玻璃透镜与光滑的聚(二甲基硅氧烷)(PDMS)橡胶之间的毫米大小的接触的拉动,首先是根据强加的脱离速度的函数进行研究的。从触点半径A(t)和卸载过程中的正常载荷的测量值中,应变率G速率G对接触线VC = DA/DT的速度的依赖性在假设粘弹性耗散位于接触边缘的假设下确定。这些数据已纳入Muller的模型(V.M. Muller J Adh Sci Tech(1999)13 999-1016),以预测接触大小的时间依赖性。类似的推出实验是使用具有规定高度分布的球形微质量图案的相同PDMS基板进行的。从微接触的原位光学测量值中,为接触半径A和接触线速度VC确定了缩放定律。根据观察到的宏观和微观触点之间的相似性,开发了数值解决方案,以预测卸载过程中接触半径的减小。

In this work, we investigate dissipative effects involved during the detachment of a smooth spherical glass probe from a viscoelastic silicone substrate patterned with micro-asperities. As a baseline, the pull-off of a single asperity, millimeter-sized contact between a glass lens and a smooth poly(dimethylsiloxane) (PDMS) rubber is first investigated as a function of the imposed detachment velocity. From a measurement of the contact radius a(t) and normal load during unloading, the dependence of the strain energy relase rate G on the velocity of the contact line vc = da/dt is determined under the assumption that viscoelastic dissipation is localized at the edge of the contact. These data are incorporated into Muller's model (V.M. Muller J Adh Sci Tech (1999) 13 999-1016) in order to predict the time-dependence of the contact size. Similar pull-off experiments are carried out with the same PDMS substrate patterned with spherical micro-asperities with a prescribed height distribution. From in situ optical measurements of the micro-contacts, scaling laws are identified for the contact radius a and the contact line velocity vc. On the basis of the observed similarity between macro and microscale contacts, a numerical solution is developed to predict the reduction of the contact radius during unloading.

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