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Contact Mechanics and Induced Hysteresis at Oscillatory Contacts with Adhesion

机译:具有粘附力的振荡接触的接触力学和感应磁滞

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摘要

In this article, we develop a phenomenological model for the contact mechanics and the dissipation mechanism at an oscillatory contact with adhesion. We consider an inflated spherical membrane held between two large rigid static/oscillating parallel flat plates. For the contact problem, the critical energy release rate is used to determine the detachment of the membrane from the plate surface. An analytical relation between the adhesion energy and the adhesive bond force is established. For the geometry considered, we obtain a relation between the adhesive bond force (and hence also the energy release rate) and the displacement of the plate at equilibrium without any external force. An interesting and counterintuitive stretch-induced softening phenomenon (in terms of the equilibrium displacement) is observed in certain material models. In the oscillatory contact problem, the plates are assumed to provide a kinematic oscillating boundary condition. The effective energy dissipated through hysteresis during a period of oscillation of the plate against the membrane is determined. The effect of initial inflation on energy dissipation is studied.
机译:在本文中,我们开发了一种与粘着振荡接触时的接触力学和耗散机理的现象学模型。我们考虑了一个充气的球形隔膜,该隔膜被固定在两个大的刚性静/振动平行平板之间。对于接触问题,临界能量释放速率用于确定膜与板表面的分离。建立了粘合能与粘合力之间的解析关系。对于所考虑的几何形状,我们获得了在没有任何外力的情况下,胶粘力(以及能量释放速率)与平衡板位移之间的关系。在某些材料模型中,观察到了有趣且与直觉相反的拉伸诱发的软化现象(就平衡位移而言)。在振荡接触问题中,假定板提供了运动学振荡边界条件。确定在板相对于膜的振荡期间通过磁滞耗散的有效能量。研究了初始膨胀对能量耗散的影响。

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