论文标题

粘弹性接触的速率依赖性粘附。第二部分:数值模型和滞后耗散

Rate-dependent adhesion of viscoelastic contacts. Part II: numerical model and hysteresis dissipation

论文作者

Violano, Guido, Chateauminois, Antoine, Afferrante, Luciano

论文摘要

在本文中,我们提出了一个数值模型,以描述“刚性”球形凹痕和粘弹性粗糙基板之间的粘合剂正常接触。该模型在假设粘弹性损失位于(微) - 接触线处的假设是耗散过程。然后将数值预测与实验测量值进行比较,实验测量表明粘附滞后很强,主要是由于拉力过程中发生的粘性能量耗散。接触模型令人满意地描述了这种磁滞,该模型可以将材料耗散引起的能量损失与弹性不稳定性引起的粘附滞后作用。我们的分析表明,脱离表面所需的拉力力受到分离率和RMS粗糙度振幅的强烈影响,但几乎不受卸载启动的最大负载的影响。此外,在从光滑到粗糙接触的移动时观察到的边界线的增加,分隔接触和非接触区域,会忽略地影响粘性耗散。这种增加的意义要比接触面积的减少少得多,因此,这是管理有效表面能量强大下降的主要参数。

In this paper, we propose a numerical model to describe the adhesive normal contact between a "rigid" spherical indenter and a viscoelastic rough substrate. The model accounts for dissipative process under the assumption that viscoelastic losses are localized at the (micro)-contact lines. Numerical predictions are then compared with experimental measurements, which show a strong adhesion hysteresis mostly due to viscous energy dissipation occurring during pull-off. This hysteresis is satisfactorily described by the contact model which allows to distinguish the energy loss due to material dissipation from the adhesion hysteresis due to elastic instability. Our analysis shows that the pull-off force required to detach the surfaces is strongly influenced by the detachment rate and the rms roughness amplitude, but it is almost unaffected by the maximum load from which unloading starts. Moreover, the increase in the boundary line separating contact and non-contact regions, observed when moving from smooth to rough contacts, negligibly affects the viscous dissipation. Such increase is much less significant than the reduction in contact area, which therefore is the main parameter governing the strong decrease in the effective surface energy.

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