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Adhesion clusters under shared linear loading: A stochastic analysis

机译:共享线性载荷下的黏附簇:随机分析

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摘要

We study the cooperative rupture of multiple adhesion bonds under shared linear loading. Simulations of the appropriate master equation are compared with numerical integration of a rate equation for the mean number of bonds and its scaling analysis. In general, force-accelerated rupture is rather abrupt. For small clusters and slow loading, large fluctuations occur regarding the timepoint of final rupture, but not the typical shape of the rupture trajectory. For vanishing rebinding, our numerical results confirm three scaling regimes predicted before for cluster lifetime as a function of loading rate. For finite rebinding, the intermediate loading regime becomes irrelevant, and a sequence of two new scaling laws can be identified in the slow loading regime.
机译:我们研究了在共同的线性载荷作用下多个粘附键的协同破裂。将适当的主方程的仿真与比率方程的数值积分的平均积分数目及其定标分析进行比较。通常,力加速破裂相当突然。对于小簇和缓慢加载,关于最终破裂的时间点会发生较大的波动,而不是破裂轨迹的典型形状。对于消失的重新绑定,我们的数值结果证实了之前针对簇寿命预测的三种缩放机制,它们是加载速率的函数。对于有限重新绑定,中间加载方式变得无关紧要,并且可以在慢加载方式中确定两个新的缩放定律的序列。

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