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Misfit effects in adhesion calculations

机译:粘附力计算中的不当影响

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The work of adhesion of bimaterial interfaces is commonly computed using quantum mechanical methods in which the two materials are strained into coherency. There is no relaxation of the coherency by the formation of an array of interfacial misfit dislocations, contrary to what is commonly observed for essentially all systems ether than very thin films. In this paper, we investigate the errors introduced into the work of adhesion associated with the assumption of coherency. Series of atomistic simulations in two and three dimensions are performed using a simple Lennard-Jones-type model potential. We demonstrate that the assumption of coherency introduces errors that increase rapidly with misfit (for small misfit) and can easily be of the order of several tens of percent. We trace the source of these errors to the neglect of the elastic fields of misfit dislocations and to the variation in the number of bonds per unit interfacial area with misfit when coherency is assumed. Suggestions are made to minimize and/or correct for this error. [References: 25]
机译:双材料界面的粘合功通常使用量子力学方法计算,其中两种材料被拉成相干。通过形成一系列界面失配位错,不会使相干性松弛,这与基本上所有系统以太膜比非常薄的膜通常观察到的情况相反。在本文中,我们调查与一致性假设有关的,引入到粘合工作中的错误。使用简单的Lennard-Jones型模型势能进行二维和三维的一系列原子模拟。我们证明了一致性的假设会引入误差,该误差会随着失配而迅速增加(对于较小的失配),并且很容易达到百分之几十的数量级。我们将这些错误的根源归因于错配位错的弹性场的忽略以及当假设相干性时错配错位的单位界面区域的键数变化。建议最小化和/或纠正此错误。 [参考:25]

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