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Influence of interface steps on the buckle delamination of thin films

机译:界面台阶对薄膜屈曲脱层的影响

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The mechanics of thin film buckle delamination has been widely studied, with the assumption of perfect (flat) interfaces. This work is reporting a study of the evolution of an initially straight-sided buckle propagating in a thin film lying on a substrate in the presence of a step at the film/substrate interface, resulting from the plastic deformation of the substrate. Assuming the interface toughness depends on the mode mixity, it has been found using finite elements calculations that depending on the step orientation and height, the initially straight propagation of the buckle can be perturbed so that the buckle eventually propagates along the step. The critical parameters (orientation and height) of the step have been then determined, which characterizes the transition from a straight propagation perpendicular to the compression axis to a propagation along the inclined step. A "behavior" diagram has been finally presented for the buckle, where the propagation, either perpendicularly to the step or along it have been displayed versus the step height and orientation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:薄膜扣环脱层的机理已经得到了广泛研究,并假设界面完美(平坦)。这项工作报道了对由于基底的塑性变形而在膜/基底界面处存在台阶的情况下,最初的直边带扣在位于基底上的薄膜中传播的演变的研究。假设界面韧性取决于模式混合,使用有限元计算已发现,取决于台阶的方向和高度,扣环的最初笔直传播会受到干扰,因此扣环最终会沿着台阶传播。然后确定了台阶的关键参数(方向和高度),该参数表征了从垂直于压缩轴的笔直传播到沿倾斜台阶的传播的过渡。最后给出了带扣的“行为”图,其中显示了垂直于台阶或沿台阶的传播与台阶高度和方向的关系。 (C)2019 Elsevier Ltd.保留所有权利。

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