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On influence of substrate compliance on delamination and buckling of coatings

机译:基质依从性对涂层分层和屈曲的影响

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Problems related to delamination of coatings from substrates and their buckling are widely investigated due to importance of the problem for application in industry, particularly in micro- and nano-electronics and biology. The problem was addressed by many authors by using both analytical and numerical approaches. Here the model is developed that treats the delaminated part of the coating as a plate with a special attention given to the boundary conditions, which are supposed in the form of the generalized elastic clamping, i.e. it is supposed that components of displacements and angle of rotation at the point of clamping are related to the acting total force and total moment by means of 3×3 matrix of elastic coefficients. Knowing the coefficients of this matrix allows determining parameters of buckling such as the critical stress, energy release rate due to further delamination, amplitude of buckling. A few variants of analytical models to determine the coefficients of this 3×3 matrix were considered and discussed. Both the cases of isotropic and anisotropic coating and substrate are considered. The solution for some matrix coefficients was obtained with the help of Fourier transform and Wiener-Hopf technique. On the base of the obtained solution it is shown that the difference between the obtained critical stress and the critical stress of a rigidly clamped plate can be defined by a single nondimensional parameter, which is a combination of the elastic constants of the coating and substrate, and the ratio of delamination length to coating thickness. The results correlate well with the results obtained using the FEM model.
机译:由于在工业应用中的问题的重要性,特别是在微型和纳米电子和生物学中,尤其是在纳米电子和生物学中的重要性,尤其是涂层的涂层的涂层分层的问题。许多作者通过使用分析和数值方法来解决这些问题。这里开发了该模型,其将涂层的分层部分视为具有特殊关注的涂层的分层部分,所述边界条件被认为是通用弹性夹紧的形式,即假设位移和旋转角度的组件在夹紧点,借助于3×3基质的弹性系数与行动总力和总时刻有关。了解该矩阵的系数允许确定诸如临界应力的弯曲的参数,由于进一步分层,屈曲幅度引起的能量释放率。考虑并讨论了分析模型的几种分析模型的变体并讨论。考虑各向同性和各向异性涂层和基材的病例。在傅立叶变换和维纳跳槽技术的帮助下获得了一些矩阵系数的解决方案。在所获得的溶液的基础上,示出了所获得的临界应力和刚性夹板的临界应力之间的差异可以由单一的非潜能参数限定,这是涂层和基板的弹性常数的组合,和分层长度与涂层厚度的比率。结果与使用FEM模型获得的结果完全好转。

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