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On the receding contact between an inhomogeneously coated elastic layer and a homogeneous half-plane

机译:在不均匀涂覆的弹性层和均匀的半平面之间的后退接触上

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摘要

The general double contact problem of an inhomogeneously coated elastic layer indented against a homogeneous half-plane by a rigid punch is investigated. The problem is solved under the assumptions that the contact at both interfaces is frictionless, the three materials possess different shear modulus, and the shear modulus of the functionally graded coating varies exponentially. By the standard method of Fourier integral transforms, the problem is reduced to a system of singular integral equations, which are subsequently transformed into algebraic ones by Gauss-Chebyshev integration formulas. Massive numerical experiments are performed to quantify the influence of stiffness distribution in coating, material and geometric properties of the compound structure, and indentation load on the contact pressure and contact length at both surfaces of contact. The results suggest that in the case of a hard and thick coating large pressure reduction can be achieved for the receding contact at the layer/substrate interface. (C) 2017 Elsevier Ltd. All rights reserved.
机译:研究了通过刚性冲头压向均匀的半平面的不均匀涂覆的弹性层的一般双接触问题。在以下假设下解决了该问题:两个界面处的接触都是无摩擦的,这三种材料具有不同的剪切模量,并且功能梯度涂层的剪切模量呈指数变化。通过傅里叶积分变换的标准方法,问题被简化为一个奇异积分方程组,然后通过高斯-切比雪夫积分公式将其转化为代数方程组。进行了大量的数值实验,以量化涂层的刚度分布,复合结构的材料和几何特性以及压痕载荷对两个接触面的接触压力和接触长度的影响。结果表明,在硬而厚的涂层的情况下,对于层/基底界面处的后退接触可以实现大的压力降低。 (C)2017 Elsevier Ltd.保留所有权利。

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