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Axisymmetric circular indentation of a half-space reinforced by a buried elastic thin film

机译:埋入式弹性薄膜增强的半空间的轴对称圆形压痕

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摘要

The analytical treatment of an axisymmetric rigid punch indentation of an isotropic half-space reinforced by a buried extensible thin film is addressed. With the aid of appropriate displacement potential functions, Hankel transforms, and some mathematical techniques, the mixed boundary value problem under consideration is reduced to a Fredholm integral equation of the second kind. The most interesting results of the problem, including the equivalent normal stiffness of the system and the contact stress distribution beneath the rigid punch, are expressed in terms of the solution of the obtained Fredholm integral equation. Some limiting cases corresponding to inextensible and extremely extensible thin films, a surface-stiffened half-space, axisymmetric surface loading, and infinite embedment are studied and the available results in the literature are used for verification purposes. Some dimensionless plots are provided to show the effects of extensibility of the membrane on the system stiffness. It is observed that neglecting the elastic behavior of thin films and utilizing the simplified inextensible assumption for their modeling can lead to unrealistic predictions. It is shown that the axisymmetric problems concerning the elastic half-spaces including surface effects can be equivalently modeled by a surface-reinforced elastic medium. Taking the surface effects into account, the problem of an isotropic half-space under the action of a surface patch load is treated by employing the present approach.
机译:提出了由埋入式可扩展薄膜增强的各向同性半空间的轴对称刚性冲头压痕的解析处理。借助于适当的位移势函数,汉克尔变换和一些数学技术,可以将所考虑的混合边值问题简化为第二类Fredholm积分方程。该问题最有趣的结果,包括系统的当量法向刚度和刚性冲头下方的接触应力分布,均根据获得的Fredholm积分方程的解表示。研究了一些与不可扩展和极易扩展的薄膜,表面加劲的半空间,轴对称表面载荷和无限嵌入相对应的极限情况,并将文献中的可用结果用于验证目的。提供了一些无因次图以显示膜的可扩展性对系统刚度的影响。可以观察到,忽略薄膜的弹性行为并利用简化的不可扩展的假设进行建模会导致不切实际的预测。结果表明,可以通过表面增强的弹性介质等效地模拟与包括表面效应在内的弹性半空间有关的轴对称问题。考虑到表面效应,通过采用本发明的方法解决了在表面补丁载荷的作用下各向同性半空间的问题。

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