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A tensile-film-cracking model for evaluating interfacial shear strength to elastic film on ductile substrate

机译:用于评估韧性基底上弹性膜的界面剪切强度的拉伸膜破裂模型

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摘要

The stress distribution associated with the film cracking model originally proposed by Agrawal and Raj is further investigated through the use of the finite element analysis (FEA) technique. The result of the FEA analysis indicates that the interfacial shear stress can be approximated by a quarter segment of an elliptical function, rather than by a sine function of a full wavelength as employed in the original model. A modified model related to the maximum interfacial shear stress is thus proposed. The validity of the new model has been tested in a TiN coating-304 stainless steel system. It is demonstrated that the interfacial shear strength evaluated through the new model is of the same order of magnitude as that of the yield shear strength of the substrate.
机译:通过使用有限元分析(FEA)技术,进一步研究了与Agrawal和Raj最初提出的薄膜开裂模型相关的应力分布。 FEA分析的结果表明,界面剪切应力可以由椭圆函数的四分之一部分近似,而不是由原始模型中采用的全波长正弦函数近似。因此,提出了与最大界面剪切应力有关的改进模型。新模型的有效性已在TiN涂层304不锈钢系统中进行了测试。结果表明,通过新模型评估的界面剪切强度与基材的屈服剪切强度具有相同数量级。

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