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首页> 外文期刊>International journal of applied mechanics >The Interaction of the Plane Stress Mode I Crack with an Inhomogeneity Undergoing a Stress-Free Transformation Strain
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The Interaction of the Plane Stress Mode I Crack with an Inhomogeneity Undergoing a Stress-Free Transformation Strain

机译:平面应力模式I裂纹与非均匀性在无应力转变应变下的相互作用

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摘要

Thin composite films containing inclusions are commonly being developed as corrosion resistant, wear resistant coatings and so forth. For systems where the composite film is under residual stresses properly designed, a controlled debonding process of the inclusions can be used to reduce the stress levels in the film lowering the risk of through cracks in the film as well as the risk for the film's delamination from the substrate. In this paper, on the basis of the Eshelby equivalent inclusion theory, a general solution is derived by treating an inhomogeneous inclusion as a homogeneous one with transformation strain for the configuration force (CF) and stress intensity factor (SIF) between mode I crack and an inhomogeneous inclusion of arbitrary shape which undergoes some degree of stress-free transformation strain under plane stress loading conditions. Then the CF associated with the transformation is calculated from the work done during the transformation, from which some simplified approximate formulae are also presented for common inclusion shapes in order to provide a quick estimate for the effects of inclusion shape, location and size on the CF of plane stress model I crack. In comparison to conventional numerical approaches, the present solution provides a novel approach to explain the behavior of crack deflection/penetration and can be used for the optimization design of the composite films.
机译:包含夹杂物的复合薄膜通常被开发为耐腐蚀,耐磨涂层等。对于复合膜在残余应力下经过适当设计的系统,可以使用夹杂物的受控脱胶工艺来降低膜中的应力水平,从而降低膜中贯穿裂纹的风险以及膜因脱层而分层的风险。基板。本文基于Eshelby等效夹杂理论,通过将非均质夹杂物视为均质夹杂物,并利用I型裂纹和裂纹之间的构型力(CF)和应力强度因子(SIF)的转变应变将其作为均质夹杂物。任意形状的不均匀夹杂物,在平面应力载荷条件下会经历一定程度的无应力转变应变。然后,根据转换过程中完成的工作来计算与转换相关的CF,从中还为常见的夹杂物形状提供了一些简化的近似公式,以便快速估算夹杂物形状,位置和尺寸对CF的影响我破解的平面应力模型。与传统的数值方法相比,本解决方案提供了一种新颖的方法来解释裂纹的变形/渗透行为,并可用于复合膜的优化设计。

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