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Thermoelastic analysis of nonhomogeneous structural materials with an interface crack under uniform heat flow

机译:均匀热流下具有界面裂纹的非均质结构材料的热弹性分析

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Many modem materials are layered material systems. Interfaces are inherent to these materials because they are heterogeneities, such as thermal and residual stresses in the elastic properties. In this paper, we study a partially insulated interface crack between two different functionally graded materials bonded to a homogeneous material subjected to a steady-state heat flux away from the crack region as well as mechanical crack surface stresses. The problem is solved under the assumption of plane strain and generalized plane stress conditions. The properties of the functionally graded materials vary as exponential function in the thickness direction. Using the Fourier transform and a superposition technique, the singular integral equations for the temperature and the displacement fields are derived. The total strain energy release rate and strain energy density are obtained. Critical parametric studies are conducted for non-homogeneity parameter, the thermal stress intensity factors and minimum strain energy density. (C) 2015 Elsevier Inc. All rights reserved.
机译:许多现代材料是分层的材料系统。这些材料固有的界面是因为它们是异质性,例如弹性属性中的热应力和残余应力。在本文中,我们研究了两种不同功能梯度材料之间的部分绝缘的界面裂纹,该材料与均质材料粘合在一起,承受稳态热通量并远离裂纹区域,并且存在机械裂纹表面应力。该问题在平面应变和广义平面应力条件下得到解决。功能梯度材料的特性在厚度方向上作为指数函数而变化。使用傅立叶变换和叠加技术,得出温度和位移场的奇异积分方程。获得总应变能释放速率和应变能密度。对非均匀性参数,热应力强度因子和最小应变能密度进行了关键的参数研究。 (C)2015 Elsevier Inc.保留所有权利。

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