首页> 外文期刊>Journal of thermal stresses >THERMAL STRESSES AROUND TWO COLLINEAR INTERFACE CRACKS BETWEEN A NONHOMOGENEOUS BONDING LAYER AND ONE OF THE TWO DISSIMILAR ELASTIC HALF-PLANES UNDER UNIFORM HEAT FLUX
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THERMAL STRESSES AROUND TWO COLLINEAR INTERFACE CRACKS BETWEEN A NONHOMOGENEOUS BONDING LAYER AND ONE OF THE TWO DISSIMILAR ELASTIC HALF-PLANES UNDER UNIFORM HEAT FLUX

机译:非均匀键合层与均匀热通量下两个两个不同弹性半平面之一之间的两个直角界面裂纹周围的热应力

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In composite materials, in which two dissimilar elastic half-planes are bonded by a nonhomogeneous elastic layer, two collinear cracks are situated at the interface between the nonhomogeneous elastic layer and one of the two dissimilar half-planes. The stress intensity factors are solved under uniform heat flux normal to the cracks. The material properties of the bonding layer vary continuously from the lower half-plane to the upper half-plane. The boundary conditions are reduced to dual integral equations using the Fourier transform technique. In order to satisfy the boundary conditions outside the cracks, the differences in temperature and displacements at the crack surfaces are expanded in a series of functions that vanish outside the cracks. The unknown coefficients in each series are evaluated using the Schmidt method. The stress intensity factors were calculated numerically for selected crack configurations.
机译:在复合材料中,两个不相同的弹性半平面由一个不均匀的弹性层粘合在一起,两个共线裂缝位于不均匀的弹性层和两个不相同的半平面之一之间的界面处。应力强度因子在垂直于裂纹的均匀热通量下求解。粘结层的材料性质从下半平面到上半平面连续变化。使用傅立叶变换技术将边界条件简化为对偶积分方程。为了满足裂纹外部的边界条件,裂纹表面处的温度和位移的差异扩大为一系列在裂纹外部消失的函数。使用Schmidt方法评估每个系列中的未知系数。对于选定的裂纹构型,通过数值计算了应力强度因子。

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