首页> 外文期刊>International Journal of Engineering Science >Dynamic stress intensity factors around two parallel cracks in a functionally graded layer bonded to dissimilar half-planes subjected to anti-plane incident harmonic stress waves
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Dynamic stress intensity factors around two parallel cracks in a functionally graded layer bonded to dissimilar half-planes subjected to anti-plane incident harmonic stress waves

机译:功能梯度层中两个平行裂缝周围的动态应力强度因子,该梯度层粘结到不同的半平面上,承受反平面入射谐波应力波

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摘要

The time-harmonic problem of determining the stress field around two parallel cracks in functionally graded materials (FGMs) is studied. The Fourier transform technique is used to reduce the boundary conditions to four simultaneous integral equations which are then solved by expanding the differences of crack surface displacements in a series. The unknown coefficients in the series are obtained by the Schmidt method. Numerical calculations are carried out for dynamic stress intensity factors (DSIF) in FGMs.
机译:研究了确定功能梯度材料(FGM)中两个平行裂纹周围应力场的时谐问题。使用傅立叶变换技术将边界条件简化为四个联立的积分方程,然后通过扩展一系列裂纹表面位移的差异来求解。该序列中的未知系数通过Schmidt方法获得。对FGM中的动态应力强度因子(DSIF)进行了数值计算。

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