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Elastic Wave Propagation in a Class of Cracked, Functionally Graded Materials by BIEM

机译:BIEM在一类破裂的功能梯度材料中的弹性波传播

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Elastic wave propagation in cracked, functionally graded materials (FGM) with elastic parameters that are exponential functions of a single spatial co-ordinate is studied in this work. Conditions of plane strain are assumed to hold as the material is swept by time-harmonic, incident waves. The FGM has a fixed Poisson’s ratio of 0.25, while both shear modulus and density profiles vary proportionally to each other. More specifically, the shear modulus of the FGM is given as μ (x)=μ 0 exp (2ax 2), where μ 0 is a reference value for what is considered to be the isotropic, homogeneous material background. The method of solution is the boundary integral equation method (BIEM), an essential component of which is the Green’s function for the infinite inhomogeneous plane. This solution is derived here in closed-form, along with its spatial derivatives and the asymptotic form for small argument, using functional transformation methods. Finally, a non-hypersingular, traction-type BIEM is developed employing quadratic boundary elements, supplemented with special edge-type elements for handling crack tips. The proposed methodology is first validated against benchmark problems and then used to study wave scattering around a crack in an infinitely extending FGM under incident, time-harmonic pressure (P) and vertically polarized shear (SV) waves. The parametric study demonstrates that both far field displacements and near field stress intensity factors at the crack-tips are sensitive to this type of inhomogeneity, as gauged against results obtained for the reference homogeneous material case
机译:在这项工作中,研究了具有弹性参数的裂纹,功能梯度材料(FGM)中的弹性波传播,该弹性参数是单个空间坐标的指数函数。假定当材料被时谐入射波扫过时,平面应变的条件将保持。 FGM的泊松比固定为0.25,而剪切模量和密度分布均成比例地变化。更具体地说,FGM的剪切模量为μ(x)=μ0 exp(2ax 2 ),其中μ0 是被认为是各向同性的均质材料背景。求解方法是边界积分方程法(BIEM),其基本组成部分是无限不均匀平面的格林函数。使用函数转换方法,此解以闭合形式以及其空间导数和小参数的渐近形式导出。最后,开发了一种非二次型牵引型BIEM,它采用了二次边界元,并辅以特殊的边缘型元来处理裂纹尖端。所提出的方法首先针对基准问题进行了验证,然后用于研究入射波,时间谐波压力(P)和垂直极化切变(SV)波在无限延伸的FGM中裂纹周围的波散射。参数研究表明,裂纹尖端处的远场位移和近场应力强度因子都对这种类型的不均匀性敏感,这是根据参考均质材料情况下获得的结果衡量的

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