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Angular dependence of ultrasonic wave propagation in a stressed, orthorhombic continuum: Theory and application to the measurement of stress and texture

机译:超声波在受力正交正交连续体内传播的角度依赖性:理论和在应力和织构测量中的应用

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摘要

A theory for ultrasonic wave propagation in a symmetry plane of a biaxially stressed, orthorhombic continuum is presented. Since many of the material parameters which appear in the analysis are unknown, in particular the third‐order elastic constants of polycrystalline metals, emphasis is placed on the angular dependence of the velocities. An expansion to first order in stress‐induced anisotropy and to second order in textural anisotropy reveals terms with twofold, fourfold, and sixfold symmetry. Scenarios are proposed for using various properties of this symmetry to deduce the difference in magnitude and directions of the principal stresses independent of textural anisotropy and the textural anisotropy independent of the stresses. Experimental results are presented for the cases of aluminum, 304 stainless steel, and copper.
机译:提出了一种在双轴受力正交正交连续体对称平面内传播超声波的理论。由于分析中出现的许多材料参数都是未知的,尤其是多晶金属的三阶弹性常数,因此重点放在速度的角度依赖性上。在应力引起的各向异性中扩展到一阶,在结构各向异性中扩展到二阶,揭示出具有双重,四重和六重对称性的项。提出了使用这种对称性的各种性质来推论与结构各向异性无关的主应力和与应力无关的结构各向异性的大小和方向差异的方案。给出了铝,304不锈钢和铜的实验结果。

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