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Inference of stress and texture from angular dependence of ultrasonic plate mode velocities

机译:从超声板模式速度的角度依赖性推断应力和织构

摘要

The theory for the angular dependence of the ultrasonic wave velocity in a symmetry plane of an orthorhombic, stressed material is presented. The two waves having polarizations in this plane are shown to have velocities which can be estimated from measurements of the SH sub 0 and S sub 0 guided modes of a thin plate: the relationship being exact for the SH sub 0 mode and requiring a 10% correction for the S sub 0 mode at long wavelength. It is then shown how stress and texture can be independently inferred from various features of the angular dependence of these two velocities. From the SH sub 0 data, the ability to determine the directions and differences in magnitudes of principal stresses is described and supported by experimental data on several materials. From a combination of the SH sub 0 and S sub 0 data, a procedure is proposed for determining the coefficients W sub 400, W sub 420 and W sub 440 of an expansion of the crystallite orientation distribution function in terms of generalized Legendre functions. Possible applications in process control are indicated.
机译:提出了正交各向异性受应力材料在对称平面内超声波速度与角度的关系的理论。示出了在该平面中具有极化的两个波具有可以从薄板的SH sub 0和S sub 0引导模式的测量值估计的速度:该关系对于SH sub 0模式是精确的,并且需要10% S sub 0模式在长波长时的校正。然后显示如何从这两个速度的角度依赖性的各种特征中独立地推断出应力和纹理。根据SH sub 0数据,描述了确定主应力方向和大小差异的能力,并得到了几种材料的实验数据的支持。根据SH sub 0和S sub 0数据的组合,提出了一种程序,用于根据广义Legendre函数确定微晶取向分布函数的展开系数W sub 400,W sub 420和W sub 440。指出了过程控制中的可能应用。

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