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An analytical approach to the oblique-incidence acoustoelasticity.

机译:斜入射声弹性的一种分析方法。

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摘要

Nondestructive evaluation of residual stresses has long been desirable by engineers to be able to design structures and machines more efficiently regarding the strength to mass ratio. An ultrasonic immersion technique has been devised at the University of Oklahoma to determine residual stresses via oblique-incidence acoustoelasticity. In support of the experimental technique, an analysis is made to obtain the wave velocities in terms of the second-order and third-order elastic constants, texture parameters and applied or residual stresses. Based on the theory of finite deformation of elastic solids, the equations of motion in three orthogonal directions are derived and the resulting nonlinear partial differential equations are linearized to yield an eigenvalue problem. This is then solved to determine the wave velocities as functions of strains. Furthermore, assuming slight anisotropy the classical problem of wave propagation in an orthotropic aggregate of cubic crystallites is solved to obtain the wave velocities in terms of texture parameters. The results for both texture and stress are, then, linearized for the QSV wave mode propagating in an arbitrary direction as well as in two orthogonal symmetry planes. These are numerically evaluated to show very good approximation. The observed experimental results are compared to the evaluated analytical results to reveal excellent qualitative agreement. The quantitative discrepancies are also discussed and explained. Finally, two different solutions are presented to discriminate the texture parameters from the principal strains (or stresses), by velocity or time-delay measurements at different incident angles in the symmetry planes.
机译:长期以来,工程师一直希望对残余应力进行无损评估,以便能够在强度与质量比方面更有效地设计结构和机器。俄克拉荷马大学已经设计了一种超声波浸没技术,可以通过倾斜入射声弹弹性来确定残余应力。为了支持该实验技术,进行了分析,以根据第二阶和第三阶弹性常数,织构参数以及所施加的应力或残余应力来获得波速。根据弹性固体的有限变形理论,推导了在三个正交方向上的运动方程,并对得到的非线性偏微分方程进行了线性化处理,从而产生了特征值问题。然后解决该问题,以确定作为应变函数的波速。此外,假设轻微的各向异性,解决了在立方微晶的正交各向异性聚集体中波传播的经典问题,从而获得了基于织构参数的波速。然后,对于在任意方向以及两个正交对称平面中传播的QSV波模,将纹理和应力的结果线性化。对它们进行了数值评估以显示非常好的近似值。将观察到的实验结果与评估的分析结果进行比较,以得出极好的定性一致性。还讨论并解释了数量上的差异。最后,提出了两种不同的解决方案,通过在对称平面中不同入射角的速度或时延测量,将纹理参数与主应变(或应力)区分开。

著录项

  • 作者

    Sinaie, Ali.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 241 p.
  • 总页数 241
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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