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首页> 外文期刊>The Journal of the Acoustical Society of America >Determination of the acoustoelastic coefficient for surface acoustic waves using dynamic acoustoelastography: An alternative to static strain
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Determination of the acoustoelastic coefficient for surface acoustic waves using dynamic acoustoelastography: An alternative to static strain

机译:使用动态声弹弹性图确定表面声波的声弹系数:静态应变的替代方法

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摘要

The third-order elastic constants of a material are believed to be sensitive to residual stress, fatigue, and creep damage. The acoustoelastic coefficient is directly related to these third-order elastic constants. Several techniques have been developed to monitor the acoustoelastic coefficient using ultrasound. In this article, two techniques to impose stress on a sample are compared, one using the classical method of applying a static strain using a bending jig and the other applying a dynamic stress due to the presence of an acoustic wave. Results on aluminum samples are compared. Both techniques are found to produce similar values for the acoustoelastic coefficient. The dynamic strain technique however has the advantages that it can be applied to large, real world components, in situ, while ensuring the measurement takes place in the nondestructive, elastic regime.
机译:人们认为材料的三阶弹性常数对残余应力,疲劳和蠕变损伤敏感。声弹性系数与这些三阶弹性常数直接相关。已经开发出几种技术来使用超声监测声弹性系数。在本文中,比较了两种在样品上施加应力的技术,一种是使用经典方法通过弯曲夹具施加静态应变,另一种是由于存在声波而施加动态应力。比较了铝样品的结果。发现这两种技术对于声弹性系数产生相似的值。然而,动态应变技术的优势在于,它可以原位应用于大型的现实世界组件,同时确保测量在无损弹性状态下进行。

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