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Determination of elastic constants of Inconel-625 superalloy, using laser-based ultrasonic

机译:基于激光的超声波测定Inconel-625高温合金的弹性常数

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This paper deals with the determination of the elastic constants of Inconel-625 from the analysis of laser-generated ultrasonic bulk waves. A pulsed Nd/YAG laser (1064?nm) is used for ultrasonic generation in a thick stepped Inconel-625 sample, and a He–Ne laser is used for heterodyne detection of the laser-generated signals. Ultrasonic signals obtained at epicenter and at off-epicenter position of the detection points are analyzed using wavelet transforms. Here, the identification of pressure as well as shear waves and the estimation of their velocities are done successfully. From the estimated velocities, the elastic constants (Young’s modulus, shear modulus, bulk modulus, Lames constant and Poisson’s ratio) are calculated. The agreement of these constants with the standard values confirms the identification of shear waves at off-epicenter position. The work presented in this paper brings out the applicability of the study of laser-generated bulk waves for the determination of elastic constants of any bulk material.
机译:本文通过分析激光产生的超声波体波来确定Inconel-625的弹性常数。脉冲Nd / YAG激光(1064?nm)用于在厚的阶梯状Inconel-625样品中超声产生,而He-Ne激光用于外差检测激光产生的信号。使用小波变换分析在检测点的震中和偏心位置获得的超声信号。在这里,压力和剪切波的识别以及它们的速度估计都可以成功完成。根据估算的速度,计算出弹性常数(杨氏模量,剪切模量,体积模量,拉美常数和泊松比)。这些常数与标准值的一致性证实了在偏心位置处的剪切波的识别。本文提出的工作提出了研究激光产生的体波在确定任何体材料的弹性常数方面的适用性。

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