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Nondestructive Inspection for Internal Defects of Rail based on Photoacoustic Elastography

机译:基于光声弹性成像的钢轨内部缺陷的无损检测

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Laser ultrasonic technique is used for the nondestructive testing technology of surface damage, but ignores the density variation in the sample. Photoacoustic elastography is adopted to obtain more rail information (such as the internal defects, the variation of sample's interior density) of the sample by collecting Rayleigh wave on rail surface and shear wave within the rail. In this paper, it is proved that the internal defects and the variation of density can be detected by photoacoustic elastography, using finite element analysis (FEA). We first use FEA to simulate the ultrasound excitation on the steel material surface excited by the laser source. Two cases of sample are modeled and analyzed, one is with defects of different depth and the other is with different density. Then, an isotropic model using ANSYS is employed and shear wave propagation is modeled. The preliminary results successfully recapitulate the trend of the change of shear wave's velocities, which shows that the defects can enhance the amplitude of shear wave. In addition, the velocities of shear wave would increase when the density of the sample enlarges. Results from computer simulations demonstrate the effectiveness of photoacoustic elastography with application to quantitative analysis for the structures of sample.
机译:激光超声技术用于表面损伤的无损检测技术,但忽略了样品中的密度变化。通过收集轨道表面的瑞利波和轨道内的剪切波,采用光声弹性成像技术来获得更多的轨道信息(例如内部缺陷,样品内部密度的变化)。本文证明,利用光声弹性成像技术,使用有限元分析(FEA)可以检测内部缺陷和密度变化。我们首先使用FEA在激光源激发的钢材表面上模拟超声激发。对两种情况进行建模和分析,一种情况具有不同深度的缺陷,另一种情况具有不同的密度。然后,采用了使用ANSYS的各向同性模型,并对剪切波传播进行了建模。初步结果成功地概括了剪切波速度变化的趋势,表明缺陷可以增强剪切波的幅度。另外,当样品的密度增大时,剪切波的速度将增加。计算机模拟的结果证明了光声弹性成像技术在定量分析样品结构中的有效性。

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