首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Wave Equation-Based Imaging of Mode Converted Waves in Ultrasonic NDI, with Suppressed Leakage from Nonmode Converted Waves
【24h】

Wave Equation-Based Imaging of Mode Converted Waves in Ultrasonic NDI, with Suppressed Leakage from Nonmode Converted Waves

机译:基于波动方程的超声NDI中模式转换波的成像,抑制了非模式转换波的泄漏

获取原文
获取原文并翻译 | 示例
           

摘要

The value of imaging techniques in ultrasonic nondestructive inspection (NDI) to find and characterize defects in steel components has already been demonstrated. The imaging techniques based on the integral representation of the wave equation, the Rayleigh integrals for wave field extrapolation, are becoming feasible and attractive due to advances in array technology and due to faster computers. Known implementations are the total focusing method (TFM), the synthetic aperture focusing method (SAFT), and the inverse wave field extrapolation method (IWEX). In principle, these techniques compensate propagation effects from sources to a scatterer such as a defect and propagation effects from the scatterer to receivers. Currently, this approach is applied to wave fronts of single modes (pure longitudinal or pure transversal). In practice, multiple wave fronts from the scatterer will be received as a result of mode conversion. These arrivals will not have the same arrival time because of the difference in sound velocity between longitudinal and transversal waves. Images of mode converted waves are obtained by choosing the appropriate sound velocity that corresponds with the mode-converted scattered wave in the imaging process. Therefore, the nonmode converted waves will image as leakage artifacts in the mode-converted images, and vice versa. This may lead to false interpretations. In this paper, such artifacts will be identified and explained with the help of an analytical example. Measurements from steel test pieces with a 4 MHz linear array transducer with 64 elements will be used to demonstrate the artifacts. Furthermore, a procedure to predict the artifacts and the subsequent suppression from the input measurements will be presented and demonstrated.
机译:已经证明了成像技术在超声无损检测(NDI)中发现和表征钢部件缺陷的价值。由于阵列技术的进步和计算机速度的提高,基于波动方程的积分表示法,用于波场外推的瑞利积分的成像技术正变得可行和有吸引力。已知的实现方式是总聚焦方法(TFM),合成孔径聚焦方法(SAFT)和逆波场外推方法(IWEX)。原则上,这些技术补偿从源到散射体的传播效应,例如缺陷,以及从散射体到接收器的传播效应。当前,该方法被应用于单模(纯纵向或纯横向)的波阵面。实际上,作为模式转换的结果,来自散射体的多个波阵面将被接收。由于纵向波和横向波之间的声速差异,这些到达将不会具有相同的到达时间。通过选择与成像过程中与模式转换后的散射波相对应的适当声速,可以获取模式转换后的波的图像。因此,非模转换波将在模转换图像中成像为泄漏伪影,反之亦然。这可能会导致错误的解释。在本文中,将通过分析示例来识别和解释此类工件。用带有64个元件的4 MHz线性阵列换能器对钢制试件进行的测量将用于演示工件。此外,将介绍和演示一种从输入测量值预测伪像和后续抑制的过程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号