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The medium coupling effect on propagation of guided waves in engineering structures and human bone phantoms

机译:介质耦合对导波在工程结构和人体骨骼模型中传播的影响

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摘要

As a result of the medium coupling, propagation characteristics of ultrasonic waves guided by a multi-phase medium can be different from those in a homogeneous system. This phenomenon becomes prominent for a medium consisting of phases with considerably distinct material and physical properties (e.g., submerged structures or human bones covered with soft tissues). In this study, the coupling effect arising from both fluid and soft tissues on wave propagation in engineering structures and human bone phantoms, respectively, was explored and calibrated quantitatively, with a purpose of enhancing the precision of ultrasonic-wave-based non-destructive evaluation (NDE) and clinical quantitative ultrasound (QUS). Calibration results were used to rectify conventional NDE during evaluation of corrosion in a submerged aluminium plate, and QUS during prediction of simulated healing status of a mimicked bone fracture. The results demonstrated that with the coupling effect being appropriately taken into account, the precision of NDE and QUS could be improved.
机译:作为介质耦合的结果,由多相介质引导的超声波的传播特性可能不同于均匀系统中的那些。对于由具有明显不同的材料和物理特性的相组成的介质(例如,淹没的结构或被软组织覆盖的人体骨骼)而言,这种现象尤为突出。在这项研究中,流体和软组织同时产生的耦合效应分别对工程结构和人体骨骼模型中的波传播进行了探索和定量校准,目的是提高基于超声波的无损评估的精度。 (NDE)和临床定量超声(QUS)。在评估浸没铝板的腐蚀过程中,使用校准结果校正传统的NDE;在模拟模仿的骨折愈合状态的预测过程中,使用校准结果校正QUS。结果表明,通过适当考虑耦合效应,可以提高NDE和QUS的精度。

著录项

  • 作者

    Chen, J; Su, Z; Cheng, L;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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