LUNAM Université, IFSTTAR, MACS, CS4, F-44344 Bouguenais Cedex, France.
Ultrasonics. 2013 Mar;53(3):658-64. doi: 10.1016/j.ultras.2012.08.003. Epub 2012 Aug 17.
The Coda Wave Interferometry (CWI) analysis serves to monitor the variation of propagation velocity in a heterogeneous medium with high precision (10(-3)% in relative terms). In combination with acoustoelastic theory, this type of analysis offers an NDT method for stress evaluation and/or damage detection. Since the CWI method is intended to evaluate extreme levels of accuracy, the presence of bias under certain circumstances can undermine evaluation results and/or test repeatability. In this paper, we offer a bias control technique involving the use of a second (reference) specimen for CWI analysis that is designed to compensate: (1) the thermally-induced velocity variation due to environmental temperature fluctuations; and (2) bias originating from experimental procedures. The presentation of this technique contains both a theoretical analysis and experimental protocol for the purpose of implementation. Furthermore, comparisons of experimental results have been included in order to demonstrate the utility of this bias control technique under laboratory conditions.
连续波干涉(CWI)分析可用于高精度监测非均质介质中传播速度的变化(相对精度为 10(-3)%)。与声弹性理论相结合,这种分析方法为应力评估和/或损伤检测提供了一种无损检测方法。由于 CWI 方法旨在评估极高的精度水平,因此在某些情况下存在偏差会破坏评估结果和/或测试重复性。在本文中,我们提出了一种偏置控制技术,该技术涉及使用第二个(参考)样品进行 CWI 分析,旨在补偿:(1)由于环境温度波动引起的热诱导速度变化;和(2)源于实验程序的偏差。本技术介绍包括理论分析和实验方案,旨在实现这一技术。此外,还包括了实验结果的比较,以证明该偏置控制技术在实验室条件下的实用性。