首页> 外文期刊>Inverse Problems: An International Journal of Inverse Problems, Inverse Methods and Computerised Inversion of Data >Time reversal techniques in ultrasonic nondestructive testing of scattering media
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Time reversal techniques in ultrasonic nondestructive testing of scattering media

机译:散射介质超声无损检测中的时间反转技术

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摘要

Time reversal techniques are adaptive methods that can be used in nondestructive evaluation to improve flaw detection through inhomogeneous and scattering media. Two techniques are presented: the iterative time reversal process and the DORT (French acronym for decomposition of the time reversal operator) method. In pulse echo mode, iterative time reversal mirrors allow one to accurately control wave propagation and focus selectively on a defect reducing the speckle noise due to the microstructure contribution. The DORT method derives from the mathematical analysis of the iterative time reversal process. Unlike time reversal mirrors, it does not require programmable generators and allows the simultaneous detection and separation of several defects. These two procedures are presented and applied to detection in titanium billets where the grain structure renders detection difficult. Then, they are combined with the simulation code PASS (phased array simulation software) to form images of the samples.
机译:时间反转技术是一种自适应方法,可用于非破坏性评估,以通过不均匀和分散的介质来改善缺陷检测。提出了两种技术:迭代时间反转过程和DORT(时间反转算子分解的法语首字母缩写)方法。在脉冲回波模式下,迭代式时间倒转镜可精确控制波传播,并有选择地聚焦于一种缺陷,可减少由于微结构造成的斑点噪声。 DORT方法源自对迭代时间反转过程的数学分析。与时间反转镜不同,它不需要可编程发生器,并且可以同时检测和分离多个缺陷。介绍了这两种方法,并将其应用于钛坯料中的晶粒结构使检测变得困难的检测。然后,将它们与仿真代码PASS(相控阵仿真软件)组合在一起以形成样本图像。

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