Simulation study of a chaotic cavity transducer based virtual phased array used for focusing in the bulk of a solid material

被引:10
|
作者
Delrue, Steven [1 ]
Van den Abeele, Koen [1 ]
Matar, Olivier Bou [2 ]
机构
[1] KU Leuven Kulak, Wave Propagat & Signal Proc Res Grp, E Sabbelaan 53, B-8500 Kortrijk, Belgium
[2] Univ Nord France, Joint Int Lab LICS LEMAC IEMN, ECLille, UMR CNRS 8520, Cite Sci,BP48, F-59651 Villeneuve Dascq, France
关键词
Non-destructive testing; Time reversal; Chaotic cavity; Virtual phased array; COMSOL; CHANNEL TIME-REVERSAL; ULTRASONIC FIELDS; ACOUSTICS;
D O I
10.1016/j.ultras.2016.01.010
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
In acoustic and ultrasonic non-destructive testing techniques, it is sometimes beneficial to concentrate sound energy at a chosen location in space and at a specific instance in time, for example to improve the signal-to-noise ratio or activate the nonlinearity of damage features. Time Reversal (TR) techniques, taking advantage of the reversible character of the wave equation, are particularly suited to focus ultrasonic waves in time and space. The characteristics of the energy focusing in solid media using principles of time reversed acoustics are highly influenced by the nature and dimensions of the medium, the number of transducers and the length of the received signals. Usually, a large number of transducers enclosing the domain of interest is needed to improve the quality of the focusing. However, in the case of highly reverberant media, the number of transducers can be reduced to only one (single-channel TR). For focusing in a non-reverberant medium, which is impossible when using only one source, an adaptation of the single-channel reciprocal TR procedure has been recently suggested by means of a Chaotic Cavity Transducer (CCT), a single element transducer glued on a cavity of chaotic shape. In this paper, a CCT is used to focus elastic energy, at different times, in different points along a predefined line on the upper surface of a thick solid sample. Doing so, all focusing points can act as a virtual phased array transducer, allowing to focus in any point along the depth direction of the sample. This is impossible using conventional reciprocal TR, as you need to have access to all points in the bulk of the material for detecting signals to be used in the TR process. To asses and provide a better understanding of this concept, a numerical study has been developed, allowing to verify the basic concepts of the virtual phased array and to illustrate multi-component time reversal focusing in the bulk of a solid material. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:151 / 159
页数:9
相关论文
共 16 条
  • [1] Focusing Actuating Performance of OPFC Phased Array Transducer Based on DPSM
    Wang Ziping
    Luo Ying
    MICRO-NANO TECHNOLOGY XV, 2014, 609-610 : 1299 - 1304
  • [2] A miniaturized phased array aperture antenna based on bulk ferroelectric material
    Peng, Liang
    Ran, Lixin
    Zou, Yingyin K.
    Kong, J. A.
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2007, 49 (01) : 37 - 40
  • [3] Detection of Longitudinal Cracks with a Serrated Columnar Phased Array Transducer: A Simulation Study
    Zou, Cheng
    Cai, Dong
    Sun, Zhenguo
    Liu, Xia
    2015 INTERNATIONAL CONFERENCE ON CONTROL, AUTOMATION AND ROBOTICS ICCAR 2015, 2015, : 153 - 157
  • [4] Simulation Based Investigation of Focusing Phased Array Ultrasound in Dissimilar Metal Welds
    Kim, Hun-Hee
    Kim, Hak-Joon
    Song, Sung-Jin
    Kim, Kyung-Cho
    Kim, Yong-Buem
    NUCLEAR ENGINEERING AND TECHNOLOGY, 2016, 48 (01) : 228 - 235
  • [5] Numerical Simulation and Experimental Study on Focusing of Magnetostrictive Guided Wave Phased Array in Pipeline
    Ma, Peng
    Yang, Yong
    Wang, Jun
    Jiang, Weiji
    Zhao, Gang
    Liang, Peng
    Li, Bo
    Li, Jicun
    He, Yuying
    2023 2ND INTERNATIONAL CONFERENCE ON MECHATRONICS AND ELECTRICAL ENGINEERING, MEEE, 2023, : 30 - 36
  • [6] Time Reversal-based Beam Focusing of an Ultrasonic Phased Array Transducer on a Target in Anisotropic and lnhomogeneous Welds
    Jeong, Hyunjo
    MATERIALS EVALUATION, 2014, 72 (05) : 589 - 596
  • [7] Time reversal-based beam focusing of an ultrasonic phased array transducer on a target in anisotropic and inhomogeneous welds
    Jeong, H. (hjjeong@wku.ac.kr), 1600, American Society for Nondestructive Testing (72):
  • [8] Simulation Study on the Acoustic Field from Linear Phased Array Ultrasonic Transducer for Engine Cylinder Testing
    Yang, Xiaoxia
    Chen, Shili
    Sun, Fang
    Jin, Shijiu
    Chang, Wenshuang
    CMES-COMPUTER MODELING IN ENGINEERING & SCIENCES, 2013, 90 (06): : 487 - 500
  • [9] Acoustic Field of a Linear Phased Array: A Simulation Study of Ultrasonic Circular Tube Material
    Xiao, Zhitao
    Guo, Yongmin
    Geng, Lei
    Wu, Jun
    Zhang, Fang
    Wang, Wen
    Liu, Yanbei
    SENSORS, 2019, 19 (10):
  • [10] Simulation and analysis of the PMN-PT based phased array transducer with the high sound velocity matching layer
    Zhang, Zhang
    Xu, Jialin
    Xiao, Junjie
    Liu, Sixing
    Wang, Xi'an
    Liang, Zhu
    Luo, Haosu
    SENSORS AND ACTUATORS A-PHYSICAL, 2020, 313 (313)