Nonlinear Ultrasonic Detection Method for Delamination Damage of Lined Anti-Corrosion Pipes Using PZT Transducers

Lined anti-corrosion pipes are widely used in oil and gas, petrochemical, pharmaceutical industries. However, defects, especially delamination, may occur in the production and service of pipes which result in safety accidents. Based on nonlinear ultrasonic theory, this paper studied the delamination...

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Main Authors: Xiaobin Hong, Yuan Liu, Xiaohui Lin, Zongqiang Luo, Zhenwei He
Format: Article
Language:English
Published: MDPI AG 2018-11-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/8/11/2240
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spelling doaj-89885f2b69d64d72a1e377c6e451d9af2020-11-24T22:00:10ZengMDPI AGApplied Sciences2076-34172018-11-01811224010.3390/app8112240app8112240Nonlinear Ultrasonic Detection Method for Delamination Damage of Lined Anti-Corrosion Pipes Using PZT TransducersXiaobin Hong0Yuan Liu1Xiaohui Lin2Zongqiang Luo3Zhenwei He4School of Mechanical & Automotive Engineering, South China University of Technology, Guangzhou 510641, ChinaSchool of Mechanical & Automotive Engineering, South China University of Technology, Guangzhou 510641, ChinaSchool of Mechanical & Automotive Engineering, South China University of Technology, Guangzhou 510641, ChinaSchool of Mechanical & Automotive Engineering, South China University of Technology, Guangzhou 510641, ChinaShenzhen Zhongji Intelligent Technology Co., Ltd., Shenzhen 518000, ChinaLined anti-corrosion pipes are widely used in oil and gas, petrochemical, pharmaceutical industries. However, defects, especially delamination, may occur in the production and service of pipes which result in safety accidents. Based on nonlinear ultrasonic theory, this paper studied the delamination detection method using the nonlinear harmonics for lined anti-corrosion pipes. The response characteristics of the anti-corrosion pipe were obtained through a sweep sine response experiment and the preferred excitation frequency was determined. The Wavelet Packet transform and Hilbert⁻Huang transform is applied for signal process and feature extraction. Then, a series of experiments were carried out and the results were analyzed and discussed. The results showed that a second-order and third-order nonlinear coefficient increased with the delamination damage. The amplitude of second-harmonic is much stronger than the third-order one. The mean squared error of the nonlinear coefficient, which was processed by Wavelet Packet transform and Hilbert⁻Huang transform, is smaller than wavelet packet transform and Discrete Fourier transform or processed only Hilbert⁻Huang transform. The higher harmonics can describe the change of delamination damage, which means that the nonlinear ultrasonic detection method could use for damage detection of anti-corrosion pipe. The nonlinear higher-harmonic is sensitive to delamination damage. The nonlinear ultrasonic method has the potential for damage detection for lined anti-corrosion pipes.https://www.mdpi.com/2076-3417/8/11/2240lined anti-corrosion pipesdelamination damagenonlinear ultrasonicwavelet packet transformHilbert–Huang transform
collection DOAJ
language English
format Article
sources DOAJ
author Xiaobin Hong
Yuan Liu
Xiaohui Lin
Zongqiang Luo
Zhenwei He
spellingShingle Xiaobin Hong
Yuan Liu
Xiaohui Lin
Zongqiang Luo
Zhenwei He
Nonlinear Ultrasonic Detection Method for Delamination Damage of Lined Anti-Corrosion Pipes Using PZT Transducers
Applied Sciences
lined anti-corrosion pipes
delamination damage
nonlinear ultrasonic
wavelet packet transform
Hilbert–Huang transform
author_facet Xiaobin Hong
Yuan Liu
Xiaohui Lin
Zongqiang Luo
Zhenwei He
author_sort Xiaobin Hong
title Nonlinear Ultrasonic Detection Method for Delamination Damage of Lined Anti-Corrosion Pipes Using PZT Transducers
title_short Nonlinear Ultrasonic Detection Method for Delamination Damage of Lined Anti-Corrosion Pipes Using PZT Transducers
title_full Nonlinear Ultrasonic Detection Method for Delamination Damage of Lined Anti-Corrosion Pipes Using PZT Transducers
title_fullStr Nonlinear Ultrasonic Detection Method for Delamination Damage of Lined Anti-Corrosion Pipes Using PZT Transducers
title_full_unstemmed Nonlinear Ultrasonic Detection Method for Delamination Damage of Lined Anti-Corrosion Pipes Using PZT Transducers
title_sort nonlinear ultrasonic detection method for delamination damage of lined anti-corrosion pipes using pzt transducers
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2018-11-01
description Lined anti-corrosion pipes are widely used in oil and gas, petrochemical, pharmaceutical industries. However, defects, especially delamination, may occur in the production and service of pipes which result in safety accidents. Based on nonlinear ultrasonic theory, this paper studied the delamination detection method using the nonlinear harmonics for lined anti-corrosion pipes. The response characteristics of the anti-corrosion pipe were obtained through a sweep sine response experiment and the preferred excitation frequency was determined. The Wavelet Packet transform and Hilbert⁻Huang transform is applied for signal process and feature extraction. Then, a series of experiments were carried out and the results were analyzed and discussed. The results showed that a second-order and third-order nonlinear coefficient increased with the delamination damage. The amplitude of second-harmonic is much stronger than the third-order one. The mean squared error of the nonlinear coefficient, which was processed by Wavelet Packet transform and Hilbert⁻Huang transform, is smaller than wavelet packet transform and Discrete Fourier transform or processed only Hilbert⁻Huang transform. The higher harmonics can describe the change of delamination damage, which means that the nonlinear ultrasonic detection method could use for damage detection of anti-corrosion pipe. The nonlinear higher-harmonic is sensitive to delamination damage. The nonlinear ultrasonic method has the potential for damage detection for lined anti-corrosion pipes.
topic lined anti-corrosion pipes
delamination damage
nonlinear ultrasonic
wavelet packet transform
Hilbert–Huang transform
url https://www.mdpi.com/2076-3417/8/11/2240
work_keys_str_mv AT xiaobinhong nonlinearultrasonicdetectionmethodfordelaminationdamageoflinedanticorrosionpipesusingpzttransducers
AT yuanliu nonlinearultrasonicdetectionmethodfordelaminationdamageoflinedanticorrosionpipesusingpzttransducers
AT xiaohuilin nonlinearultrasonicdetectionmethodfordelaminationdamageoflinedanticorrosionpipesusingpzttransducers
AT zongqiangluo nonlinearultrasonicdetectionmethodfordelaminationdamageoflinedanticorrosionpipesusingpzttransducers
AT zhenweihe nonlinearultrasonicdetectionmethodfordelaminationdamageoflinedanticorrosionpipesusingpzttransducers
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