Mechanical structural health prognosis with nonlinear mixed frequency ultrasonic signal analysis

In order to detect the early fatigue crack of mechanical components simply, this paper puts forward the ultrasonic testing technology of different side collinear mixing. Firstly, based on the nonlinear ultrasonic theory, the method of calculating the difference frequency and sum frequency nonlinear...

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Main Authors: Chen Hanxin, Liu Mingming, Hu Zhenyu, Li Menglong, Li Sen
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/44/e3sconf_vesep2020_01075.pdf
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spelling doaj-697bee7e068a448a9f4c7f00557ecd042021-06-15T07:34:28ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012680107510.1051/e3sconf/202126801075e3sconf_vesep2020_01075Mechanical structural health prognosis with nonlinear mixed frequency ultrasonic signal analysisChen HanxinLiu MingmingHu ZhenyuLi MenglongLi SenIn order to detect the early fatigue crack of mechanical components simply, this paper puts forward the ultrasonic testing technology of different side collinear mixing. Firstly, based on the nonlinear ultrasonic theory, the method of calculating the difference frequency and sum frequency nonlinear coefficients of mixing ultrasonic is deduced. Then, the ram-5000 SINAP ultrasonic system is used to detect the aluminum alloy specimens with five different depth fatigue cracks, and the corresponding spectrum diagram is drawn. From the experimental results, we get that the crack depth is positively correlated with the nonlinear coefficients of difference frequency and sum frequency within a certain crack depth. Finally, by analyzing and fitting the experimental data, the prediction models of the difference frequency and sum frequency nonlinear coefficients on the crack depth are established. Through the analysis and combination of the above two prediction models, the prediction model of the mixing relative nonlinear coefficient is established, and the average error of the three prediction models is compared. The results show that the mixing relative nonlinear model has better results. The research work in this paper makes a useful exploration for crack detection and crack depth prediction.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/44/e3sconf_vesep2020_01075.pdfmicrodefectcollinear mixingultrasonic prognosisnonlinear coefficient
collection DOAJ
language English
format Article
sources DOAJ
author Chen Hanxin
Liu Mingming
Hu Zhenyu
Li Menglong
Li Sen
spellingShingle Chen Hanxin
Liu Mingming
Hu Zhenyu
Li Menglong
Li Sen
Mechanical structural health prognosis with nonlinear mixed frequency ultrasonic signal analysis
E3S Web of Conferences
microdefect
collinear mixing
ultrasonic prognosis
nonlinear coefficient
author_facet Chen Hanxin
Liu Mingming
Hu Zhenyu
Li Menglong
Li Sen
author_sort Chen Hanxin
title Mechanical structural health prognosis with nonlinear mixed frequency ultrasonic signal analysis
title_short Mechanical structural health prognosis with nonlinear mixed frequency ultrasonic signal analysis
title_full Mechanical structural health prognosis with nonlinear mixed frequency ultrasonic signal analysis
title_fullStr Mechanical structural health prognosis with nonlinear mixed frequency ultrasonic signal analysis
title_full_unstemmed Mechanical structural health prognosis with nonlinear mixed frequency ultrasonic signal analysis
title_sort mechanical structural health prognosis with nonlinear mixed frequency ultrasonic signal analysis
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description In order to detect the early fatigue crack of mechanical components simply, this paper puts forward the ultrasonic testing technology of different side collinear mixing. Firstly, based on the nonlinear ultrasonic theory, the method of calculating the difference frequency and sum frequency nonlinear coefficients of mixing ultrasonic is deduced. Then, the ram-5000 SINAP ultrasonic system is used to detect the aluminum alloy specimens with five different depth fatigue cracks, and the corresponding spectrum diagram is drawn. From the experimental results, we get that the crack depth is positively correlated with the nonlinear coefficients of difference frequency and sum frequency within a certain crack depth. Finally, by analyzing and fitting the experimental data, the prediction models of the difference frequency and sum frequency nonlinear coefficients on the crack depth are established. Through the analysis and combination of the above two prediction models, the prediction model of the mixing relative nonlinear coefficient is established, and the average error of the three prediction models is compared. The results show that the mixing relative nonlinear model has better results. The research work in this paper makes a useful exploration for crack detection and crack depth prediction.
topic microdefect
collinear mixing
ultrasonic prognosis
nonlinear coefficient
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/44/e3sconf_vesep2020_01075.pdf
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AT limenglong mechanicalstructuralhealthprognosiswithnonlinearmixedfrequencyultrasonicsignalanalysis
AT lisen mechanicalstructuralhealthprognosiswithnonlinearmixedfrequencyultrasonicsignalanalysis
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