Full‐field out‐of‐plane vibration displacement acquisition based on speckle‐projection digital image correlation and its application in damage localization

Abstract Stereo‐digital image correlation (Stereo‐DIC) has been widely explored for modal analysis in plate‐type structures due to its noncontact and full‐field advantages. However, when the traditional stereo‐DIC is adopted to capture the out‐of‐plane displacements, several challenging issues exist...

Full description

Bibliographic Details
Main Authors: Shancheng Cao, Jinwei Yan, Haibo Nian, Chao Xu
Format: Article
Language:English
Published: Wiley 2022-12-01
Series:International Journal of Mechanical System Dynamics
Subjects:
Online Access:https://doi.org/10.1002/msd2.12055
_version_ 1797978726951026688
author Shancheng Cao
Jinwei Yan
Haibo Nian
Chao Xu
author_facet Shancheng Cao
Jinwei Yan
Haibo Nian
Chao Xu
author_sort Shancheng Cao
collection DOAJ
description Abstract Stereo‐digital image correlation (Stereo‐DIC) has been widely explored for modal analysis in plate‐type structures due to its noncontact and full‐field advantages. However, when the traditional stereo‐DIC is adopted to capture the out‐of‐plane displacements, several challenging issues exist such as the development of surface speckles, asynchronous camera recording, and efficiency and accuracy degradation due to high computation costs. Moreover, with the captured out‐of‐plane displacements, effective and efficient evaluation of the high spatial resolution mode shapes and their application to damage localization are also critical problems. To tackle these issues, a speckle‐projection DIC technique using a single high‐speed camera is proposed to obtain the out‐of‐plane vibration displacements. Moreover, an enhanced peak‐picking modal analysis method is adopted to enhance the estimation accuracy and efficiency of mode shapes. In addition, the low‐rank property of mode shapes in an intact state and the spatial sparse property of damage locations are harnessed for the detection of damage positions without requiring reference data on the healthy state. Finally, the modal analysis and damage localization results based on the proposed speckle‐projection DIC are compared with those of the traditional two‐camera stereo‐DIC technique to verify its feasibility and effectiveness. It is found that the differences in the identified resonant frequencies between these two methods are smaller than 1% for higher modes. Moreover, the proposed speckle‐projection DIC has the same accuracy as the traditional two‐camera stereo‐DIC in terms of measurement accuracy, mode shape estimation, and damage localization.
first_indexed 2024-04-11T05:27:35Z
format Article
id doaj.art-dca9b0658cf846cda3f5acad0abeb3bb
institution Directory Open Access Journal
issn 2767-1402
language English
last_indexed 2024-04-11T05:27:35Z
publishDate 2022-12-01
publisher Wiley
record_format Article
series International Journal of Mechanical System Dynamics
spelling doaj.art-dca9b0658cf846cda3f5acad0abeb3bb2022-12-23T05:51:41ZengWileyInternational Journal of Mechanical System Dynamics2767-14022022-12-012436337310.1002/msd2.12055Full‐field out‐of‐plane vibration displacement acquisition based on speckle‐projection digital image correlation and its application in damage localizationShancheng Cao0Jinwei Yan1Haibo Nian2Chao Xu3School of Astronautics Northwestern Polytechnical University Xi'an ChinaChina Electronic Product Reliability and Environmental Testing Research Institute Guangzhou ChinaSchool of Astronautics Northwestern Polytechnical University Xi'an ChinaSchool of Astronautics Northwestern Polytechnical University Xi'an ChinaAbstract Stereo‐digital image correlation (Stereo‐DIC) has been widely explored for modal analysis in plate‐type structures due to its noncontact and full‐field advantages. However, when the traditional stereo‐DIC is adopted to capture the out‐of‐plane displacements, several challenging issues exist such as the development of surface speckles, asynchronous camera recording, and efficiency and accuracy degradation due to high computation costs. Moreover, with the captured out‐of‐plane displacements, effective and efficient evaluation of the high spatial resolution mode shapes and their application to damage localization are also critical problems. To tackle these issues, a speckle‐projection DIC technique using a single high‐speed camera is proposed to obtain the out‐of‐plane vibration displacements. Moreover, an enhanced peak‐picking modal analysis method is adopted to enhance the estimation accuracy and efficiency of mode shapes. In addition, the low‐rank property of mode shapes in an intact state and the spatial sparse property of damage locations are harnessed for the detection of damage positions without requiring reference data on the healthy state. Finally, the modal analysis and damage localization results based on the proposed speckle‐projection DIC are compared with those of the traditional two‐camera stereo‐DIC technique to verify its feasibility and effectiveness. It is found that the differences in the identified resonant frequencies between these two methods are smaller than 1% for higher modes. Moreover, the proposed speckle‐projection DIC has the same accuracy as the traditional two‐camera stereo‐DIC in terms of measurement accuracy, mode shape estimation, and damage localization.https://doi.org/10.1002/msd2.12055damage localizationdigital image correlationlow‐rank propertymodal analysisout‐of‐plane displacement
spellingShingle Shancheng Cao
Jinwei Yan
Haibo Nian
Chao Xu
Full‐field out‐of‐plane vibration displacement acquisition based on speckle‐projection digital image correlation and its application in damage localization
International Journal of Mechanical System Dynamics
damage localization
digital image correlation
low‐rank property
modal analysis
out‐of‐plane displacement
title Full‐field out‐of‐plane vibration displacement acquisition based on speckle‐projection digital image correlation and its application in damage localization
title_full Full‐field out‐of‐plane vibration displacement acquisition based on speckle‐projection digital image correlation and its application in damage localization
title_fullStr Full‐field out‐of‐plane vibration displacement acquisition based on speckle‐projection digital image correlation and its application in damage localization
title_full_unstemmed Full‐field out‐of‐plane vibration displacement acquisition based on speckle‐projection digital image correlation and its application in damage localization
title_short Full‐field out‐of‐plane vibration displacement acquisition based on speckle‐projection digital image correlation and its application in damage localization
title_sort full field out of plane vibration displacement acquisition based on speckle projection digital image correlation and its application in damage localization
topic damage localization
digital image correlation
low‐rank property
modal analysis
out‐of‐plane displacement
url https://doi.org/10.1002/msd2.12055
work_keys_str_mv AT shanchengcao fullfieldoutofplanevibrationdisplacementacquisitionbasedonspeckleprojectiondigitalimagecorrelationanditsapplicationindamagelocalization
AT jinweiyan fullfieldoutofplanevibrationdisplacementacquisitionbasedonspeckleprojectiondigitalimagecorrelationanditsapplicationindamagelocalization
AT haibonian fullfieldoutofplanevibrationdisplacementacquisitionbasedonspeckleprojectiondigitalimagecorrelationanditsapplicationindamagelocalization
AT chaoxu fullfieldoutofplanevibrationdisplacementacquisitionbasedonspeckleprojectiondigitalimagecorrelationanditsapplicationindamagelocalization