Study on deformation, damage, and energy dissipation characteristics of limestone under impact loading

This study investigates wet–dry cycled limestone specimens through dynamic impact loading experiments using a split Hopkinson pressure bar system. The strain field evolution mechanisms were systematically characterized via the digital image correlation technique. Critical analyses were performed on...

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Main Authors: Bo Tian, PengFei Gao
Format: Article
Language:English
Published: AIP Publishing LLC 2025-05-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/5.0270472
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author Bo Tian
PengFei Gao
author_facet Bo Tian
PengFei Gao
author_sort Bo Tian
collection DOAJ
description This study investigates wet–dry cycled limestone specimens through dynamic impact loading experiments using a split Hopkinson pressure bar system. The strain field evolution mechanisms were systematically characterized via the digital image correlation technique. Critical analyses were performed on energy dissipation behavior and fractal dimension evolution during impact compression processes, with particular emphasis on their dependence on loading intensities and wet–dry cycling frequencies. The experimental findings offer critical empirical references for engineering design and construction practices in geotechnical applications.
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id doaj-art-34331e3e308e459aac174794f7d30bfb
institution DOAJ
issn 2158-3226
language English
publishDate 2025-05-01
publisher AIP Publishing LLC
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series AIP Advances
spelling doaj-art-34331e3e308e459aac174794f7d30bfb2025-08-20T03:19:43ZengAIP Publishing LLCAIP Advances2158-32262025-05-01155055312055312-1210.1063/5.0270472Study on deformation, damage, and energy dissipation characteristics of limestone under impact loadingBo Tian0PengFei Gao1Anhui Jiangnan Chemical Industry Co., Ltd., Hefei, Anhui, People’s Republic of ChinaAnhui Jiangnan Chemical Industry Co., Ltd., Hefei, Anhui, People’s Republic of ChinaThis study investigates wet–dry cycled limestone specimens through dynamic impact loading experiments using a split Hopkinson pressure bar system. The strain field evolution mechanisms were systematically characterized via the digital image correlation technique. Critical analyses were performed on energy dissipation behavior and fractal dimension evolution during impact compression processes, with particular emphasis on their dependence on loading intensities and wet–dry cycling frequencies. The experimental findings offer critical empirical references for engineering design and construction practices in geotechnical applications.http://dx.doi.org/10.1063/5.0270472
spellingShingle Bo Tian
PengFei Gao
Study on deformation, damage, and energy dissipation characteristics of limestone under impact loading
AIP Advances
title Study on deformation, damage, and energy dissipation characteristics of limestone under impact loading
title_full Study on deformation, damage, and energy dissipation characteristics of limestone under impact loading
title_fullStr Study on deformation, damage, and energy dissipation characteristics of limestone under impact loading
title_full_unstemmed Study on deformation, damage, and energy dissipation characteristics of limestone under impact loading
title_short Study on deformation, damage, and energy dissipation characteristics of limestone under impact loading
title_sort study on deformation damage and energy dissipation characteristics of limestone under impact loading
url http://dx.doi.org/10.1063/5.0270472
work_keys_str_mv AT botian studyondeformationdamageandenergydissipationcharacteristicsoflimestoneunderimpactloading
AT pengfeigao studyondeformationdamageandenergydissipationcharacteristicsoflimestoneunderimpactloading