Counter-intuitive collapse of single-layer reticulated domes subject to interior blast loading

A commercial finite element package, LS-DYNA, was employed to simulate the response of a single-layer reticulated dome to an interior blast. The dome, which was initially stressed by static preloading, encountered an interesting phenomenon namely counter-intuitive collapse, which was found during th...

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Published inThin-walled structures Vol. 96; pp. 130 - 138
Main Authors Ma, Jialu, Fan, Feng, Wu, Chengqing, Zhi, Xudong
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.11.2015
Subjects
Online AccessGet full text
ISSN0263-8231
1879-3223
DOI10.1016/j.tws.2015.08.001

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Abstract A commercial finite element package, LS-DYNA, was employed to simulate the response of a single-layer reticulated dome to an interior blast. The dome, which was initially stressed by static preloading, encountered an interesting phenomenon namely counter-intuitive collapse, which was found during the blast analysis. The Johnson–Cook constitutive model for mild steel was used to identify different failure modes of the dome for more than 2430 samples. A seemingly counter-intuitive collapse was identified due to dynamic instability. This unusual collapse was explained using total potential curves, and the critical blast load was defined. The effect of different static preloads, which is the other determination factor of counter-intuitive collapse, was investigated. A relationship between collapse and static/dynamic loads was also obtained. The results indicate that single-layer reticulated domes, with large initial stresses, may collapse at lower dynamic loads than expected. •Reasonable method for reticulated dome subject to interior blast loading.•Four failure modes were identified, counter-intuitive collapses was explained.•Relationships between collapse and static/dynamic loading were analysed.•Response zones were formed for blast-resistant design.
AbstractList A commercial finite element package, LS-DYNA, was employed to simulate the response of a single-layer reticulated dome to an interior blast. The dome, which was initially stressed by static preloading, encountered an interesting phenomenon namely counter-intuitive collapse, which was found during the blast analysis. The Johnson–Cook constitutive model for mild steel was used to identify different failure modes of the dome for more than 2430 samples. A seemingly counter-intuitive collapse was identified due to dynamic instability. This unusual collapse was explained using total potential curves, and the critical blast load was defined. The effect of different static preloads, which is the other determination factor of counter-intuitive collapse, was investigated. A relationship between collapse and static/dynamic loads was also obtained. The results indicate that single-layer reticulated domes, with large initial stresses, may collapse at lower dynamic loads than expected. •Reasonable method for reticulated dome subject to interior blast loading.•Four failure modes were identified, counter-intuitive collapses was explained.•Relationships between collapse and static/dynamic loading were analysed.•Response zones were formed for blast-resistant design.
A commercial finite element package, LS-DYNA, was employed to simulate the response of a single-layer reticulated dome to an interior blast. The dome, which was initially stressed by static preloading, encountered an interesting phenomenon namely counter-intuitive collapse, which was found during the blast analysis. The Johnson-Cook constitutive model for mild steel was used to identify different failure modes of the dome for more than 2430 samples. A seemingly counter-intuitive collapse was identified due to dynamic instability. This unusual collapse was explained using total potential curves, and the critical blast load was defined. The effect of different static preloads, which is the other determination factor of counter-intuitive collapse, was investigated. A relationship between collapse and static/dynamic loads was also obtained. The results indicate that single-layer reticulated domes, with large initial stresses, may collapse at lower dynamic loads than expected.
Author Fan, Feng
Wu, Chengqing
Zhi, Xudong
Ma, Jialu
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Keywords Single-layer reticulated dome
Dynamic instability
Counter-intuitive behaviour
Interior blast loading
Failure modes
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Snippet A commercial finite element package, LS-DYNA, was employed to simulate the response of a single-layer reticulated dome to an interior blast. The dome, which...
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SubjectTerms Collapse
Counter-intuitive behaviour
Domes
Dynamic instability
Dynamic loads
Failure modes
Initial stresses
Interior blast loading
Mathematical analysis
Mathematical models
Packages
Single-layer reticulated dome
Title Counter-intuitive collapse of single-layer reticulated domes subject to interior blast loading
URI https://dx.doi.org/10.1016/j.tws.2015.08.001
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