The energy absorbing properties of bamboo-based structures
A series of quasi-static and dynamic tests on bamboo-based honeycomb and bamboo-reinforced foam structures were carried out to investigate their energy absorbing characteristics and the related failure modes. Here, the tube damage shows the typical buckling (bulging) and top surface splitting failur...
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my.upm.eprints.634482018-08-24T08:02:52Z http://psasir.upm.edu.my/id/eprint/63448/ The energy absorbing properties of bamboo-based structures Mohamed Yusoff, Mohd Zuhri Liao, Yang Wang, Qing-Yin Guan, Zhi-Wen A series of quasi-static and dynamic tests on bamboo-based honeycomb and bamboo-reinforced foam structures were carried out to investigate their energy absorbing characteristics and the related failure modes. Here, the tube damage shows the typical buckling (bulging) and top surface splitting failure. The results on the individual tubes show that the energy absorbing capacity increases as the diameter-to-thickness ratio decreases. Simple analytical models were also developed to predict the peak load and the corresponding displacement, with reasonably good correlation to the experimental results, in spite of the inherent variability of the bamboo tubes. It was found that different dynamic responses of the individual bamboo tubes and grouped bamboo tubes in the honeycomb cores affect their energy absorbing capabilities. The composite structure made from bamboo and foam shows that the embedded tube exhibits a higher energy absorption capacity than the sum of the individual foam and bamboo, due to the constraint offered by the foam. SAGE Journals 2017-05-22 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/63448/1/The%20energy%20absorbing%20properties%20of%20bamboo-based%20.pdf Mohamed Yusoff, Mohd Zuhri and Liao, Yang and Wang, Qing-Yin and Guan, Zhi-Wen (2017) The energy absorbing properties of bamboo-based structures. Journal of Sandwich Structures & Materials. ISSN 1099-6362; ESSN: 1530-7972 http://journals.sagepub.com/doi/abs/10.1177/1099636217707171 10.1177/1099636217707171 |
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A series of quasi-static and dynamic tests on bamboo-based honeycomb and bamboo-reinforced foam structures were carried out to investigate their energy absorbing characteristics and the related failure modes. Here, the tube damage shows the typical buckling (bulging) and top surface splitting failure. The results on the individual tubes show that the energy absorbing capacity increases as the diameter-to-thickness ratio decreases. Simple analytical models were also developed to predict the peak load and the corresponding displacement, with reasonably good correlation to the experimental results, in spite of the inherent variability of the bamboo tubes. It was found that different dynamic responses of the individual bamboo tubes and grouped bamboo tubes in the honeycomb cores affect their energy absorbing capabilities. The composite structure made from bamboo and foam shows that the embedded tube exhibits a higher energy absorption capacity than the sum of the individual foam and bamboo, due to the constraint offered by the foam. |
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Article |
author |
Mohamed Yusoff, Mohd Zuhri Liao, Yang Wang, Qing-Yin Guan, Zhi-Wen |
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Mohamed Yusoff, Mohd Zuhri Liao, Yang Wang, Qing-Yin Guan, Zhi-Wen The energy absorbing properties of bamboo-based structures |
author_facet |
Mohamed Yusoff, Mohd Zuhri Liao, Yang Wang, Qing-Yin Guan, Zhi-Wen |
author_sort |
Mohamed Yusoff, Mohd Zuhri |
title |
The energy absorbing properties of bamboo-based structures |
title_short |
The energy absorbing properties of bamboo-based structures |
title_full |
The energy absorbing properties of bamboo-based structures |
title_fullStr |
The energy absorbing properties of bamboo-based structures |
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The energy absorbing properties of bamboo-based structures |
title_sort |
energy absorbing properties of bamboo-based structures |
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SAGE Journals |
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2017 |
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http://psasir.upm.edu.my/id/eprint/63448/1/The%20energy%20absorbing%20properties%20of%20bamboo-based%20.pdf http://psasir.upm.edu.my/id/eprint/63448/ http://journals.sagepub.com/doi/abs/10.1177/1099636217707171 |
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