Experimental study of impact loading effect on bridge substructures including piles
One of the main reasons of bridge substructure’s collapse is due to vehicular collision to its support, specifically columns, and as of now, there is a lack of understanding on the inter-relation between columns and piles when subjected to impact load. As such, the major purpose of this investigatio...
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2021
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my.upm.eprints.972052022-09-13T05:06:52Z http://psasir.upm.edu.my/id/eprint/97205/ Experimental study of impact loading effect on bridge substructures including piles Abdul Malek, Muhamad Aziman Muhammad Rashid, Raizal Saifulnaz Shukri, Ahmad Azim El-Zeadani, Mohamed One of the main reasons of bridge substructure’s collapse is due to vehicular collision to its support, specifically columns, and as of now, there is a lack of understanding on the inter-relation between columns and piles when subjected to impact load. As such, the major purpose of this investigation was to study the behaviour of concrete columns under vehicular collision (impact load) and assess the stresses distributed to piles due to collision. Experimental tests were performed by conducting pendulum impact tests on scaled down concrete specimens. The findings of the study showed an expected behaviour in terms of peak displacement along the columns where the displacement reduced as the size of the columns increased. Furthermore, increasing the column size also reduced the load transferred to the piles during vehicular collision. Elsevier 2021 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/97205/1/ABSTRACT.pdf Abdul Malek, Muhamad Aziman and Muhammad Rashid, Raizal Saifulnaz and Shukri, Ahmad Azim and El-Zeadani, Mohamed (2021) Experimental study of impact loading effect on bridge substructures including piles. Structures, 31. 419 - 427. ISSN 2352-0124 https://www.sciencedirect.com/science/article/pii/S2352012421001211 10.1016/j.istruc.2021.02.010 |
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One of the main reasons of bridge substructure’s collapse is due to vehicular collision to its support, specifically columns, and as of now, there is a lack of understanding on the inter-relation between columns and piles when subjected to impact load. As such, the major purpose of this investigation was to study the behaviour of concrete columns under vehicular collision (impact load) and assess the stresses distributed to piles due to collision. Experimental tests were performed by conducting pendulum impact tests on scaled down concrete specimens. The findings of the study showed an expected behaviour in terms of peak displacement along the columns where the displacement reduced as the size of the columns increased. Furthermore, increasing the column size also reduced the load transferred to the piles during vehicular collision. |
format |
Article |
author |
Abdul Malek, Muhamad Aziman Muhammad Rashid, Raizal Saifulnaz Shukri, Ahmad Azim El-Zeadani, Mohamed |
spellingShingle |
Abdul Malek, Muhamad Aziman Muhammad Rashid, Raizal Saifulnaz Shukri, Ahmad Azim El-Zeadani, Mohamed Experimental study of impact loading effect on bridge substructures including piles |
author_facet |
Abdul Malek, Muhamad Aziman Muhammad Rashid, Raizal Saifulnaz Shukri, Ahmad Azim El-Zeadani, Mohamed |
author_sort |
Abdul Malek, Muhamad Aziman |
title |
Experimental study of impact loading effect on bridge substructures including piles |
title_short |
Experimental study of impact loading effect on bridge substructures including piles |
title_full |
Experimental study of impact loading effect on bridge substructures including piles |
title_fullStr |
Experimental study of impact loading effect on bridge substructures including piles |
title_full_unstemmed |
Experimental study of impact loading effect on bridge substructures including piles |
title_sort |
experimental study of impact loading effect on bridge substructures including piles |
publisher |
Elsevier |
publishDate |
2021 |
url |
http://psasir.upm.edu.my/id/eprint/97205/1/ABSTRACT.pdf http://psasir.upm.edu.my/id/eprint/97205/ https://www.sciencedirect.com/science/article/pii/S2352012421001211 |
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