Effect of High-cyclic Loads on Dynamic Response of Reinforced Concrete Slabs

Bridge reinforced concrete deck slabs are often subjected to various cyclic loadings—making regular checks for fatigue damage necessary. Several experiments on reinforced concrete structures were conducted to evaluate its mechanical fatigue behaviour. Nevertheless, adequate experimental investigatio...

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Published in:KSCE Journal of Civil Engineering
Main Author: Jamadin A.; Ibrahim Z.; Jumaat M.Z.; Wahab E.S.A.
Format: Article
Language:English
Published: Springer Verlag 2019
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85060037757&doi=10.1007%2fs12205-019-0889-1&partnerID=40&md5=5e8ddf91ed5243ec41941b0b7a40130e
id 2-s2.0-85060037757
spelling 2-s2.0-85060037757
Jamadin A.; Ibrahim Z.; Jumaat M.Z.; Wahab E.S.A.
Effect of High-cyclic Loads on Dynamic Response of Reinforced Concrete Slabs
2019
KSCE Journal of Civil Engineering
23
3
10.1007/s12205-019-0889-1
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85060037757&doi=10.1007%2fs12205-019-0889-1&partnerID=40&md5=5e8ddf91ed5243ec41941b0b7a40130e
Bridge reinforced concrete deck slabs are often subjected to various cyclic loadings—making regular checks for fatigue damage necessary. Several experiments on reinforced concrete structures were conducted to evaluate its mechanical fatigue behaviour. Nevertheless, adequate experimental investigations on its dynamic properties are still needed. This paper reports on the test performed on three identical reinforced concrete slabs, with different cyclic load number and after the cycles, the load was increased up to the static failure. Modal testing was performed after each step of loading to assess their dynamic performance using modal parameters (natural frequencies, mode shapes and damping ratios). Finite element model was used to predict the natural frequency of the reinforced concrete slabs and their reliability was checked through model updating. The results showed the intensity of fatigued structures causes significant changes to the modal parameters and structural loading capacity. The study explores how fatigued structure can be assessed from dynamic performance, and also can be quantified through its structural stiffness, ultimately offering a better way of using non-destructive modal testing in identifying its structural health as compared to conventional testing techniques. © 2019, Korean Society of Civil Engineers.
Springer Verlag
12267988
English
Article

author Jamadin A.; Ibrahim Z.; Jumaat M.Z.; Wahab E.S.A.
spellingShingle Jamadin A.; Ibrahim Z.; Jumaat M.Z.; Wahab E.S.A.
Effect of High-cyclic Loads on Dynamic Response of Reinforced Concrete Slabs
author_facet Jamadin A.; Ibrahim Z.; Jumaat M.Z.; Wahab E.S.A.
author_sort Jamadin A.; Ibrahim Z.; Jumaat M.Z.; Wahab E.S.A.
title Effect of High-cyclic Loads on Dynamic Response of Reinforced Concrete Slabs
title_short Effect of High-cyclic Loads on Dynamic Response of Reinforced Concrete Slabs
title_full Effect of High-cyclic Loads on Dynamic Response of Reinforced Concrete Slabs
title_fullStr Effect of High-cyclic Loads on Dynamic Response of Reinforced Concrete Slabs
title_full_unstemmed Effect of High-cyclic Loads on Dynamic Response of Reinforced Concrete Slabs
title_sort Effect of High-cyclic Loads on Dynamic Response of Reinforced Concrete Slabs
publishDate 2019
container_title KSCE Journal of Civil Engineering
container_volume 23
container_issue 3
doi_str_mv 10.1007/s12205-019-0889-1
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85060037757&doi=10.1007%2fs12205-019-0889-1&partnerID=40&md5=5e8ddf91ed5243ec41941b0b7a40130e
description Bridge reinforced concrete deck slabs are often subjected to various cyclic loadings—making regular checks for fatigue damage necessary. Several experiments on reinforced concrete structures were conducted to evaluate its mechanical fatigue behaviour. Nevertheless, adequate experimental investigations on its dynamic properties are still needed. This paper reports on the test performed on three identical reinforced concrete slabs, with different cyclic load number and after the cycles, the load was increased up to the static failure. Modal testing was performed after each step of loading to assess their dynamic performance using modal parameters (natural frequencies, mode shapes and damping ratios). Finite element model was used to predict the natural frequency of the reinforced concrete slabs and their reliability was checked through model updating. The results showed the intensity of fatigued structures causes significant changes to the modal parameters and structural loading capacity. The study explores how fatigued structure can be assessed from dynamic performance, and also can be quantified through its structural stiffness, ultimately offering a better way of using non-destructive modal testing in identifying its structural health as compared to conventional testing techniques. © 2019, Korean Society of Civil Engineers.
publisher Springer Verlag
issn 12267988
language English
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