Full-Scale Experimental Investigation of the Static and Dynamic Stiffness of Prestressed Concrete Girders

Cracking damage influences the stiffness of the girders. Many articles in the literatures have studied the development of stiffness of the scale-down model; however, full-scale model testing cannot be completely replaced by scale-down testing because of material component characteristics and boundar...

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Main Authors: Yongjun Zhou, Yu Zhao, Hengying Yao, Yuan Jing
Format: Article
Language:English
Published: Hindawi Limited 2019-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2019/7646094
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spelling doaj-f3b813672d674c6795123cd40f788d342020-11-25T02:01:42ZengHindawi LimitedShock and Vibration1070-96221875-92032019-01-01201910.1155/2019/76460947646094Full-Scale Experimental Investigation of the Static and Dynamic Stiffness of Prestressed Concrete GirdersYongjun Zhou0Yu Zhao1Hengying Yao2Yuan Jing3School of Highway, Chang’an University, Xi’an, Shaanxi Province 710064, ChinaSchool of Highway, Chang’an University, Xi’an, Shaanxi Province 710064, ChinaSchool of Highway, Chang’an University, Xi’an, Shaanxi Province 710064, ChinaSchool of Highway, Chang’an University, Xi’an, Shaanxi Province 710064, ChinaCracking damage influences the stiffness of the girders. Many articles in the literatures have studied the development of stiffness of the scale-down model; however, full-scale model testing cannot be completely replaced by scale-down testing because of material component characteristics and boundary effects. This paper deals with the effects of cracking damage on the structural static and dynamic stiffness based on three prestressed concrete (PC) girders which were removed from an old bridge. First, the equivalent flexural rigidity of cracked prestressed concrete girder was assessed using the measured load-deflection response under cycles of loading and unloading. Then, after unloading, the frequencies were measured on the PC girders supported by the elastomeric bearings. Next, the development of frequency under different damage was studied, and finally, the dynamic stiffness of PC girders with cracks was assessed. The results indicate that the first frequency is more sensitive to the cracking of concrete compared with the second frequency and that the mode shapes are not sensitive to girder damage. The test girders cannot be simplified as an ideal simply supported beam for the purpose of identifying frequencies. In addition, the “final” (the end of the ultimate load case) equivalent flexural rigidity of the girders is 30% of the “initial” (the beginning of the first load case) equivalent flexural rigidity, compared with 50% in the scale-down test; and the final dynamic stiffness is approximately 84% of the initial dynamic stiffness, whereas the scale-down test is 72%.http://dx.doi.org/10.1155/2019/7646094
collection DOAJ
language English
format Article
sources DOAJ
author Yongjun Zhou
Yu Zhao
Hengying Yao
Yuan Jing
spellingShingle Yongjun Zhou
Yu Zhao
Hengying Yao
Yuan Jing
Full-Scale Experimental Investigation of the Static and Dynamic Stiffness of Prestressed Concrete Girders
Shock and Vibration
author_facet Yongjun Zhou
Yu Zhao
Hengying Yao
Yuan Jing
author_sort Yongjun Zhou
title Full-Scale Experimental Investigation of the Static and Dynamic Stiffness of Prestressed Concrete Girders
title_short Full-Scale Experimental Investigation of the Static and Dynamic Stiffness of Prestressed Concrete Girders
title_full Full-Scale Experimental Investigation of the Static and Dynamic Stiffness of Prestressed Concrete Girders
title_fullStr Full-Scale Experimental Investigation of the Static and Dynamic Stiffness of Prestressed Concrete Girders
title_full_unstemmed Full-Scale Experimental Investigation of the Static and Dynamic Stiffness of Prestressed Concrete Girders
title_sort full-scale experimental investigation of the static and dynamic stiffness of prestressed concrete girders
publisher Hindawi Limited
series Shock and Vibration
issn 1070-9622
1875-9203
publishDate 2019-01-01
description Cracking damage influences the stiffness of the girders. Many articles in the literatures have studied the development of stiffness of the scale-down model; however, full-scale model testing cannot be completely replaced by scale-down testing because of material component characteristics and boundary effects. This paper deals with the effects of cracking damage on the structural static and dynamic stiffness based on three prestressed concrete (PC) girders which were removed from an old bridge. First, the equivalent flexural rigidity of cracked prestressed concrete girder was assessed using the measured load-deflection response under cycles of loading and unloading. Then, after unloading, the frequencies were measured on the PC girders supported by the elastomeric bearings. Next, the development of frequency under different damage was studied, and finally, the dynamic stiffness of PC girders with cracks was assessed. The results indicate that the first frequency is more sensitive to the cracking of concrete compared with the second frequency and that the mode shapes are not sensitive to girder damage. The test girders cannot be simplified as an ideal simply supported beam for the purpose of identifying frequencies. In addition, the “final” (the end of the ultimate load case) equivalent flexural rigidity of the girders is 30% of the “initial” (the beginning of the first load case) equivalent flexural rigidity, compared with 50% in the scale-down test; and the final dynamic stiffness is approximately 84% of the initial dynamic stiffness, whereas the scale-down test is 72%.
url http://dx.doi.org/10.1155/2019/7646094
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