Study on the Main Factors of Frequency Variation of LC Resonant Prestress Detection Method

Stress loss of prestressed steel strands of existing bridges influences their bearing capacity, so it is of great significance to realize the stress detection. A steel strand that has an inductive property is designed into the resonant circuit, which can realize the stress measurement of the steel s...

Full description

Saved in:
Bibliographic Details
Main Authors: Benniu Zhang, Yuanyuan Zhao, Xingxing Li, Yanpeng Su, Qiang Yin, Jianhui Jiang
Format: Article
Language:English
Published: Wiley 2020-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2020/9526843
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832566260308639744
author Benniu Zhang
Yuanyuan Zhao
Xingxing Li
Yanpeng Su
Qiang Yin
Jianhui Jiang
author_facet Benniu Zhang
Yuanyuan Zhao
Xingxing Li
Yanpeng Su
Qiang Yin
Jianhui Jiang
author_sort Benniu Zhang
collection DOAJ
description Stress loss of prestressed steel strands of existing bridges influences their bearing capacity, so it is of great significance to realize the stress detection. A steel strand that has an inductive property is designed into the resonant circuit, which can realize the stress measurement of the steel strands by testing the resonant frequency. This method is a promising approach for the stress detection of the steel strands. Previous research found that structural stress made the permeability of steel strands change due to the influence of magnetoelastic effect. In the process, the length of steel strands is also changed. Therefore, further research needs to be done to verify the main influence parameter affecting the resonant frequency of the circuit. Furthermore, it is very important to know how the stress affects the resonant frequency to realize the detection of the prestressed force of the steel strands. Therefore, in this paper, the relationship between stress and relative permeability and length is analyzed theoretically, and the theory of stress frequency of steel strands is modified and verified by experiments. The stress-frequency experiments of steel strands and aluminum strands with great difference in relative permeability are carried out. Experiments on stress frequencies of 7-Ф15.20 mm steel strands with different lengths are carried out. The influence of length and permeability parameters on resonance frequency is analyzed. The experimental results show that under the same conditions, the resonant frequencies of steel strands and aluminum strands are almost the same on LC electric circuits, and the resonant frequency decreases linearly with the increase of the natural length of the component and increases linearly with the increase of stress. Consequently, compared with the influence of length change on LC electromagnetic resonance frequency, the relative permeability of the stress change component can be ignored. The stress changes the resonant frequency mainly by changing the length of the strands.
format Article
id doaj-art-11d59cb898a3493daa524c2c9417f0a0
institution Kabale University
issn 1687-8434
1687-8442
language English
publishDate 2020-01-01
publisher Wiley
record_format Article
series Advances in Materials Science and Engineering
spelling doaj-art-11d59cb898a3493daa524c2c9417f0a02025-02-03T01:04:38ZengWileyAdvances in Materials Science and Engineering1687-84341687-84422020-01-01202010.1155/2020/95268439526843Study on the Main Factors of Frequency Variation of LC Resonant Prestress Detection MethodBenniu Zhang0Yuanyuan Zhao1Xingxing Li2Yanpeng Su3Qiang Yin4Jianhui Jiang5Chongqing Jiaotong University, Chongqing 400074, ChinaChongqing Jiaotong University, Chongqing 400074, ChinaChongqing Jiaotong University, Chongqing 400074, ChinaChongqing Jiaotong University, Chongqing 400074, ChinaXinjiang Communications Construction Group Co., Ltd., Urumchi 830000, ChinaXinjiang Communications Construction Group Co., Ltd., Urumchi 830000, ChinaStress loss of prestressed steel strands of existing bridges influences their bearing capacity, so it is of great significance to realize the stress detection. A steel strand that has an inductive property is designed into the resonant circuit, which can realize the stress measurement of the steel strands by testing the resonant frequency. This method is a promising approach for the stress detection of the steel strands. Previous research found that structural stress made the permeability of steel strands change due to the influence of magnetoelastic effect. In the process, the length of steel strands is also changed. Therefore, further research needs to be done to verify the main influence parameter affecting the resonant frequency of the circuit. Furthermore, it is very important to know how the stress affects the resonant frequency to realize the detection of the prestressed force of the steel strands. Therefore, in this paper, the relationship between stress and relative permeability and length is analyzed theoretically, and the theory of stress frequency of steel strands is modified and verified by experiments. The stress-frequency experiments of steel strands and aluminum strands with great difference in relative permeability are carried out. Experiments on stress frequencies of 7-Ф15.20 mm steel strands with different lengths are carried out. The influence of length and permeability parameters on resonance frequency is analyzed. The experimental results show that under the same conditions, the resonant frequencies of steel strands and aluminum strands are almost the same on LC electric circuits, and the resonant frequency decreases linearly with the increase of the natural length of the component and increases linearly with the increase of stress. Consequently, compared with the influence of length change on LC electromagnetic resonance frequency, the relative permeability of the stress change component can be ignored. The stress changes the resonant frequency mainly by changing the length of the strands.http://dx.doi.org/10.1155/2020/9526843
spellingShingle Benniu Zhang
Yuanyuan Zhao
Xingxing Li
Yanpeng Su
Qiang Yin
Jianhui Jiang
Study on the Main Factors of Frequency Variation of LC Resonant Prestress Detection Method
Advances in Materials Science and Engineering
title Study on the Main Factors of Frequency Variation of LC Resonant Prestress Detection Method
title_full Study on the Main Factors of Frequency Variation of LC Resonant Prestress Detection Method
title_fullStr Study on the Main Factors of Frequency Variation of LC Resonant Prestress Detection Method
title_full_unstemmed Study on the Main Factors of Frequency Variation of LC Resonant Prestress Detection Method
title_short Study on the Main Factors of Frequency Variation of LC Resonant Prestress Detection Method
title_sort study on the main factors of frequency variation of lc resonant prestress detection method
url http://dx.doi.org/10.1155/2020/9526843
work_keys_str_mv AT benniuzhang studyonthemainfactorsoffrequencyvariationoflcresonantprestressdetectionmethod
AT yuanyuanzhao studyonthemainfactorsoffrequencyvariationoflcresonantprestressdetectionmethod
AT xingxingli studyonthemainfactorsoffrequencyvariationoflcresonantprestressdetectionmethod
AT yanpengsu studyonthemainfactorsoffrequencyvariationoflcresonantprestressdetectionmethod
AT qiangyin studyonthemainfactorsoffrequencyvariationoflcresonantprestressdetectionmethod
AT jianhuijiang studyonthemainfactorsoffrequencyvariationoflcresonantprestressdetectionmethod