Distributed Strain Monitoring of Railway Composite Bogies Using a Brillouin Optical Correlation Domain Analysis System

The structural deformation of a bogie frame manufactured using a composite material was monitored in real time using a distributed optical fiber sensor. The bogie frame contained an internally embedded standard single-mode optical fiber. Performance tests were conducted by applying a vertical load t...

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Main Authors: Hyuk-Jin Yoon, Jung-Seok Kim, Kwang-Yong Song, Hyun-Woo Cho, Ju-Yeong Jung
Format: Article
Language:English
Published: MDPI AG 2018-09-01
Series:Applied Sciences
Subjects:
Online Access:http://www.mdpi.com/2076-3417/8/10/1755
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spelling doaj-70b3c8638c0a4001b8b35e17c5b9a59a2020-11-25T00:21:43ZengMDPI AGApplied Sciences2076-34172018-09-01810175510.3390/app8101755app8101755Distributed Strain Monitoring of Railway Composite Bogies Using a Brillouin Optical Correlation Domain Analysis SystemHyuk-Jin Yoon0Jung-Seok Kim1Kwang-Yong Song2Hyun-Woo Cho3Ju-Yeong Jung4Korea Railroad Research Institute, Uiwang-si 16105, Gyeonggi-do, KoreaKorea Railroad Research Institute, Uiwang-si 16105, Gyeonggi-do, KoreaDept. of Physics, Chung-Ang University, Seoul 06974, KoreaKorea Railroad Research Institute, Uiwang-si 16105, Gyeonggi-do, KoreaKorea Railroad Research Institute, Uiwang-si 16105, Gyeonggi-do, KoreaThe structural deformation of a bogie frame manufactured using a composite material was monitored in real time using a distributed optical fiber sensor. The bogie frame contained an internally embedded standard single-mode optical fiber. Performance tests were conducted by applying a vertical load to the middle of the side beams on each side of the composite bogie frame. The strain distribution was monitored using an optical fiber sensor. A distributed optical fiber sensor system based on the Brillouin optical correlation domain analysis (BOCDA) technique with a 3 cm spatial resolution was used. The distributed strain measured using the optical fiber correlated well with the finite element (FE) analysis data, confirming that the composite bogie frame was fabricated as designed. For a vertical load of 182 kN, the maximum strain, which occurred in the middle of the side frame, increased by 1.3 times, as compared with a vertical load of 140 kN. The experiment was able to verify the balance and the structural stability of the left- and right-hand-side beams. Furthermore, it could confirm that there was a concentrated load where the side beam and the crossbeam meet, owing to a mismatch during the assembly of the composite bogie frame.http://www.mdpi.com/2076-3417/8/10/1755composite bogieoptical fiber sensorBrillouin optical correlation domain analysis
collection DOAJ
language English
format Article
sources DOAJ
author Hyuk-Jin Yoon
Jung-Seok Kim
Kwang-Yong Song
Hyun-Woo Cho
Ju-Yeong Jung
spellingShingle Hyuk-Jin Yoon
Jung-Seok Kim
Kwang-Yong Song
Hyun-Woo Cho
Ju-Yeong Jung
Distributed Strain Monitoring of Railway Composite Bogies Using a Brillouin Optical Correlation Domain Analysis System
Applied Sciences
composite bogie
optical fiber sensor
Brillouin optical correlation domain analysis
author_facet Hyuk-Jin Yoon
Jung-Seok Kim
Kwang-Yong Song
Hyun-Woo Cho
Ju-Yeong Jung
author_sort Hyuk-Jin Yoon
title Distributed Strain Monitoring of Railway Composite Bogies Using a Brillouin Optical Correlation Domain Analysis System
title_short Distributed Strain Monitoring of Railway Composite Bogies Using a Brillouin Optical Correlation Domain Analysis System
title_full Distributed Strain Monitoring of Railway Composite Bogies Using a Brillouin Optical Correlation Domain Analysis System
title_fullStr Distributed Strain Monitoring of Railway Composite Bogies Using a Brillouin Optical Correlation Domain Analysis System
title_full_unstemmed Distributed Strain Monitoring of Railway Composite Bogies Using a Brillouin Optical Correlation Domain Analysis System
title_sort distributed strain monitoring of railway composite bogies using a brillouin optical correlation domain analysis system
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2018-09-01
description The structural deformation of a bogie frame manufactured using a composite material was monitored in real time using a distributed optical fiber sensor. The bogie frame contained an internally embedded standard single-mode optical fiber. Performance tests were conducted by applying a vertical load to the middle of the side beams on each side of the composite bogie frame. The strain distribution was monitored using an optical fiber sensor. A distributed optical fiber sensor system based on the Brillouin optical correlation domain analysis (BOCDA) technique with a 3 cm spatial resolution was used. The distributed strain measured using the optical fiber correlated well with the finite element (FE) analysis data, confirming that the composite bogie frame was fabricated as designed. For a vertical load of 182 kN, the maximum strain, which occurred in the middle of the side frame, increased by 1.3 times, as compared with a vertical load of 140 kN. The experiment was able to verify the balance and the structural stability of the left- and right-hand-side beams. Furthermore, it could confirm that there was a concentrated load where the side beam and the crossbeam meet, owing to a mismatch during the assembly of the composite bogie frame.
topic composite bogie
optical fiber sensor
Brillouin optical correlation domain analysis
url http://www.mdpi.com/2076-3417/8/10/1755
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AT jungseokkim distributedstrainmonitoringofrailwaycompositebogiesusingabrillouinopticalcorrelationdomainanalysissystem
AT kwangyongsong distributedstrainmonitoringofrailwaycompositebogiesusingabrillouinopticalcorrelationdomainanalysissystem
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