Modern measurement methods in strength tests of sigma thin-walled steel beams

In the paper the modern measurement methods of structural deformation using GOM optical measuring systems based on digital image processing were presented. First part of the work demonstrates the results of measurement of initial geometrical imperfections of steel structural elements using the Trito...

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Main Authors: Szewczak Ilona, Rzeszut Katarzyna
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20184900112
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spelling doaj-429b0629c3954902be40ac0f034c4bdf2021-02-02T07:32:20ZengEDP SciencesE3S Web of Conferences2267-12422018-01-01490011210.1051/e3sconf/20184900112e3sconf_solina2018_00112Modern measurement methods in strength tests of sigma thin-walled steel beamsSzewczak IlonaRzeszut KatarzynaIn the paper the modern measurement methods of structural deformation using GOM optical measuring systems based on digital image processing were presented. First part of the work demonstrates the results of measurement of initial geometrical imperfections of steel structural elements using the Tritop optical 3D coordinate measuring machine. The method of preparation of sigma type steel beams with a height of 200 mm, a flange width of 70 mm and a wall thickness of 2 mm is presented. Afterwards, the subsequent stages of measurements and the method of reading the obtained results and their interpretation are described. The next step presents a test stand designed to perform strength tests of thin-walled sigma beams in a four-point bending scheme. In addition, the method of preparation of beam’s surface to measurement of 3D using the Aramis system and electrofusion strain gauges is presented. The deformation values obtained for three sigma-type steel beams were compared with respect of two mentioned measurement methods. The final conclusions and recommendations regarding the methodology of geometry and strain measurement using optical measuring systems complete the work.https://doi.org/10.1051/e3sconf/20184900112
collection DOAJ
language English
format Article
sources DOAJ
author Szewczak Ilona
Rzeszut Katarzyna
spellingShingle Szewczak Ilona
Rzeszut Katarzyna
Modern measurement methods in strength tests of sigma thin-walled steel beams
E3S Web of Conferences
author_facet Szewczak Ilona
Rzeszut Katarzyna
author_sort Szewczak Ilona
title Modern measurement methods in strength tests of sigma thin-walled steel beams
title_short Modern measurement methods in strength tests of sigma thin-walled steel beams
title_full Modern measurement methods in strength tests of sigma thin-walled steel beams
title_fullStr Modern measurement methods in strength tests of sigma thin-walled steel beams
title_full_unstemmed Modern measurement methods in strength tests of sigma thin-walled steel beams
title_sort modern measurement methods in strength tests of sigma thin-walled steel beams
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2018-01-01
description In the paper the modern measurement methods of structural deformation using GOM optical measuring systems based on digital image processing were presented. First part of the work demonstrates the results of measurement of initial geometrical imperfections of steel structural elements using the Tritop optical 3D coordinate measuring machine. The method of preparation of sigma type steel beams with a height of 200 mm, a flange width of 70 mm and a wall thickness of 2 mm is presented. Afterwards, the subsequent stages of measurements and the method of reading the obtained results and their interpretation are described. The next step presents a test stand designed to perform strength tests of thin-walled sigma beams in a four-point bending scheme. In addition, the method of preparation of beam’s surface to measurement of 3D using the Aramis system and electrofusion strain gauges is presented. The deformation values obtained for three sigma-type steel beams were compared with respect of two mentioned measurement methods. The final conclusions and recommendations regarding the methodology of geometry and strain measurement using optical measuring systems complete the work.
url https://doi.org/10.1051/e3sconf/20184900112
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AT rzeszutkatarzyna modernmeasurementmethodsinstrengthtestsofsigmathinwalledsteelbeams
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