Determination of destructive forces in a rod-cable arch

The aim of research - comparison the results of the experimental data with the computer modeling the work of the strengthened brick-cable arch. Methods. Experimental and theoretical methods of research. Results. Firstly, the tests on a small desktop models were performed, for the determination the n...

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Main Author: Igor K. Dmitriev
Format: Article
Language:English
Published: Peoples’ Friendship University of Russia (RUDN University) 2019-12-01
Series:Structural Mechanics of Engineering Constructions and Buildings
Subjects:
Online Access:http://journals.rudn.ru/structural-mechanics/article/viewFile/21417/17089
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spelling doaj-dd11a2f7dcd24395b51736941baeba9b2020-11-25T02:20:27ZengPeoples’ Friendship University of Russia (RUDN University)Structural Mechanics of Engineering Constructions and Buildings1815-52352587-87002019-12-0115324324810.22363/1815-5235-2019-15-3-243-24817760Determination of destructive forces in a rod-cable archIgor K. Dmitriev0Moscow State University of Civil Engineering (National Research University)The aim of research - comparison the results of the experimental data with the computer modeling the work of the strengthened brick-cable arch. Methods. Experimental and theoretical methods of research. Results. Firstly, the tests on a small desktop models were performed, for the determination the nature of destruction of the construction. During them, it was discovered, that the arch crash is taking place because of the splitting the small size timber bricks, or as the result of the breaking its steel strengthening elements. Further, the computer model of the construction was created with the help of physically and geometrically nonlinear finite elements at LIRA-SAPR PC. The generated model was load by a concentrated force at its top zone, the same one, as it had been during the experiments before. On the results of the calculation, the maximum deformation was received, which are different from the experimental one on a value less then 10%, what suggests the nearness the computer model to the real construction. The highest compressive strengths of the arch and the largest stretching forces of its steel bands were determined during the further analysis of the model. Maximum splitting and stretching forces also were calculated theoretically, according to the formulas of SP 64.13330.2017 and SP 20.13330.2016. It was determined that the timber bricks have more than 7 times reserve of strength, and the steel bands over them - only times, and during the growth of external force, the arch will crash because of its steel sprengel bands breakage. By the results of the research, the calculation algorithm of such kind constructions was generated, at the base of LIRA-SAPR PC. It was recommended first, to determine deformation of the strengthened brick-cable arch, with further checking the timber elements for splitting and steel sprengel elements for maximum permissible stretching. The problem of stability the flat form of deformation for the brickcable arch are the same as for the glued one, because of the tight connection the timber bricks, with elimination their exit from the frontal plane.http://journals.rudn.ru/structural-mechanics/article/viewFile/21417/17089the strengthened brick-cable archcomputer modelphysically and geometrically nonlinear finite elementscomparison the experimental data with the results of the computer calculationlargest splitting and stretching forcesthe calculation algorithm of the construction
collection DOAJ
language English
format Article
sources DOAJ
author Igor K. Dmitriev
spellingShingle Igor K. Dmitriev
Determination of destructive forces in a rod-cable arch
Structural Mechanics of Engineering Constructions and Buildings
the strengthened brick-cable arch
computer model
physically and geometrically nonlinear finite elements
comparison the experimental data with the results of the computer calculation
largest splitting and stretching forces
the calculation algorithm of the construction
author_facet Igor K. Dmitriev
author_sort Igor K. Dmitriev
title Determination of destructive forces in a rod-cable arch
title_short Determination of destructive forces in a rod-cable arch
title_full Determination of destructive forces in a rod-cable arch
title_fullStr Determination of destructive forces in a rod-cable arch
title_full_unstemmed Determination of destructive forces in a rod-cable arch
title_sort determination of destructive forces in a rod-cable arch
publisher Peoples’ Friendship University of Russia (RUDN University)
series Structural Mechanics of Engineering Constructions and Buildings
issn 1815-5235
2587-8700
publishDate 2019-12-01
description The aim of research - comparison the results of the experimental data with the computer modeling the work of the strengthened brick-cable arch. Methods. Experimental and theoretical methods of research. Results. Firstly, the tests on a small desktop models were performed, for the determination the nature of destruction of the construction. During them, it was discovered, that the arch crash is taking place because of the splitting the small size timber bricks, or as the result of the breaking its steel strengthening elements. Further, the computer model of the construction was created with the help of physically and geometrically nonlinear finite elements at LIRA-SAPR PC. The generated model was load by a concentrated force at its top zone, the same one, as it had been during the experiments before. On the results of the calculation, the maximum deformation was received, which are different from the experimental one on a value less then 10%, what suggests the nearness the computer model to the real construction. The highest compressive strengths of the arch and the largest stretching forces of its steel bands were determined during the further analysis of the model. Maximum splitting and stretching forces also were calculated theoretically, according to the formulas of SP 64.13330.2017 and SP 20.13330.2016. It was determined that the timber bricks have more than 7 times reserve of strength, and the steel bands over them - only times, and during the growth of external force, the arch will crash because of its steel sprengel bands breakage. By the results of the research, the calculation algorithm of such kind constructions was generated, at the base of LIRA-SAPR PC. It was recommended first, to determine deformation of the strengthened brick-cable arch, with further checking the timber elements for splitting and steel sprengel elements for maximum permissible stretching. The problem of stability the flat form of deformation for the brickcable arch are the same as for the glued one, because of the tight connection the timber bricks, with elimination their exit from the frontal plane.
topic the strengthened brick-cable arch
computer model
physically and geometrically nonlinear finite elements
comparison the experimental data with the results of the computer calculation
largest splitting and stretching forces
the calculation algorithm of the construction
url http://journals.rudn.ru/structural-mechanics/article/viewFile/21417/17089
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