Use of high-speed water flows for accelerated mechanical modelling of erosive wear of concrete surfaces

The article deals with an unconventional way of simulating the erosion of concrete surfaces by means of high-speed water flows. The proposed method allows the use of short-term experiments to predict the future failure of concrete elements in specific concrete mixtures exposed in practice to the act...

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Main Authors: Sitek Libor, Hlaváček Petr, Bodnárová Lenka
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Subjects:
Online Access:https://doi.org/10.1051/matecconf/201824402007
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spelling doaj-203155a0413f435cb025d6b059b771e12021-03-02T10:13:29ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012440200710.1051/matecconf/201824402007matecconf_itep2018_02007Use of high-speed water flows for accelerated mechanical modelling of erosive wear of concrete surfacesSitek LiborHlaváček PetrBodnárová LenkaThe article deals with an unconventional way of simulating the erosion of concrete surfaces by means of high-speed water flows. The proposed method allows the use of short-term experiments to predict the future failure of concrete elements in specific concrete mixtures exposed in practice to the action of fast-flowing fluids, whether as regards sewers, overfalls of water reservoirs, inlet channels of retention reservoirs, etc. The article shows results of experiments on disintegration of the surface layer of model concrete test specimens of various physical-mechanical properties that were exposed to various types of high-speed water flows. It has been demonstrated that the application of high-speed water flows significantly accelerates the degradation process of the surface layers. This simulation of the real situation can considerably shorten the time needed for the development and testing of new erosion-resistant construction elements.https://doi.org/10.1051/matecconf/201824402007High-speed water flowCement compositesErosive wearAbrasionAbrasive materialShort-time erosion test
collection DOAJ
language English
format Article
sources DOAJ
author Sitek Libor
Hlaváček Petr
Bodnárová Lenka
spellingShingle Sitek Libor
Hlaváček Petr
Bodnárová Lenka
Use of high-speed water flows for accelerated mechanical modelling of erosive wear of concrete surfaces
MATEC Web of Conferences
High-speed water flow
Cement composites
Erosive wear
Abrasion
Abrasive material
Short-time erosion test
author_facet Sitek Libor
Hlaváček Petr
Bodnárová Lenka
author_sort Sitek Libor
title Use of high-speed water flows for accelerated mechanical modelling of erosive wear of concrete surfaces
title_short Use of high-speed water flows for accelerated mechanical modelling of erosive wear of concrete surfaces
title_full Use of high-speed water flows for accelerated mechanical modelling of erosive wear of concrete surfaces
title_fullStr Use of high-speed water flows for accelerated mechanical modelling of erosive wear of concrete surfaces
title_full_unstemmed Use of high-speed water flows for accelerated mechanical modelling of erosive wear of concrete surfaces
title_sort use of high-speed water flows for accelerated mechanical modelling of erosive wear of concrete surfaces
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description The article deals with an unconventional way of simulating the erosion of concrete surfaces by means of high-speed water flows. The proposed method allows the use of short-term experiments to predict the future failure of concrete elements in specific concrete mixtures exposed in practice to the action of fast-flowing fluids, whether as regards sewers, overfalls of water reservoirs, inlet channels of retention reservoirs, etc. The article shows results of experiments on disintegration of the surface layer of model concrete test specimens of various physical-mechanical properties that were exposed to various types of high-speed water flows. It has been demonstrated that the application of high-speed water flows significantly accelerates the degradation process of the surface layers. This simulation of the real situation can considerably shorten the time needed for the development and testing of new erosion-resistant construction elements.
topic High-speed water flow
Cement composites
Erosive wear
Abrasion
Abrasive material
Short-time erosion test
url https://doi.org/10.1051/matecconf/201824402007
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AT bodnarovalenka useofhighspeedwaterflowsforacceleratedmechanicalmodellingoferosivewearofconcretesurfaces
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