Technical and economic efficiency of materials using 3D-printing in construction on the example of high-strength lightweight fiber-reinforced concrete

The technology of 3D printing in construction causes great interest by increasing the speed and accuracy of building structures, reducing labor costs, construction waste and risks to human health. Today, the principles of 3D-printing actually are interpretations of the existing monolithic or prefabr...

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Main Authors: Inozemtcev Aleksandr, Duong Thanh Qui
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/23/e3sconf_form2018_02010.pdf
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spelling doaj-828e0aa0f28c4ae0a6fc4609072b80432021-02-02T06:38:20ZengEDP SciencesE3S Web of Conferences2267-12422019-01-01970201010.1051/e3sconf/20199702010e3sconf_form2018_02010Technical and economic efficiency of materials using 3D-printing in construction on the example of high-strength lightweight fiber-reinforced concreteInozemtcev AleksandrDuong Thanh QuiThe technology of 3D printing in construction causes great interest by increasing the speed and accuracy of building structures, reducing labor costs, construction waste and risks to human health. Today, the principles of 3D-printing actually are interpretations of the existing monolithic or prefabricated technology. This requires the development of high-performance materials for the extrusion of functional structures. The paper shows the example of the effectiveness application of high-strength lightweight fiber-reinforced concrete with a complex of structural and thermal insulation properties in 3D-printing technology. It has been established that the use of high-strength lightweight fiber-reinforced concrete for 3D-printing provides an increase in the useful space by 1.1...5.4 %, a reduction in the material consumption of wall structures by 6.1...19.1 % and a reduction in the number of machine hours by 29.6...37.4 %. The total technical and economic efficiency of using such a material for a standard or optimized wall section is 30.8...50.4 %.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/23/e3sconf_form2018_02010.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Inozemtcev Aleksandr
Duong Thanh Qui
spellingShingle Inozemtcev Aleksandr
Duong Thanh Qui
Technical and economic efficiency of materials using 3D-printing in construction on the example of high-strength lightweight fiber-reinforced concrete
E3S Web of Conferences
author_facet Inozemtcev Aleksandr
Duong Thanh Qui
author_sort Inozemtcev Aleksandr
title Technical and economic efficiency of materials using 3D-printing in construction on the example of high-strength lightweight fiber-reinforced concrete
title_short Technical and economic efficiency of materials using 3D-printing in construction on the example of high-strength lightweight fiber-reinforced concrete
title_full Technical and economic efficiency of materials using 3D-printing in construction on the example of high-strength lightweight fiber-reinforced concrete
title_fullStr Technical and economic efficiency of materials using 3D-printing in construction on the example of high-strength lightweight fiber-reinforced concrete
title_full_unstemmed Technical and economic efficiency of materials using 3D-printing in construction on the example of high-strength lightweight fiber-reinforced concrete
title_sort technical and economic efficiency of materials using 3d-printing in construction on the example of high-strength lightweight fiber-reinforced concrete
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description The technology of 3D printing in construction causes great interest by increasing the speed and accuracy of building structures, reducing labor costs, construction waste and risks to human health. Today, the principles of 3D-printing actually are interpretations of the existing monolithic or prefabricated technology. This requires the development of high-performance materials for the extrusion of functional structures. The paper shows the example of the effectiveness application of high-strength lightweight fiber-reinforced concrete with a complex of structural and thermal insulation properties in 3D-printing technology. It has been established that the use of high-strength lightweight fiber-reinforced concrete for 3D-printing provides an increase in the useful space by 1.1...5.4 %, a reduction in the material consumption of wall structures by 6.1...19.1 % and a reduction in the number of machine hours by 29.6...37.4 %. The total technical and economic efficiency of using such a material for a standard or optimized wall section is 30.8...50.4 %.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/23/e3sconf_form2018_02010.pdf
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AT duongthanhqui technicalandeconomicefficiencyofmaterialsusing3dprintinginconstructionontheexampleofhighstrengthlightweightfiberreinforcedconcrete
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