Modified dry construction mixture for additive technologies

The article briefly considers the process of construction methods development, naturally turning into modern additive technologies. The main problems of construction 3D printing are formulated. The results of laboratory studies of a dry building mix based on cement with the addition of sunflower ash...

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Main Authors: Shvachev Dmitry, Borisenko Yuri, Vorobyev Dmitry, Kornienko Vyacheslav
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/94/e3sconf_fci2023_01011.pdf
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author Shvachev Dmitry
Borisenko Yuri
Vorobyev Dmitry
Kornienko Vyacheslav
author_facet Shvachev Dmitry
Borisenko Yuri
Vorobyev Dmitry
Kornienko Vyacheslav
author_sort Shvachev Dmitry
collection DOAJ
description The article briefly considers the process of construction methods development, naturally turning into modern additive technologies. The main problems of construction 3D printing are formulated. The results of laboratory studies of a dry building mix based on cement with the addition of sunflower ash are presented. The most efficient technology for mixing components has been proposed, the compositions of modified mixtures have been developed. Regularities of the effect of ash concentration on the rate of hardening and strength characteristics of the specimens have been established. The optimal content of the modifying additive from ash has been established, further ways of researching the material for additive building technologies have been proposed.
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spelling doaj.art-8da34310c28e48cdb99a485717f6bbdf2024-01-26T10:35:44ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014570101110.1051/e3sconf/202345701011e3sconf_fci2023_01011Modified dry construction mixture for additive technologiesShvachev Dmitry0Borisenko Yuri1Vorobyev Dmitry2Kornienko Vyacheslav3North Caucasus Federal University, Engineering Institute, Department of Construction EngineeringNorth Caucasus Federal University, Engineering Institute, Department of Construction EngineeringNorth Caucasus Federal University, Engineering Institute, Department of Construction EngineeringNorth Caucasus Federal University, Engineering Institute, Department of Construction EngineeringThe article briefly considers the process of construction methods development, naturally turning into modern additive technologies. The main problems of construction 3D printing are formulated. The results of laboratory studies of a dry building mix based on cement with the addition of sunflower ash are presented. The most efficient technology for mixing components has been proposed, the compositions of modified mixtures have been developed. Regularities of the effect of ash concentration on the rate of hardening and strength characteristics of the specimens have been established. The optimal content of the modifying additive from ash has been established, further ways of researching the material for additive building technologies have been proposed.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/94/e3sconf_fci2023_01011.pdfbuilding 3d printingsetting timestrengthcementash
spellingShingle Shvachev Dmitry
Borisenko Yuri
Vorobyev Dmitry
Kornienko Vyacheslav
Modified dry construction mixture for additive technologies
E3S Web of Conferences
building 3d printing
setting time
strength
cement
ash
title Modified dry construction mixture for additive technologies
title_full Modified dry construction mixture for additive technologies
title_fullStr Modified dry construction mixture for additive technologies
title_full_unstemmed Modified dry construction mixture for additive technologies
title_short Modified dry construction mixture for additive technologies
title_sort modified dry construction mixture for additive technologies
topic building 3d printing
setting time
strength
cement
ash
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/94/e3sconf_fci2023_01011.pdf
work_keys_str_mv AT shvachevdmitry modifieddryconstructionmixtureforadditivetechnologies
AT borisenkoyuri modifieddryconstructionmixtureforadditivetechnologies
AT vorobyevdmitry modifieddryconstructionmixtureforadditivetechnologies
AT kornienkovyacheslav modifieddryconstructionmixtureforadditivetechnologies