Use this url to cite publication: https://hdl.handle.net/20.500.14911/118089
Magnesium concrete of increased strength modified with polyfunctional additive
Publication Type (CRIS)
Straipsnis recenzuojamoje užsienio konferencijos medžiagoje / Article in peer-reviewed foreign conference proceedings (P1g)
Publication Type (eLABa)
Straipsnis recenzuotame konferencijos darbų leidinyje / Article published in peer-reviewed conference proceedings (P1d)
VILNIUS TECH Research Priorities and Topics
Fundamentiniai medžiagų ir procesų tyrimai / Fundamental research on materials and processes (FM)
Lithuanian Intelligent Specialization
Nauji gamybos procesai, medžiagos ir technologijos / New production processes, materials and technologies (L104)
Author(s)
| Author | Affiliation |
|---|---|
Yakovlev, Grigoriy Ivanovich | Kalashnikov Izhevsk State Technical University, Russian Federation |
Plekhanova, Tatyana Anatolyjevna | Kalashnikov Izhevsk State Technical University, Russian Federation |
Polyanskikh, Irina Sergeevna | Kalashnikov Izhevsk State Technical University, Russian Federation |
Title [en]
Magnesium concrete of increased strength modified with polyfunctional additive
Irina Sergeevna Polyanskikh, Jadvyga Regina Kerienė ; autorius (įvado, įžangos, pag. teksto): Tatyana Anatolyjevna Plekhanova, Grigoriy Ivanovich Yakovlev
Is part of
Ultra-High Performance Concrete and High Performance Construction Materials
Published In
| Year | Start Page | End Page |
|---|---|---|
2016 | 1 | 9 |
Publisher
Kassel : Kassel University Press, 2016
Extent
p. 1-9
Science / Art Area
Technologijos mokslai / Technological sciences (T)
Field of Science / Art
Medžiagų inžinerija / Materials engineering (T008)
Abstract (en)
The effect of polyfunctional additive based on fluoride anhydrite and carphosiderite as a modifier in producing magnesium concrete with the aggregate of metallurgical slag has been studied. This concrete has the enhanced physical and mechanical properties, which is proved by the methods of physical and chemical research. The influence of polyfunctional additives on modifying the mineralogical composition of the produced concrete and its microstructure has been investigated. The developed composition of modified magnesium concrete has the compressive strength of more than 110 MPa. The softening coefficient of modified magnesium concrete is 0.92, due to which it can be used as a construction material working in wet conditions.
Resource Type (COAR)
TextConference outputConference proceedingsConference paper
Language
Anglų / English (en)
Country
Vokietija / Germany (DE)
Accounting Year
2017
Owning collection
ISBN (of the container)
9783737600958
eLABa ID
23360360