In this study, influence of cenospheres on density, compressive strength, water resistance property and thermal conductivity of magnesium oxychloride cement (MOC)-based composites was systematically investigated, which could provide useful information for the further development of light-weight thermal insulation MOC-based composites. Addition levels of the cenospheres in this study are 0, 5, 15 and 25 %, by weight of magnesia powder. It shows that although compressive strengths of the MOC-based composites are clearly reduced by the incorporation of the cenospheres, they are still maintained at high strength levels above 60 MPa at 28 days. In addition, the use of the cenospheres causes obvious reductions on both composite density and therma...
The Portland cement (PC) industry is a big producer of CO2 – a major contributor to the global warmi...
The aim of this paper was the examination of the physical-mechanical properties of Sorel cement-base...
Graphene and graphite oxide reinforced magnesium oxychloride cement (MOC) pastes were researched. To...
Influence of the curing regimes that involved different temperatures on mechanical properties of mag...
To solve heat energy storage of building enclosure systems, phase change materials (PCMs) were imple...
The application of magnesium oxychloride cement (MOC) is promising, but its poor water resistance se...
In this study, the objective was to determine the influence of using expanded perlite or exfoliated ...
Measurements of compressive strength, modulus of elasticity, and microhardness were made on magnesiu...
This paper presents a review for the key literatures on magnesium oxychloride cement (MOC) to establ...
The composite gelling system of chlorine and magnesium thioxide was prepared by mixing different mas...
The increased demand for cementitious materials due to rapid industrialization and urbanization has ...
Abstract. The scope of magnesium oxychloride (MOC) cement in concrete works has been evaluated. MOC ...
Due to growing environmental concerns and the need to use less energy-intensive building products, a...
In this paper, the starting materials necessary for producing magnesium oxychioride cement (MOC) 'er...
As a fast setting and air-hardening green cementitious material, magnesium oxychloride cement (MOC) ...
The Portland cement (PC) industry is a big producer of CO2 – a major contributor to the global warmi...
The aim of this paper was the examination of the physical-mechanical properties of Sorel cement-base...
Graphene and graphite oxide reinforced magnesium oxychloride cement (MOC) pastes were researched. To...
Influence of the curing regimes that involved different temperatures on mechanical properties of mag...
To solve heat energy storage of building enclosure systems, phase change materials (PCMs) were imple...
The application of magnesium oxychloride cement (MOC) is promising, but its poor water resistance se...
In this study, the objective was to determine the influence of using expanded perlite or exfoliated ...
Measurements of compressive strength, modulus of elasticity, and microhardness were made on magnesiu...
This paper presents a review for the key literatures on magnesium oxychloride cement (MOC) to establ...
The composite gelling system of chlorine and magnesium thioxide was prepared by mixing different mas...
The increased demand for cementitious materials due to rapid industrialization and urbanization has ...
Abstract. The scope of magnesium oxychloride (MOC) cement in concrete works has been evaluated. MOC ...
Due to growing environmental concerns and the need to use less energy-intensive building products, a...
In this paper, the starting materials necessary for producing magnesium oxychioride cement (MOC) 'er...
As a fast setting and air-hardening green cementitious material, magnesium oxychloride cement (MOC) ...
The Portland cement (PC) industry is a big producer of CO2 – a major contributor to the global warmi...
The aim of this paper was the examination of the physical-mechanical properties of Sorel cement-base...
Graphene and graphite oxide reinforced magnesium oxychloride cement (MOC) pastes were researched. To...