2023
DOI: 10.1016/j.conbuildmat.2023.131362
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Effect of pressing pressure on the mechanical properties and water resistance of straw/sawdust-magnesium oxychloride cement composite

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Cited by 10 publications
(1 citation statement)
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“…Gomes et al [10] prepared magnesium chloroxylate fibre cement boards with different molar ratios, and they found that rice husk silica (RHS) increased the modulus of rupture and toughness of the MOFC and improved the durability of the material through the filler effect. He et al [11] prepared straw/sawdust-magnesium chloroxylate cement composites (SMOCC) from straw, sawdust and MOC using a compression moulding process, and they found that increasing the compression pressure can effectively reduce the porosity to redistribute pore sizes, which resulted in an increase in compressive strength and flexural strength. Singh et al [12] found that the calcination temperature, the bohemian of MgCl 2 solution, and the fineness of the filler were the key factors controlling the development of MOC strength.…”
Section: Introductionmentioning
confidence: 99%
“…Gomes et al [10] prepared magnesium chloroxylate fibre cement boards with different molar ratios, and they found that rice husk silica (RHS) increased the modulus of rupture and toughness of the MOFC and improved the durability of the material through the filler effect. He et al [11] prepared straw/sawdust-magnesium chloroxylate cement composites (SMOCC) from straw, sawdust and MOC using a compression moulding process, and they found that increasing the compression pressure can effectively reduce the porosity to redistribute pore sizes, which resulted in an increase in compressive strength and flexural strength. Singh et al [12] found that the calcination temperature, the bohemian of MgCl 2 solution, and the fineness of the filler were the key factors controlling the development of MOC strength.…”
Section: Introductionmentioning
confidence: 99%