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Influence of cenospheres on properties of magnesium oxychloride cement-based composites

机译:空心球对氯氧化镁水泥基复合材料性能的影响

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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 thermal conductivity, demonstrating favorable effects for the further development of light-weight thermal insulation MOC-based composites. However, water resistance property of the MOC-based composites is deteriorated by incorporation of the cenospheres, especially at high addition levels. It suggests that when the cenospheres are used for making light-weight thermal insulation MOC-based composites, their influence on this property should be highly considered.
机译:在这项研究中,系统地研究了空心球对氯氧化镁水泥(MOC)基复合材料的密度,抗压强度,耐水性和导热性的影响,这可为进一步开发轻型隔热MOC-提供有用的信息。基复合材料。按氧化镁粉的重量计,本研究中空心球的添加量为0、5%,15和25%。结果表明,尽管通过加入空心球明显降低了基于MOC的复合材料的抗压强度,但它们仍在28天时保持在60 MPa以上的高强度水平。此外,空心微球的使用会导致复合材料密度和导热率均明显降低,从而为进一步开发轻质隔热MOC基复合材料带来了有利影响。然而,MOC基复合材料的耐水性由于掺入空心球而恶化,特别是在高添加量下。这表明,当将空心球用于制造轻质绝热MOC基复合材料时,应高度考虑它们对这种性能的影响。

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