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首页> 外文期刊>Journal of materials in civil engineering >Novel Plastering Mortar Incorporating Cenospheres for Autoclaved Aerated Concrete Based on Magnesium Phosphate Cement
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Novel Plastering Mortar Incorporating Cenospheres for Autoclaved Aerated Concrete Based on Magnesium Phosphate Cement

机译:基于磷酸镁水泥的新型石膏砂浆掺入高压灭菌的气化混凝土

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摘要

Autoclaved aerated concrete (AAC) is an energy-saving and environmentally friendly building material. However, ordinary port-land cement (OPC) mortar is prone to cracking and spall when it is used for surface plastering of AAC. To resolve this situation, this research proposes a novel plastering mortar appropriate for AAC based on magnesium phosphate cement (MPC) incorporating fly ash (FA) and cenospheres. Two series of mortar mixtures were formulated with different FA and cenosphere dosages. Firstly, MPC was partially replaced with FA by weight. Then, in the case of fixed FA content, sand was replaced with an equal volume of cenospheres at different percentages. The mechanical strength, water retention, drying shrinkage, and thermal conductivity of the MPC mortar was investigated. The hydration products and microscopic properties of the MPC mortar were examined by scanning electron microscope (SEM) and X-ray diffraction (XRD). The results show that FA greatly improves the water retention of MPC mortar. The water retention of MPC mortar is 97.5% at FA replacement of 40%. Although cenospheres replacing sand slightly reduced mechanical strength of MPC mortar, they can significantly decrease the thermal conductivity and drying shrinkage of mortar. When sand was completely replaced with cenospheres, the bond strength, drying shrinkage rate, and thermal conductivity were 0.6 MPa, 0.08 mm/m, and 0.26 W/m • K, respectively. Finally, XRD and SEM tests of MPC mortar also indicated that cenospheres inhibited the hydration of MPC and reduced the strength of MPC mortar. In conclusion, the developed MPC mortar has excellent bond strength as well as low drying shrinkage rate and thermal conductivity, which can effectively deal with the problem of cracking and spall in traditional plaster mortar and is also an eco-friendly building material.
机译:高压灭菌的混凝土(AAC)是一种节能和环保的建筑材料。然而,当它用于AAC的表面抹灰时,普通端口陆地水泥(OPC)砂浆易于破解和击退。为了解决这种情况,本研究提出了一种基于磷酸镁水泥(MPC)的AAC的新型涂抹砂浆,其掺入粉煤灰(FA)和CENOSHERES。用不同的FA和CenoSe剂量配制两种系列砂浆混合物。首先,MPC部分用FA重量替换。然后,在固定FA内容的情况下,砂的混合物在不同百分比等体积的空心微珠代替。研究了MPC砂浆的机械强度,水保持,干燥收缩和导热率。通过扫描电子显微镜(SEM)和X射线衍射(XRD)检查MPC砂浆的水合产物和微观性质。结果表明,FA大大提高了MPC砂浆的水保留。 MPC砂浆的水保留为97.5%,在FA更换为40%。虽然CENOSHERES替代砂略微降低MPC砂浆的机械强度,但它们可以显着降低砂浆的导热系数和干燥收缩。当砂完全被煤胞,粘结强度,干燥收缩率和热导率分别替换为0.6兆帕,0.08毫米/米,和0.26 W /米•K,。最后,MPC砂浆的XRD和SEM测试也表明,抑制空心微珠MPC的水化和减少MPC砂浆强度。总之,发达的MPC砂浆具有出色的粘合强度以及低干燥收缩速率和导热率,可以有效地处理传统的石膏砂浆中的开裂和剥落问题,也是一种环保的建筑材料。

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