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Use of magnesia sand for optimal design of high performance magnesium potassium phosphate cement mortar

机译:镁砂用于高性能磷酸镁钾水泥砂浆的优化设计

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Magnesium potassium phosphate cement (MKPC) mortar as a construction repair material has been studied and applied for several years. In this paper, reactive magnesia sand is employed to replace conventional inert quartz sand as the fine aggregate of MKPC mortar, to adjust the M/P (i.e. MgO-to-KH2PO4) molar ratio of cement paste during mortar formation, as well as to improve the mortar performance though strengthening the bonding capacity of the interfacial transition zone (ITZ) (i.e. the paste to aggregate interface). Experimental results showed that the compressive strength of the MKPC mortar with reactive magnesia sands could achieve a mean value of 36.65 MPa at 12 h, and outperformed about 27.30% than that with inert quartz sand at 28-day. The interfacial transition zone (ITZ) development in the MKPC mortar with magnesia sands was investigated using the on-site X-ray computed tomography (CT). The failure modes of specimens subjected to uniaxial compression were analyzed and visualized by means of image processing technique. In addition, the chemical interaction between the paste and the aggregate was theoretically and experimentally analyzed, explaining well the excellent volume stability of the MKPC mortar with reactive magnesia sands. (C) 2017 Elsevier Ltd. All rights reserved.
机译:磷酸镁钾水泥(MKPC)砂浆作为建筑修复材料已被研究并应用了数年。本文用反应性镁砂代替常规的惰性石英砂作为MKPC砂浆的细骨料,以调节砂浆形成过程中水泥浆的M / P(即MgO与KH2PO4)摩尔比,以及通过增强界面过渡区(ITZ)(即糊料与骨料界面)的粘结能力来提高砂浆性能。实验结果表明,反应镁砂在12 h时的抗压强度可达到36.65 MPa的平均值,比惰性石英砂在28天时的抗压强度高约27.30%。使用现场X射线计算机断层扫描(CT)研究了含镁砂的MKPC砂浆中的界面过渡带(ITZ)的发展。通过图像处理技术对单轴压缩试样的破坏模式进行了分析和可视化。此外,从理论和实验上分析了糊状物与骨料之间的化学相互作用,很好地说明了反应性镁砂与MKPC砂浆的优异的体积稳定性。 (C)2017 Elsevier Ltd.保留所有权利。

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