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Effect of mixture proportioning on the strength and mineralogy of magnesium phosphate cements

机译:混合比例对磷酸镁水泥强度和矿物的影响

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Magnesium potassium phosphate cement (MKPC) has properties advantageous over ordinary portland cement such as quick setting and rapid strength gain. Although the effect of mixture proportioning on MKPC pastes has been studied, there are conflicting reports on how calcination of magnesia, parameters like magnesium-to-phosphate ratio (M/P) and water-to-binder ratio (W/B), added materials like borax and fly ash, or the addition of sand influence mineralogy and properties like setting and strength. These factors are evaluated over a practical range of values for each using X-ray diffraction, thermogravimetric analysis, and scanning electron microscopy on paste samples. Strength development is evaluated using both pastes and mortars. Calcination of magnesia forms some forsterite with impurity SiO2 which may be linked to the reduction of reactivity. Increasing W/B increases setting time more significantly at lower M/P. Increasing M/P increases early strength but not so much ultimate strength. The main final phases in the pastes are K-struvite and unreacted MgO. Addition of borax or low-lime fly ash does not alter the mineralogy of hydrated pastes. Varying M/P simply changes the relative amounts of these solid phases. Unlike in Portland systems, adding up to similar to 60 vol% sand to pastes does not decrease strength considerably. (C) 2021 Elsevier Ltd. All rights reserved.
机译:磷酸镁水泥(MKPC)在普通波特兰水泥上具有优势,如快速设定和快速增益。虽然已经研究了混合物比例对MKPC浆料的影响,但是关于氧化镁的煅烧,镁 - 磷酸镁比(M / P)和水 - 粘合剂比(W / B)的参数有相互矛盾的报道。添加像硼砂和粉煤灰一样的材料,或添加沙子影响矿物学和性质,如设置和强度。这些因素在每个使用X射线衍射,热重分析和扫描电子显微镜上的每个使用X射线衍射,热重量分析和浆料样品上的实际值进行评估。使用浆料和迫击炮评估力量发展。氧化镁的煅烧形成一些具有杂质SiO 2的叉段,其可以与反应性的降低相关。增加的w / b在较低的m / p下更明显增加设定时间。增加M / P增加早期强度但不是那么大的强度。浆料中的主要最终阶段是K-斯特鲁维特和未反应的MgO。添加硼砂或低钙粉煤灰不会改变水合浆料的矿物质。变化的m / p简单地改变了这些固相的相对量。与波特兰系统不同,加入与60体积%的沙子相似,粘贴不会显着降低强度。 (c)2021 elestvier有限公司保留所有权利。

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