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A composite cement of high magnesium sulphate resistance

机译:高耐硫酸镁的复合水泥

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This study investigates the magnesium sulphate resistance of chemically activated phosphorus slag-based composite cement (CAPSCC). Enough mortar specimens were prepared from phosphorus slag (80 wt.%), type II Portland cement (14 wt.%), and compound chemical activator (6 wt.%) and were exposed to 5% magnesium sulphate solution after being cured. Mortar specimens of both type II and V Portland cements (PC2 and PC5) were also prepared and used for comparison purpose. According to the test results, after 12 months of exposure, PC2, PC5 and CAPSCC exhibited 43.5, 35.2 and 25.2% reduction in compressive strength, 0.136, 0.110, and 0.026% expansion in length, and 0.91, 2.2, and 1.78% change in weight, respectively. Complementary studies by X-ray diffractometry and scanning electron microscopy revealed that CAPSCC has a very low potential for the formation of sulphate attack products, especially ettringite. The results confirm a high magnesium sulphate resistance for CAPSCC compared to PC2 and PC5.
机译:本研究调查了化学活化磷渣基复合水泥(CAPSCC)的耐硫酸镁性能。用磷渣(80重量%),II型波特兰水泥(14重量%)和化合物化学活化剂(6重量%)制备足够的砂浆样品,固化后将其暴露于5%的硫酸镁溶液中。还准备了II型和V型波特兰水泥(PC2和PC5)的砂浆样本,用于比较。根据测试结果,经过12个月的暴露,PC2,PC5和CAPSCC的抗压强度分别降低了43.5%,35.2%和25.2%,长度扩展了0.136、0.110和0.026%,而其变化分别为0.91、2.2和1.78%。重量。 X射线衍射和扫描电子显微镜的补充研究表明,CAPSCC具有极低的形成硫酸盐侵蚀产物(尤其是钙矾石)的潜力。结果证实与PC2和PC5相比,CAPSCC具有较高的耐硫酸镁性能。

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