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Mechanical Properties of Na2CO3-Activated High-Volume GGBFS Cement Paste

机译:Na2CO3活化的大体积GGBFS水泥浆的力学性能

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摘要

The use of Na2CO3 to improve the mechanical properties of high-volume slag cement (HVSC) is experimentally investigated in this study. Ordinary Portland cement (OPC) was replaced with 50, 60, 70, 80, and 90% ground-granulated blast-furnace slag (GGBFS) by weight. Na2CO3 was added at 0, 1, 2, 3, 4, and 5 wt.% of HVSC (OPC + GGBFS). The compressive strength, water absorption, ultrasonic pulse velocity, dry shrinkage, and X-ray diffraction spectra of the Na2CO3-activated HVSC pastes were analyzed. The results indicate that Na2CO3 was effective for improving the strength of HVSC samples at both early and later ages. There was a trend of increasing HVSC sample strength with increasing Na2CO3 content. The 5% Na2CO3-activated HVSC (50% OPC + 50% GGBFS) paste had the best combination of early to later-age strength development and exhibited the highest UPV and the lowest water absorption among the Na2CO3-activated HVSC samples at later age.
机译:在本研究中,通过实验研究了使用Na2CO3来改善大体积矿渣水泥(HVSC)的机械性能。普通波特兰水泥(OPC)替换为50、60、70、80和90%重量比的粒状高炉矿渣(GGBFS)。 Na2CO3的添加量为HVSC的0、1、2、3、4和5%(重量)(OPC + + GGBFS)。分析了Na2CO3活化的HVSC浆料的抗压强度,吸水率,超声脉冲速度,干收缩率和X射线衍射谱。结果表明,Na2CO3在早期和晚期均可有效提高HVSC样品的强度。随着Na2CO3含量的增加,HVSC样品强度有增加的趋势。 5%Na2CO3活化的HVSC(50%OPC + 50%GGBFS)糊剂具有早期至后期强度发展的最佳组合,并且在更高年龄的Na2CO3活化的HVSC样品中表现出最高的UPV和最低的吸水率。

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