煅烧叶蜡石作为辅助胶凝材料的自密实混凝土性能

S. Mansour
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引用次数: 2

摘要

目前工业混凝土的趋势更倾向于使用自密实混凝土。这些材料必须具有流动性、填充能力和抗离析性等新特性。然而,为了保证流变稳定性,需要使用矿物粉。本研究采用煅烧叶蜡石(CP)粉作为水泥替代品,其质量比分别为10%和20%。人们的兴趣集中在煅烧叶蜡石在生产对环境影响较小的SCC中所起的作用。在750℃下对叶蜡石粉进行了煅烧。分析了其对自密实混凝土和易性和力学性能的影响。结果表明,含10%叶蜡石的SCC在新鲜状态下的和易性性能(坍落度、T50、通过能力和抗偏析能力)与对照SCC基本相同。此外,煅烧叶蜡石提高了SCC的抗压强度、抗拉强度和抗折强度,但不超过对照SCC。与20%的叶蜡石替代率相比,10%的叶蜡石是提高机械强度的最佳替代率。用煅烧的叶蜡石代替水泥的目的是节约水泥,减少水泥生产过程中二氧化碳的排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Behavior of self- compacting concrete incorporating calcined pyrophyllite as supplementary cementitious material
The current trend of industrial concrete leans more towards the use of self-compacting concrete. These must have fresh properties well defined as fluidity, filling ability and resistance to segregation. However, to ensure the rheological stability, use mineral fines is required. In this work, powder of calcined pyrophyllite (CP) was used as cement substitution at level of 10% and 20% by weight. The interest is focused on the role played by the calcined pyrophyllite to produce SCC with reduced impact environmental.. Calcination of pyrophyllite powder was carried out at 750 °C. Its effect on the workability and mechanical properties of self-compacting concrete is analyzed. The results show that the properties of workability of SCC containing 10% of calcined pyrophyllite tested at fresh state (Slump Flow, T50, passing ability and segregation resistance) are almost identical to those of the control SCC. Furthermore, the calcined pyrophyllite increases the compressive strength, tensile and flexural strength of SCC approaching without exceeding those of the control SCC. It seems that 10 % of calcined pyrophyllite is the optimum replacement rate which improves mechanical strength compared to 20%. Replacing cement with the calcined pyrophyllite aims to save cement and reduce the CO2 emissions released during the manufacture of cement.
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