Li Zhanchen, Yuan Huaqiang, Gao Faliang, Zhang Hongzhi, Ge Zhi, Wang Kai, Sun Renjuan, Guan Yanhua, Ling Yifeng, Jiang Nengdong
Shandong Hi-Speed Group Co., Ltd., Jinan 250098, China.
School of Qilu Transportation, Shandong University, Jinan 250002, China.
Materials (Basel). 2021 Dec 23;15(1):86. doi: 10.3390/ma15010086.
This paper aims to study the feasibility of low cement content foamed concrete using waste lime mud (LM) and fly ash (FA) as mineral additives. The LM/FA ratio was first optimized based on the compressive strength. Isothermal calorimetry test, ESEM, and XRD were used to investigate the role of LM during hydration. Afterward, the optimized LM/FA ratio (1/5) was used to design foamed concrete with various wet densities (600, 700, 800 and 900 kg/m) and LM-FA dosages (0%, 50%, 60%, 70% and 80%). Flowability measurements and mechanical measurements including compressive strength, flexural strength, splitting strength, elastic modulus, and California bearing ratio were conducted. The results show that the foamed concretes have excellent workability and stability with flowability within 170 and 190 mm. The high alkalinity of LM accelerated the hydration of FA, thereby increasing the early strength. The significant power functions were fitted for the relationships between flexural/splitting and compressive strength with all correlation coefficients (R) larger with 0.95. The mechanical properties of the foamed concrete increased with the density increasing or LM-FA dosage decreasing. The compressive strength, tensile strength, CBR of all prepared foamed concretes were higher than the minimum requirements of 0.8 and 0.15 MPa and 8%, respectively in the standard.
本文旨在研究以废石灰泥(LM)和粉煤灰(FA)作为矿物添加剂的低水泥含量泡沫混凝土的可行性。首先基于抗压强度对LM/FA比例进行了优化。采用等温量热试验、环境扫描电子显微镜(ESEM)和X射线衍射(XRD)来研究LM在水化过程中的作用。随后,使用优化后的LM/FA比例(1/5)来设计具有不同湿密度(600、700、800和900 kg/m³)以及LM-FA用量(0%、50%、60%、70%和80%)的泡沫混凝土。进行了流动性测量以及包括抗压强度、抗折强度、劈裂强度、弹性模量和加州承载比在内的力学性能测量。结果表明,泡沫混凝土具有优异的工作性和稳定性,流动性在170至190 mm之间。LM的高碱度加速了FA的水化,从而提高了早期强度。针对抗折/劈裂强度与抗压强度之间的关系拟合了显著的幂函数,所有相关系数(R)均大于0.95。泡沫混凝土的力学性能随着密度增加或LM-FA用量减少而提高。所有制备的泡沫混凝土的抗压强度、抗拉强度、加州承载比分别高于标准中0.� MPa、0.15 MPa和8%的最低要求。