Engineering Properties and Optimal Conditions of Cementless Grouting Materials

磨细高炉矿渣 材料科学 硅酸盐水泥 表面积体积比 混合(物理) 体积热力学 复合材料 水泥 抗压强度 化学工程 工程类 物理 量子力学
作者
Jaehyun Lee,Gyu-Yong Kim,Yong‐Ro Kim,Kyung-Ju Mun,Jeongsoo Nam
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:12 (19): 3059-3059 被引量:12
标识
DOI:10.3390/ma12193059
摘要

This study aims to analyze the engineering properties of cementless grouting materials (CGMs) and derive optimal binder types and compositions that can ensure superior material performance in comparison with ordinary Portland cement (OPC). The presented CGM is an environment-friendly inorganic binder based on ground granulated blast-furnace slag. The material properties of three CGM types with different chemical compositions were evaluated. To assess the possibility of using CGMs in grouting-construction methods, this study followed special grouting-method specifications of the J company in Korea, and tested whether CGM satisfies the performance requirements of a gel time of 20-50 s and homogel strength greater than 2 MPa after 7 days. For OPC and CGM, gel time increased and homogel strength decreased as the water/binder (W/B) ratio of Liquid B increased or as its replacement ratio decreased. Additionally, gel time decreased while homogel strength increased as the absolute weight of the Liquid B binder increased, and a negative correlation was observed between gel time and homogel strength. CGM2 was the optimal binder to ensure excellent material performance compared with OPC. Optimal mixing proportions were 117.8-167.7% W/B ratio, 42.6-56.7% Liquid B volume ratio, and 20.4-43.7 kg binder weight.

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