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无水泥灌浆材料的工程特性及最佳条件

Engineering Properties and Optimal Conditions of Cementless Grouting Materials.

作者信息

Lee Jaehyun, Kim Gyuyong, Kim Yongro, Mun Kyungju, Nam Jeongsoo

机构信息

Department of Architectural Engineering, Chungnam National University, Yuseong-Gu, Daejeon 34134, Korea.

Technology Research and Development Institute, Daelim Industrial, Jongno-Gu, Seoul 03152, Korea.

出版信息

Materials (Basel). 2019 Sep 20;12(19):3059. doi: 10.3390/ma12193059.

Abstract

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.

摘要

本研究旨在分析无水泥灌浆材料(CGM)的工程特性,并推导与普通硅酸盐水泥(OPC)相比能够确保卓越材料性能的最佳粘结剂类型和成分。所提出的CGM是一种基于磨细粒化高炉矿渣的环保型无机粘结剂。对三种具有不同化学成分的CGM类型的材料性能进行了评估。为评估在灌浆施工方法中使用CGM的可能性,本研究遵循了韩国J公司的特殊灌浆方法规范,并测试了CGM是否满足凝胶时间为20 - 50秒且7天后均匀凝胶强度大于2 MPa的性能要求。对于OPC和CGM,随着液体B的水/粘结剂(W/B)比增加或其替代率降低,凝胶时间增加且均匀凝胶强度降低。此外,随着液体B粘结剂的绝对重量增加,凝胶时间减少而均匀凝胶强度增加,并且在凝胶时间和均匀凝胶强度之间观察到负相关。与OPC相比,CGM2是确保优异材料性能的最佳粘结剂。最佳混合比例为W/B比117.8 - 167.7%、液体B体积比42.6 - 56.7%以及粘结剂重量20.4 - 43.7千克。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b17/6804168/8aabb2be2bb6/materials-12-03059-g001.jpg

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