版权所有:内蒙古大学图书馆 技术提供:维普资讯• 智图
内蒙古自治区呼和浩特市赛罕区大学西街235号 邮编: 010021
作者机构:Centre for Smart Infrastructure Digital Construction Faculty of Science Engineering and Technology Swinburne University of Technology Hawthorn Australia
出 版 物:《SSRN》
年 卷 期:2023年
核心收录:
主 题:Chemical activation
摘 要:In-line activation techniques in concrete 3D printing enhance the buildability of fresh concrete without influencing its pumpability, thus enabling fast construction rates with long pumping durations. While the in-line activation of cementitious mixes with set-accelerators is a promising approach, the set-accelerators fail in geopolymer system. Moreover, the prolonged pumping and printing process may limit the cementitious mix’s pumpability. Therefore, this study investigates a new approach of attaining on-demand setting in geopolymer by alkali activation of binder slurry at the print head. The primary advantage of the proposed method is that the mix remains non-activated until it reaches the print head, thus facilitating a long pumping duration. It was found that the mix design parameters (i.e., precursors to activator ratio, slag content etc.) and operating conditions (mixing duration of precursor slurry, stage wise activation etc.,) are critical in attaining the desired fresh concrete properties in geopolymer concrete. This is demonstrated by the fact that the optimum mix design chosen with 20 wt% of fly ash as precursor and the activator dosage of 35 wt% of binder showed a yield strength growth rate from ~500 Pa before activation to ~70 kPa in 20 mins after activation. Moreover, this study provides a new insight into the potential benefits of polycarboxylate based superplasticiser, which was widely reported as an incompatible admixture for silicate activated geopolymer concrete. © 2023, The Authors. All rights reserved.