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多种因素对碱激发粉煤灰和矿渣基地质聚合物稳定土工作性能及早期强度发展的影响

Influence of Multiple Factors on the Workability and Early Strength Development of Alkali-Activated Fly Ash and Slag-Based Geopolymer-Stabilized Soil.

作者信息

Li Xinyu, Zhao Yufei, Hu Yong, Wang Guanci, Xia Minmin, Luo Biao, Luo Zhengdong

机构信息

Hunan Xihu Construction Group Co., Ltd., Changsha 410013, China.

China Institute of Water Resources and Hydropower Research, Beijing 100038, China.

出版信息

Materials (Basel). 2022 Apr 6;15(7):2682. doi: 10.3390/ma15072682.

Abstract

The complexity of composite geopolymer materials results in instability in the setting and hardening of geopolymer-stabilized soil. In order to determine the appropriate mix proportion scheme for composite geopolymer-stabilized soil, this study investigated the effects of two preparation methods, fly ash/slag ratio and alkali activator modulus, on workability and strength development trends in alkali-excited fly ash and slag-based geopolymer-stabilized soil. The results showed that the high ambient temperatures created by the one-step method were more conducive to the setting and hardening of the geopolymer-stabilized soil; its 3 d/28 d UCS (unconfined compression strength) ratio was 62.43-78.60%, and its 7 d/28 d UCS ratio was 70.37-83.63%. With increases of the alkali activator modulus or the proportion of fly ash, the setting time of stabilized soil was gradually prolonged, and its fluidity increased. Meanwhile, the strength development of stabilized soil was significantly affected by the proportion of fly ash and the alkali activator modulus; the maximum UCS value was obtained at II-2-O, prepared by the one-step method, with an alkali activator modulus of 1.2 and a fly ash/slag ratio of 20/80. Specifically, the 3, 7, and 28 d UCS values of II-2-O were 1.65, 1.89, and 2.26 MPa, respectively, and its 3 d/28 d UCS ratio and 7 d/28 d UCS ratio were 73.01% and 83.63%, respectively. These results will be of great importance in further research on (and construction guidance of) composite geopolymer-stabilized soil.

摘要

复合地质聚合物材料的复杂性导致地质聚合物稳定土在凝结和硬化过程中不稳定。为了确定复合地质聚合物稳定土的合适配合比方案,本研究探讨了两种制备方法、粉煤灰/矿渣比和碱激发剂模量对碱激发粉煤灰和矿渣基地质聚合物稳定土的工作性能和强度发展趋势的影响。结果表明,一步法产生的较高环境温度更有利于地质聚合物稳定土的凝结和硬化;其3d/28d无侧限抗压强度(UCS)比值为62.43 - 78.60%,7d/28d UCS比值为70.37 - 83.63%。随着碱激发剂模量或粉煤灰比例的增加,稳定土的凝结时间逐渐延长,流动性增加。同时,稳定土的强度发展受粉煤灰比例和碱激发剂模量的显著影响;在一步法制备的II - 2 - O中,碱激发剂模量为1.2,粉煤灰/矿渣比为20/80时,获得了最大UCS值。具体而言,II - 2 - O的3、7和28d UCS值分别为1.65、1.89和2.26MPa,其3d/28d UCS比值和7d/28d UCS比值分别为73.01%和83.63%。这些结果对于复合地质聚合物稳定土的进一步研究(和施工指导)具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5ef/9000810/b19dfd9f7383/materials-15-02682-g001.jpg

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