Effects of basalt fibers and age on dynamic mechanical properties of geopolymer concrete

被引:0
作者
Wang, Zhihang [1 ]
Bai, Erlei [1 ]
Zhou, Junpeng [2 ]
Huang, He [3 ]
Ren, Biao [1 ]
机构
[1] College of Aeronautical Engineering, Air Force Engineering University, Xi'an
[2] Troop 93204, PLA, Beijing
[3] Institute of Engineering Design, Army Research Institute, Beijing
来源
Zhendong yu Chongji/Journal of Vibration and Shock | 2024年 / 43卷 / 19期
关键词
age; basalt fiber; geopolymer concrete; ordinary Portland cement concrete; strengthening and toughening effects;
D O I
10.13465/j.cnki.jvs.2024.19.016
中图分类号
学科分类号
摘要
Here, dynamic compression tests were conducted for basalt fiber reinforced geopolymer concrete (BFRGC) to investigate effects of basalt fiber content of 0. 1%, 0. 2% and 0. 3% and age of 3 d, 7 d and 28 d on dynamic mechanical properties of geopolymer concrete. Strengthening and toughening effects of basalt fibers on geopolymer concrete were analyzed. In addition, contrastive analysis was performed for strengthening and toughening effects of basalt fibers on geopolymer concrete and ordinary Portland cement concrete. The results showed that dynamic compressive strength (fcd ) and specific energy absorption (U) of BFRGC increase approximately linearly with strain rate, with increase in age, fcd and U of BFRGC continue to increase, and strain rate sensitivities of fcd and U continue to enhance; with increase in content of basalt fibers, fcd and U of BFRGC firstly increase and then decrease, and strain rate sensitivities of fcd and U also firstly increase and then decrease; the optimal content of basalt fiber is 0. 2%, basalt fibers have the strengthening and toughening effect on both geopolymer concrete and ordinary Portland cement concrete, the strengthening and toughening effect of basalt fibers on geopolymer concrete is better than that of ordinary Portland cement concrete. © 2024 Chinese Vibration Engineering Society. All rights reserved.
引用
收藏
页码:134 / 144
页数:10
相关论文
共 29 条
[21]  
Lu Y., Bai E., Wang Z., Et al., Dynamic mechanical properties of polymer concrete in flyash-slag base at different ages [J], Journal of Air Force Engineering University, 23, 6, pp. 99-106, (2022)
[22]  
Xie L., Dong Z., Jiang H., Et al., Statistical method of strain rate coefficient of dynamic strength of early-age concrete [J], Acta Ordnance Engineering, 42, pp. 159-166, (2021)
[23]  
Ren W., Xu J., Bai E., Et al., Dynamic mechanical properties of basalt fiber reinforced concrete after high temperature [J], Explosion and Shock Waves, 35, 1, pp. 36-42, (2015)
[24]  
Xu J., Li W., Huang X., Et al., Deformation characteristics of basalt fiber reinforced geopolymer concrete under impact load [J], Journal of the Chinese Academy of Ceramics, 37, 7, pp. 1137-1141, (2009)
[25]  
Wang Z.H., Bai E.L., Huang H., Et al., Dynamic mechanical properties of carbon fiber reinforced geopolymer concrete at different ages [J], Ceramics International, 49, 1, pp. 834-846, (2023)
[26]  
Li S., Ling T., Zhang H., Et al., Experimental study on dynamic mechanical properties of early-age concrete [J], Journal of Mining Science, 5, 5, pp. 502-510, (2020)
[27]  
Wang Z.H., Bai E.L., Zhang T., Et al., Early-age mechanical properties and constitutive model of polystyrene concrete under impact load [J], Materials Today Communications, 35, (2023)
[28]  
Xie L., Sun X.J., Yu Z.P., Et al., Experimental study and theoretical analysis on dynamic mechanical properties of basalt fiber reinforced concrete [J], Journal of Building Engineering, 62, (2022)
[29]  
Wang Z., Xu J., Ren W., Et al., Research on damage evolution and dynamic constitutive model of geopolymer concrete at high temperature [J], Journal of Vibration and Shock, 35, 2, pp. 110-115, (2016)