全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

粉煤灰对早强型高延性水泥基复合材料早期力学性能影响
Effect of Fly Ash on Early Mechanical Properties of Early Strength High Ductility Cement-Based Composites

DOI: 10.12677/HJCE.2023.124059, PP. 536-541

Keywords: 硫铝酸盐水泥,ECC,粉煤灰,抗压强度,单轴拉伸
Sulphate Aluminium Cement
, ECC, Fly Ash, Compressive Strength, Uniaxial Elongation

Full-Text   Cite this paper   Add to My Lib

Abstract:

早强型高延性水泥基复合材料(SAC-ECC)具有早期强度高、且在拉伸荷载下呈现高延性的水泥基复合材料。为了降低材料成本,以粉煤灰掺量为变量,研究了1 d、3 d龄期SAC-ECC抗压强度和单轴拉伸性能的影响。结果表明:SAC-ECC的早期抗压强度随粉煤灰掺量的增加呈现逐渐减小的趋势,当粉煤灰掺量低于40%时,SAC-ECC 1 d和3 d抗压强度均可达到20 MPa~30 MPa;当粉煤灰掺量超过30%时SAC-ECC 1 d的极限延伸率大于1%,3 d抗拉强度相较于1 d有所下降但仍能表现出较好的延性。
Early strength high ductility cement-based composite (SAC-ECC) is a cement-based composite with high early strength and high ductility under tensile load. In order to reduce the material cost, the influence of fly ash content on the compressive strength and uniaxial tensile properties of SAC-ECC at 1 d and 3 d ages was studied. The results show that the early compressive strength of SAC-ECC decreases gradually with the increase of fly ash content. When the fly ash content is lower than 40%, the compressive strength of 1 d and 3 d of SAC-ECC can reach 20 MPa~30 MPa. When the fly ash content exceeds 30%, the ultimate elongation of SAC-ECC 1 d is greater than 1%. Compared with 1 d, the 3 d tensile strength decreases but still shows good ductility.

References

[1]  Yang, E.H., Yang, Y. and Li, V.C. (2007) Use of High Volumes of Fly Ash to Improve ECC Mechanical Properties and Material Greenness. ACI Materials Journal, 104, 620-628.
https://doi.org/10.14359/18966
[2]  王秋生, 温唯, 罗昊, 易勇. 粉煤灰掺量对PVA-ECC应变硬化性能的影响[J]. 北京工业大学学报, 2021, 47(4): 321-327.
[3]  蒋卓, 雷学文, 廖宜顺, 廖国胜. 粉煤灰对硫铝酸盐水泥水化历程的影响[J]. 硅酸盐通报, 2016, 35(12): 4088-4092+4103.
[4]  马保国, 韩磊, 李海南, 谭洪波, 王允栋. 硫铝酸盐水泥基胶凝材料的改性研究[J]. 功能材料, 2015, 46(5): 5062-5066.
[5]  马保国, 韩磊, 朱艳超, 田振. 掺合料对硫铝酸盐水泥性能的影响[J]. 新型建筑材料, 2014, 41(9): 19-21+50.
[6]  张俊杰. 硫铝酸盐水泥基ECC的制备与性能研究[D]: [硕士学位论文]. 西安: 西安建筑科技大学, 2018.
[7]  JC/T 2461-2018, 高延性纤维增强水泥基复合材料力学性能试验方法[Z]. 2018.
[8]  何锐, 郑欣欣, 王渊, 等. 硫铝酸盐水泥性能特点与改性技术研究现状[J]. 应用化工, 2022, 51(5): 1495-1501.
[9]  李国友, 霍亮, 张涛, 等. 高延性纤维增强水泥基复合材料的直接拉伸性能[J]. 材料导报, 2013, 27(S1): 298-301.
[10]  乔思皓, 薛婉文, 吴绍奇, 等. 粉煤灰掺量对ECC力学性能及纤维破坏形态的影响[J]. 混凝土, 2022(8): 82-86+91.
[11]  Li, V.C. and Leung, C.K.Y. (1992) Steady-State and Multiple Cracking of Short Random Fiber Composites. Journal of Engineering Mechanics, 118, 2246-2264.
https://doi.org/10.1061/(ASCE)0733-9399(1992)118:11(2246)
[12]  Tetsushi, K. and Li, V.C. (1998) Multiple Cracking Sequence and Saturation in Fiber Reinforced Cementitious Composites. Concrete Research and Technology, 9, 19-33.
https://doi.org/10.3151/crt1990.9.2_19

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133