掺入普通硅酸盐水泥的粉煤灰地聚物混凝土力学性能与微观特征
作者:
作者单位:

1.西南交通大学,陆地交通地质灾害防治技术国家工程研究中心,成都 610031;2.西南交通大学,土木工程学院,成都 610031;3.佛山市岩琉智慧城市科技发展有限公司,广东 佛山 528051;4.中铁第一勘察设计院集团有限公司,西安 710043

作者简介:

杨成(1977- ),男,博士,副教授,主要从事低碳建材研究,E-mail:yangcheng@swjtu.edu.cn
胡瑞青(通信作者),E-mail:1145074849@qq.com。
YANG Cheng (1977- ), PhD, associate professor, main research interest: low carbon building materials, E-mail: yangcheng@swjtu.edu.cn.

通讯作者:

中图分类号:

TU528.41

基金项目:

国家重点研发计划(2021YFB2600501);四川省自然科学基金(2022NSFSC0458);中铁第一勘察设计院集团有限公司科研开发项目(院科20-53,院科20-21)


Mechanical properties and microscopic characteristics of fly ash geopolymer concrete containing ordinary portland cement
Author:
Affiliation:

1.National Engineering Research Center of Geological Disaster Prevention Technology in Land Transportation, Chengdu 610031, P. R. China;2.School of Civil Engineering, Southwest Jiaotong University, Chengdu 610031, P. R. China;3.Foshan Youngnos Smart City Technology Development Co., Ltd., Foshan, Guangdong 528051, P. R. China;4.China Railway First Survey and Design Institute Group Co., Ltd., Xi’an 710043, P. R. China

Fund Project:

National Key Research & Development Program (No. 52278178); Natural Science Foundation of Sichuan Province (No. 2022RC1176); Research and Development Project of China Railway First Survey and Design Institute Group Co., Ltd.(Nos. 20-53, 20-21)

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    摘要:

    既有研究表明,在粉煤灰地聚物混凝土(FGC)中掺入少量普通硅酸盐水泥颗粒,能够增强其在常温养护后的力学性能,但这个结果尚未与早期接受高温养护且不含普通硅酸盐水泥的FGC进行力学特征对比,以验证其可实用程度。为更加贴近实际工程需求,将不含水泥颗粒且接受热固化的FGC与含有少量水泥颗粒仅接受室温固化的FGC进行了包括泊松比在内的基本力学性能测试和比较。为了从微观机制上解释力学性能的测试结果,进行了包括SEM、EDS、XRD、FTIR、Micro-CT等的分析。结果表明:常温养护下含有少量水泥颗粒的FGC各项力学性能与不含水泥颗粒并接受热固化的FGC相近,临破坏前的试件横向应变与纵向应变之比均接近1.0,均有突出的横向变形能力;掺量8%的水泥颗粒在室温条件下对FGC聚合反应的促进效果接近FGC接受高温养护,在形成更为合理的微观孔隙结构方面,改进后的FGC在常温养护条件下优于高温养护FGC。

    Abstract:

    Previous studies show that the fly ash geopolymer concrete cured at room temperature can be significantly improved if mixed into a small dosage of ordinary Portland cement. However, this modified material has rarely been compared with the traditional fly ash geopolymer concrete, cured at high temperature and not mixed with any ordinary Portland cement. In order to meet the needs of practical engineering applications, the basic mechanical properties, including Poisson,s ratios, were tested and compared between two different materials, i.e., the thermally cured fly ash polymer concrete without cement and the room temperature cured fly ash geopolymer concrete with a small dosage of cement particles. Also, to clarify the mechanism in results of the mechanical tests, the microscope and chemical elements tests, including SEM, EDS, XRD, FTIR and CT, are performed. The results show that the mechanical properties of room-temperature cured fly ash polymer concrete containing a little cement are close to those of thermal cured FGC without cement particles. Before compressive failure of prism specimens, the lateral to the vertical strain ratio is close to 1.0, exhibiting a significant lateral deformation capability. After adding 8% cement particles, the degree of polymerization reaction at room temperature is close to that of high temperature curing measures without cement. In forming a more reasonable microscopic pore structure, the samples cured at room temperature are better than those cured at high temperatures.

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杨成,熊凌鑫,游俊杰,吉鑫民,胡瑞青.掺入普通硅酸盐水泥的粉煤灰地聚物混凝土力学性能与微观特征[J].土木与环境工程学报(中英文),2024,46(3):207-215. YANG Cheng, XIONG Lingxin, YOU Junjie, JI Xinmin, HU Ruiqing. Mechanical properties and microscopic characteristics of fly ash geopolymer concrete containing ordinary portland cement[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2024,46(3):207-215.10.11835/j. issn.2096-6717.2023.107

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  • 收稿日期:2023-07-28
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  • 在线发布日期: 2024-05-20
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