个人信息Personal Information
副教授
博士生导师
硕士生导师
性别:男
毕业院校:田纳西大学
学位:博士
所在单位:土木工程系
学科:结构工程
办公地点:结构工程实验室303
联系方式:0411-84708510
电子邮箱:qcao@dlut.edu.cn
Chloride penetration resistance and frost resistance of fiber reinforced expansive self-consolidating concrete
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论文类型:期刊论文
发表时间:2018-01-15
发表刊物:CONSTRUCTION AND BUILDING MATERIALS
收录刊物:SCIE、EI
卷号:158
页面范围:719-727
ISSN号:0950-0618
关键字:Fibers; Expansive self-consolidating concrete; Chloride penetration resistance; Frost resistance
摘要:The objective of this paper is to investigate the chloride penetration resistance and frost resistance of fiber reinforced expansive self-consolidating concrete (ESCC). Fibers and expansive agent were used to decrease shrinkage, control cracks and enhance microstructure of the concrete. Steel fibers with three volume fractions (0.25%, 0.50% and 0.75%) of the total volume of concrete and monofilament polypropylene fibers with two volume fractions (0.05%, 0.10%) were used in the test. This study established levels of chloride penetration of fiber reinforced ESCC. The frost resistance was determined by rapid freezing and thawing test. Results indicated that PP shows more sensitivity on slump flow than SF but less impact on T-500. Chloride content increased with the incorporation and increase of fibers at depths less than 17.5 mm. However, chloride penetration resistance along the depth was enhanced with increasing fiber factor. SF0.50PP0.05 exhibits the best chloride penetration resistance, and SF with a volume fraction of 0.50% and PP with a volume fraction of 0.05% show mutual beneficial effect on the chloride penetration resistance of ESCC. The relative dynamic modulus of elasticity (RDME) of ESCC in the presence of fibers decreased slightly when compared with ESCC in the absence of fibers, and decreased with the increasing fiber factor. It also shows that the increase of fiber content decreased the speed of surface spalling of the specimens as well as the mass change. (C) 2017 Elsevier Ltd. All rights reserved.