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作 者:张卫东[1] 王振波[2] 何卫忠[1] ZHANG Weidong WANG Zhenbo HE Weizhong(School of Architecture and Civil Engineering, Huaiyin Institute of Technology, Huaian 223001, China College of Civil En- gineering, Nanjing University of Technology, Nanjing 210009, China)
机构地区:[1]淮阴工学院建筑工程学院,江苏淮安223001 [2]南京工业大学土木工程学院,江苏南京221009
出 处:《郑州大学学报(工学版)》2017年第2期78-82,共5页Journal of Zhengzhou University(Engineering Science)
基 金:江苏省高校"青蓝工程"优秀骨干教师基金资助项目;淮安市科技计划基金资助项目(HAS2014021-3)
摘 要:通过橡胶自密实混凝土的快速冻融试验,研究了不同橡胶取代率下橡胶自密实混凝土力学性能随冻融循环次数的变化规律.试验结果表明:在相同冻融循环次数下,橡胶取代率对橡胶自密实混凝土立方体抗压强度、劈裂强度影响较大,但与取代率不成比例关系;在相同橡胶取代率的情况下,立方体抗压强度及劈裂强度均显示出随冻融循环次数增加而下降的趋势.通过对相关数据的分析研究,给出了橡胶自密实混凝土拉压比随冻融循环次数变化的规律,回归立方体抗压强度、劈裂强度与冻融循环次数间的简明关系式.Through the freezing and thawing tests, the influence of replacement rate of rubber on mechanical properties of rubberized self-compacting concrete (RSCC) under different cycle times of freeze-thaw were stud- ied. The results showed that the replacement rate of rubber had great influence on cubic compressive strength and split strength of RSCC under the same freeze-thaw cycle time,but not in proportional relation; cubic com- pressive strength and split strength of RSCC under the same replacement rate of rubber decreased with the freeze-thaw cycle times increasing. Based on the analysis of the test data, the change law between tension- compression ratio and freeze-thaw cycle times was given, and the relevant simple formula were regressed be- tween cubic compressive strength, split strength and freeze-thaw cycle times. This study could serve as a refer- ence for durability of RSCC under freezing and thawing environment.
关 键 词:橡胶自密实混凝土 冻融循环 取代率 立方体抗压强度 劈裂强度
分 类 号:TU528.1[建筑科学—建筑技术科学]
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