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引用本文:冉晋,张金喜,杨米加,王建刚.碳化与冻融交替作用下的混凝土抗压强度[J].建筑材料学报,2017,20(4):517-522
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碳化与冻融交替作用下的混凝土抗压强度
冉晋1, 张金喜1, 杨米加2, 王建刚1
1.北京工业大学交通工程北京市重点实验室,北京100124;2.北达科他州立大学土木与环境工程系,北达科他法戈ND58108
摘要:
通过室内单一碳化、单一冻融,以及碳化与冻融交替作用下的混凝土耐久性循环试验,对比分析了混凝土相对抗压强度、相对动弹性模量和碳化深度等指标的变化规律.结果表明:在碳化与冻融交替作用下,混凝土相对抗压强度要比单一冻融作用时大,但增加程度有限;混凝土相对动弹性模量要比单一冻融作用时小,碳化深度则比单一碳化作用时大.碳化与冻融交替作用下的混凝土抗冻耐久性较之单一冻融作用下有所下降,抗碳化能力较之单一碳化作用下有所减弱.最后建立了碳化与冻融交替作用下以碳化时间和冻融循环次数为变量的混凝土抗压强度拟合模型.
关键词:  混凝土  碳化  冻融  交替作用  相对抗压强度  相对动弹性模量  碳化深度  拟合模型
DOI:103969/j.issn.1007 9629201704005
分类号:
基金项目:国家自然科学基金面上项目(51278016)
Compressive Strength of Concrete Exposed to Alternate Carbonation and Freezing Thawing Cycles
RAN Jin,ZHANG Jinxi,YANG Mijia,WANG Jiangang
Beijing Key Laboratory of Traffic Engineering, Beijing University of Technology, Beijing 100124, China
Abstract:
Based on carbonation only test, freezing thawing cycle only test and alternate test between carbonation and freezing thawing cycles, relative compressive strength, relative dynamic modulus of elasticity and carbonation depth of concrete were measured and analyzed. Test data show that for the alternate actions between carbonation and freezing thawing cycles, relative compressive strength of concrete is higher than that exposed to freezing thawing cycle only process, but the increase is limited; its relative dynamic modulus of elasticity is lower than that exposed to freezing thawing cycle only process; whereas its carbonation depth is larger than that exposed to carbonation only process. The frost resistance and carbonation resistance of concrete decrease compared to that exposed to freezing thawing cycle only and carbonation only processes, respectively. Finally, a compressive strength fitting model subjected to the alternate actions between carbonation and freezing thawing cycles is established, in which two independent variables(carbonation time and number of freezing thawing cycles) are taken into account.
Key words:  concrete  carbonation  freezing thawing  alternate action  relative compressive strength  relative dynamic modulus of elasticity  carbonation depth  fitting model
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