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Non-steady State Chloride Migration and Binding in Cracked Self-compacting Concrete

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【作者】 马保国穆松De Schutter Geert

【Author】 MA Baoguo;MU Song;De Schutter Geert;School of Materials Science and Engineering,Wuhan University of Technology;Magnel Laboratory for Concrete Research,Department of Structural Engineering,Ghent University;

【机构】 School of Materials Science and Engineering,Wuhan University of TechnologyMagnel Laboratory for Concrete Research,Department of Structural Engineering,Ghent University

【摘要】 We adopted a notch method to study the influence of crack width(macro level) on chloride transport and binding of cracked concrete under a non-steady state migration test.The results show that migration coefficient of cracked concrete increases with increasing crack width up to a critical value(0.43 mm),for the whole concrete or the area close to crack;the increase of migration coefficient could be independent from crack parameter when a critical crack width is reached.For chloride binding,Langmuir isotherms of cracked concrete samples exhibit the similar decreasing trend as crack width increases from 0.27 to 1.96 mm.The increased current value could be responsible for the trend based on the hypothesis of electric force.

【Abstract】 We adopted a notch method to study the influence of crack width(macro level) on chloride transport and binding of cracked concrete under a non-steady state migration test.The results show that migration coefficient of cracked concrete increases with increasing crack width up to a critical value(0.43 mm),for the whole concrete or the area close to crack;the increase of migration coefficient could be independent from crack parameter when a critical crack width is reached.For chloride binding,Langmuir isotherms of cracked concrete samples exhibit the similar decreasing trend as crack width increases from 0.27 to 1.96 mm.The increased current value could be responsible for the trend based on the hypothesis of electric force.

【基金】 Funded by China Scholarship Council,the Special Research Fund(BOF)of Ghent University;National Natural Science Foundation of China(No.51178363)
  • 【文献出处】 Journal of Wuhan University of Technology(Materials Science Edition) ,武汉理工大学学报(材料科学版)(英文版) , 编辑部邮箱 ,2013年05期
  • 【分类号】TU528
  • 【被引频次】1
  • 【下载频次】49
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