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作 者:LIU Jianzhong SUN Wei MIAO Changwen LIU Jiaping LI Changfeng 刘建忠;孙伟;MIAO Changwen;LIU Jiaping;LI Changfeng(Jiangsu Key Laboratory of Civil Engineering Materials,Southeast University;State Key Laboratory of High Performance Civil Engineering Materials,Jiangsu Research Institute of Building Science)
机构地区:[1]Jiangsu Key Laboratory of Civil Engineering Materials,Southeast University [2]State Key Laboratory of High Performance Civil Engineering Materials,Jiangsu Research Institute of Building Science
出 处:《Journal of Wuhan University of Technology(Materials Science)》2012年第1期166-171,共6页武汉理工大学学报(材料科学英文版)
基 金:National Basic Research Program of China (973 Program) (No. 2009CB623200);National Natural Science Foundation of China (Nos. 50908104 and 50978126)
摘 要:A new test method was introduced to measure fiber distribution in steel fiber reinforced mortar by using image analysis technique. Through specimen preparation, image acquisition, fiber extraction, and measurement of related fiber parameters, quantitative analysis of fiber distribution could be obtained by two parameters, namely dispersion coefficient and orientation factor. Effect of boundaries, size and steel fiber content on fiber distribution was discussed. Results showed that, steel fiber distribution was affected by boundary effect, which would be weakened with the increase of specimen size. If the length and width remained constant, the specimen height had a significant effect on orientation factor of fiber, while its influence on dispersion coefficient was not so obvious. With the increase of steel fiber content, dispersion coefficient decreased slightly, and orientation factor deviated from 0.5.A new test method was introduced to measure fiber distribution in steel fiber reinforced mortar by using image analysis technique. Through specimen preparation, image acquisition, fiber extraction, and measurement of related fiber parameters, quantitative analysis of fiber distribution could be obtained by two parameters, namely dispersion coefficient and orientation factor. Effect of boundaries, size and steel fiber content on fiber distribution was discussed. Results showed that, steel fiber distribution was affected by boundary effect, which would be weakened with the increase of specimen size. If the length and width remained constant, the specimen height had a significant effect on orientation factor of fiber, while its influence on dispersion coefficient was not so obvious. With the increase of steel fiber content, dispersion coefficient decreased slightly, and orientation factor deviated from 0.5.
关 键 词:image analysis steel fiber dispersion coefficient orientation factor CHARACTERIZATION
分 类 号:TU528.572[建筑科学—建筑技术科学] TU528.042
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