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Fractal Study on the Evolution of Micro-Pores in Concrete Under Freeze-Thaw

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【作者】 孙浩然邹春霞XU DeruGUO XiaosongHUANG Kun

【Author】 SUN Haoran;ZOU Chunxia;XU Deru;GUO Xiaosong;HUANG Kun;College of Water Conservancy and Civil Engineering, Inner Mongolia Agricultural University;Xi’an HaiTang Vocational College;

【通讯作者】 邹春霞;

【机构】 College of Water Conservancy and Civil Engineering, Inner Mongolia Agricultural UniversityXi’an HaiTang Vocational College

【摘要】 After exposure to freeze-thaw cycles, scanning electron microscopy(SEM) and nuclear magnetic resonance(NMR) were used to test the four mixtures. The microstructure is qualitatively analyzed from the 2D SEM image and the 3D pore distribution curve before and after freezing and thawing. The fractal dimension is utilized to characterize the two-dimensional topography image and the three-dimensional pore distribution, quantitatively. The results reveal that the surface porosity and volume porosity increase as the freeze-thaw action increases. Self-similarity characteristics exist in micro-damage inside the concrete. In the fractal dimension, it is possible to characterize pore evolution quantitatively. The fractal dimension correlates with pore damage evolution. The fractal dimension effectively quantitatively characterizes micro-damage features at various scales from the local to the global level.

【Abstract】 After exposure to freeze-thaw cycles, scanning electron microscopy(SEM) and nuclear magnetic resonance(NMR) were used to test the four mixtures. The microstructure is qualitatively analyzed from the 2D SEM image and the 3D pore distribution curve before and after freezing and thawing. The fractal dimension is utilized to characterize the two-dimensional topography image and the three-dimensional pore distribution, quantitatively. The results reveal that the surface porosity and volume porosity increase as the freeze-thaw action increases. Self-similarity characteristics exist in micro-damage inside the concrete. In the fractal dimension, it is possible to characterize pore evolution quantitatively. The fractal dimension correlates with pore damage evolution. The fractal dimension effectively quantitatively characterizes micro-damage features at various scales from the local to the global level.

【关键词】 fractal dimensionfreeze-thaw cycleconcreteSEMNMR
【Key words】 fractal dimensionfreeze-thaw cycleconcreteSEMNMR
【基金】 Funded by the Key Project of Science and Technology Research in Higher Educational Institutions of Inner Mongolia Autonomous Region (No.NJZZ22518);Inner Mongolia Natural Science Foundation Project (No.2022MS05043);Inner Mongolia Autonomous Region Water Conservancy Research Special Project(No.NSK2016-S11)
  • 【文献出处】 Journal of Wuhan University of Technology(Materials Science) ,武汉理工大学学报(材料科学版)(英文版) , 编辑部邮箱 ,2024年01期
  • 【分类号】TU528.01
  • 【下载频次】11
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