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《Journal of Foshan University(Natural Science Edition)》 2010-03
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The simulation of the mechanical properties of ceramic-based composites reinforced with nano-micro particles

HU Jin-shan1,ZHU Wen-liang2,YANG Hong3,LUO Dong-mei3(1.School of Civil Engineering,Lanzhou Jiaotong University,Lanzhou 730070,China;2.School of Civil Engineering and Transportation,South China University of Technology,Guangzhou 510641,China;3.Department of Civil Engineering and Architecture,Foshan University,Foshan 528000,China)  
The global-local homogenization method with precise period boundary conditions is applied to analyze the factors to affect the mechanical properties of ceramic composites reinforced by spherical nano-micro particles.The sizes of the particles vary from micro-to nano-scale.Two kinds of representative volume elements(RVE) are applied to describe different arrays of nano-micro particles.One is the enwrapping array in which the micro-particles are enwrapped by some nano-particles,and the other is the nesting array in which the nano-particles are nested within the microscopic particles.The numerical simulation is performed with the changes of radius ratios of nano-micro particles,volume fractions and the interfacial properties.The results show that the low radius ratios of nano-micro particles produce a larger effective elastic modulus for its more uniform dispersion,and the interfacial damage between micro particles and matrix deteriotates the effective elastic modulus more serious than the interfacial damage between nano-particles and matrix,and the hexagon RVE with nesting array can make an overestimate for effective elastic modulus of ceramic composites.It shows that it is significant to improve the mechanical properties of ceramic materials by mixing some nano-and micro-particles into the matrix with good designed interface properties from the viewpoints of nano-microscopic crystal structure.
【Fund】: 国家自然科学基金资助项目(10772047/A020206);; 教育部留学回国基金资助项目(2008890);; 佛山市科技专项基金资助项目(2007055B)
【CateGory Index】: TB332
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