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Energy Dissipation and Apparent Viscosity of Semi-solid Metal during Rheological Processes Part Ⅰ: Energy Dissipation
作者姓名:Wen  LIU  Shuming  XING  Peiwei  BAO  Milan  ZHANG  Liming  XIAO
作者单位:Beijing Jiaotong University, Beijing 100044, China
摘    要:The energy dissipation caused by the viscous force has great effects on the flow property of semi-solid metal during rheological processes such as slurry preparing, delivering and cavity filling. Experimental results in this paper indicate that the viscous friction between semi-solid metal and pipe wall, the collisions among the solid particles, and the liquid flow around particles are the three main types of energy dissipation. On the basis of the hydromechanics, the energy dissipation calculation model is built. It is demonstrated that the micro-structural parameters such as effective solid fraction, particle size and shape, and flow parameters such as the mean velocity, the fluctuant velocity of particles and the relative velocity between the fluid and solid phase, affect the energy dissipation of semi-solid metal.

关 键 词:半固态金属  流变过程  能量耗散  外观黏度
收稿时间:2006-11-13
修稿时间:2007-01-24

Energy Dissipation and Apparent Viscosity of Semi-solid Metal during Rheological Processes Part I: Energy Dissipation
Wen LIU Shuming XING Peiwei BAO Milan ZHANG Liming XIAO.Energy Dissipation and Apparent Viscosity of Semi-solid Metal during Rheological Processes Part I: Energy Dissipation[J].Journal of Materials Science & Technology,2007,23(3):342-346.
Authors:Wen LIU  Shuming XING  Peiwei BAO  Milan ZHANG  Liming XIAO
Affiliation:Beijing Jiaotong University, Beijing 100044, China
Abstract:The energy dissipation caused by the viscous force has great effects on the flow property of semi-solid metal during rheological processes such as slurry preparing, delivering and cavity filling. Experimental results in this paper indicate that the viscous friction between semi-solid metal and pipe wall, the collisions among the solid particles, and the liquid flow around particles are the three main types of energy dissipation. On the basis of the hydromechanics, the energy dissipation calculation model is built. It is demonstrated that the micro-structural parameters such as effective solid fraction, particle size and shape, and flow parameters such as the mean velocity, the fluctuant velocity of particles and the relative velocity between the fluid and solid phase, affect the energy dissipation of semi-solid metal.
Keywords:Semi-solid metal  Energy dissipation  Rheology  Apparent viscosity  Model
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