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OALib Journal期刊
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Relation of Viscosity and Inner Structure of Suspension under Magnetic Field
磁场中浆料粘度与内部结构的关系研究

Keywords: viscosity,magnetic particle,chain-like cluster,magnetic field,FGM
粘度
,Ni粒子,链状团簇,磁场,功能梯度材料,磁场作用,浆料粘度,内部结构,关系研究,Magnetic,Field,Suspension,Inner,Structure,Viscosity,自由运动,团簇尺寸,链状,含量,磁场强度,结果,系统,复合浆料,金相显微镜,旋转粘度计,磁场线圈,实验

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Abstract:

When an external magnetic field was applied on the suspension composed of ferromagnetic Ni and nonmagnetic ZrO2 particles, the viscosity of the suspension increased drastically. The relation of viscosity and inner structure of suspension was investigated by using magnetic coils, rotational viscometer and optical microscope. The results show that the viscosity increases with the magnetic field strength and Ni content increasing because of the formation of chain-like clusters in the suspension. As the magnetic field increases, Ni clusters become larger, which hinders the free move of particles, so the viscosity increases. Similarly, Ni clusters in the suspension increase with Ni content increasing, and hence the viscosity increases.

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