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Experimental Investigation of Polishing Character of Rotating Magnetic Polishing Fluids

机译:旋转磁力抛光液抛光特性的实验研究

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摘要

For mechanical parts with complex shape, the surface is difficult to be finished by the automatic and effective methods. The magnetic fluid mixed with the polishing and cutting particles has motion characteristics in magnetic field. This paper introduces a kind of polishing technology which can rotate magnetic polishing fluid in the influence of magnetic field. The viscosity and hardness of magnetic polishing fluid change under the magnetic field, and the magnetic polishing fluid rotates in the fluence of the magnetic stirring apparatus. When we select the best position in the magnetic polishing fluids and immerse the workpiece in the magnetic polishing fluids, the magnetic fluids rotate and move relatively to the workpiece. The friction between the magnetic fluid and the surface of workpiece has the finishing efficiency. The experiment is carried out to study the relation of the roughness and polishing and location on the home-made polishing laboratory platform in detail. The experimental results show that the rotating magnetic polishing liquid can be used for polishing the workpiece in super smooth processing, which is much better than polishing abrasive alone in reducing surface roughness. The study opens a new field for the application of the magnetic fluid. However, the direction of the field, the speed of the movement, and the polishing time of the process parameters still needs further research.
机译:对于具有复杂形状的机械部件,表面难以通过自动和有效的方法完成。与抛光和切割颗粒混合的磁性流体在磁场中具有运动特性。本文介绍了一种抛光技术,可旋转磁场影响磁抛光液。磁场下磁性抛光液变化的粘度和硬度,磁抛光流体旋转磁力搅拌装置的光线。当我们选择磁性抛光流体中的最佳位置并将工件浸入磁性抛光流体中时,磁流体旋转并相对地移动到工件。磁性流体和工件表面之间的摩擦具有精加工效率。进行实验,以研究详细研究自制抛光实验室平台上的粗糙度和抛光和位置的关系。实验结果表明,旋转磁性抛光液可用于在超级光滑的加工中抛光工件,这比单独的抛光磨料更好地降低表面粗糙度。该研究打开了一种用于施加磁性流体的新领域。然而,场的方向,运动的速度,以及过程参数的抛光时间仍需要进一步研究。

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