Simulation of Flow Parameters and Magnetic Forces in Machining of Internal Cam through Viscoelastic Magnetic Abrasive Flow Finishing Process

K. Srinivas, Q. Murtaza, A. Aggarwal
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Abstract

This paper consists of the simulation of flow parameters for an internal cam finished through viscoelastic magnetic abrasive finishing process. Viscoelastic medium comprises Silicone oil and other additives which exhibit viscoelastic properties throughout the finishing process as the change in the temperature does not affect the viscosity of the medium. Carbonyl particles along with Silicon carbide of grit size 800 are thoroughly mixed with the medium prepared. Due to the cohesiveness in the viscoelastic medium, it does not stick to the surface of the internal cam. As the Viscoelastic magnetic abrasive medium flows through the internal cam surface, it is subjected to Magnetic forces generated by arc magnets made of NdFe 35 material, kept at 90o phase difference. Due to this Carbonyl particles, which are Ferro magnetic in nature re orient themselves and the abrasive particles would be thrown to the internal surface of the cam. As the abrasives slide tangentially to the internal surface of the cam and the forces involved during the flow are much higher, the machining of the surface takes place. In the present paper simulation has been made for finding the flow parameters using Ansys 16 and Magnetic field distribution is found using Ansys Maxwell simulation software. The result so obtains claims that the process is suitable for machining the internal cams and the complex shaped object.
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粘弹性磁磨料流精加工内凸轮的流动参数和磁力仿真
本文对粘弹性磁磨料内凸轮加工过程的流动参数进行了仿真研究。粘弹性介质包括硅油和其他添加剂,其在整个整理过程中表现出粘弹性特性,因为温度的变化不影响介质的粘度。羰基颗粒和粒度为800的碳化硅与所制备的介质充分混合。由于粘弹性介质中的黏性,它不会粘在内凸轮的表面。粘弹性磁性磨料介质流经凸轮内表面时,受到由NdFe 35材料制成的电弧磁体产生的磁力,保持相位差为90o。由于这种羰基颗粒,本质上是铁磁性的,重新定向,磨料颗粒将被扔到凸轮的内表面。由于磨料与凸轮内表面切向滑动,并且在流动过程中所涉及的力要高得多,因此表面进行加工。本文利用Ansys 16进行了流场参数求解仿真,并利用Ansys Maxwell仿真软件进行了磁场分布仿真。结果表明,该工艺适用于加工内凸轮和形状复杂的物体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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