磁流变抛光液在部件纳米加工中的应用综述

Manjesh Kumar, Hari Narayan Singh Yadav, Abhinav Kumar, M. Das
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引用次数: 24

摘要

表面质量是影响产品寿命和任何部件性能的最关键因素。大多数早期的技术显示精度在微米或亚微米范围内,表面粗糙度在纳米范围内,并且在光学,机械和电子部件的生产中几乎没有表面缺陷。这种精加工方法采用磁场来控制使用磁流变液作为抛光介质的精加工力。磁流变液(MR)由铁磁性颗粒和磨料颗粒组成。它是一种现代智能流体。磁流变液组分及其体积浓度的优化选择对新开发的工程产品的超精细精加工起着至关重要的作用。在激活磁场的支持下,磁流变液的流变特性可以迅速而轻松地改变。传统的精加工方法由于缺乏精加工力的控制和抛光工具在零件复杂自由曲面上运动的限制,在复杂自由曲面的精加工中相对较差。基于磁流变流体的加工有不同的类型,包括磁流变精加工、磁流变磨粒流精加工、旋转磁流变磨粒流精加工和球端磁流变精加工。本文讨论了不同类型磁流变液基精加工工艺的发展及其操作模式。综述了近十年来发展起来的磁流变液装置的工作原理、特点和应用。本文还重点研究了磁流变液的流变特性及其在各种复杂自由曲面零件抛光中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An overview of magnetorheological polishing fluid applied in nano-finishing of components
Surface quality is the most crucial factor affecting the product lifespan and performance of any component. Most earlier technologies display accuracy in the micrometre or submicrometre range, surface roughness in the nanometre range, and almost no surface defects in the production of optical, mechanical and electronic parts. Such finishing methods incorporate a magnetic field to control the finishing forces using magnetorheological fluid as the polishing medium. Magnetorheological fluid (MR) consists of ferromagnetic and abrasive particles. It is a type of modern intelligent fluid. An optimum selection of magnetorheological fluid constituents and their volume concentration plays an essential role for the ultra-fine finishing of newly developed engineering products. Rheological characteristics of magnetorheological fluid can change rapidly and effortlessly with the support of an activated magnetic field. Traditional finishing methods are comparatively inferior in finishing complex freeform surfaces, due to the lack of controlling finishing forces and limitations of polishing tool movement over the complex freeform contour of the components. There are different types of processes based on the magnetorheological fluid including magnetorheological finishing, magnetorheological abrasive flow finishing, rotational magnetorheological abrasive flow finishing and ball end magnetorheological finishing. This article discusses the development of different types of magnetorheological-fluid-based finishing processes and their modes of operation. The MR fluid devices developed in the last decade are thoroughly reviewed for their working principles, characteristics and applications. This article also highlights the study of rheological characterization of magnetorheological fluid and its applications in different polishing methods appropriate for finishing various complex freeform components.
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