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Mechanism of a Magnetic Field Assisted Finishing Process Using a Magnet Tool and Magnetic Particles

机译:使用磁铁工具和磁性颗粒的磁场辅助精加工过程的机理

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摘要

This paper describes a new efficient internal finishing process for a thick tubing (10~30mm in thickness), by the application of a magnetic field-assisted machining process using a magnet tool. Because a stronger magnetic force can be generated than conventional magnetic abrasives, it makes the internal finishing of thick non-ferromagnetic tubing possible. Moreover, in order to obtain a high-quality surface, this process method was developed using magnetic particles magnetically attracted on the magnet surface. This paper characterizes the processing principle and advantages of this process. Then, the mechanism of this finishing process was examined by a plane model experiment. It was clarified that the magnetism and shape of a magnetic particle influence realization possibility of this processing method, and it also influence the finishing characteristics.
机译:本文介绍了一种新的有效的内部精加工工艺,该工艺适用于厚壁管(厚度为10〜30mm),它是利用磁场工具借助磁场工具加工而成的。由于可以产生比常规磁性磨料更强的磁力,因此可以对厚的非铁磁管进行内部精加工。此外,为了获得高质量的表面,使用磁性吸附在磁体表面上的磁性颗粒开发了该加工方法。本文描述了该工艺的加工原理和优点。然后,通过平面模型实验检查了该精加工过程的机理。明确了磁性粒子的磁性和形状影响该加工方法的实现可能性,并且还影响精加工特性。

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