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Internal finishing of capillary tubes by magnetic abrasive finishing using a multiple pole-tip system

机译:使用多极尖系统通过磁研磨完成毛细管的内部精加工

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摘要

Due to difficulties in controlling magnetic abrasive in the finishing area during internal magnetic abrasive finishing (MAF) of capillary tubes, the finished length is limited in practice to just a few times the pole-tip width. The accumulation of multiple short finishing passes is necessary for long-tube finishing, which results in excessive finishing times. The use of a multiple pole-tip system with a tool, a solid rod consisting of alternating magnetic and nonmagnetic regions, was proposed to overcome this issue. The tool enables multiple finishing regions to be engaged simultaneously. This paper clarifies the finishing characteristics and mechanism and shows the effects of the tool's magnetic properties (including the intervals between magnetic and non-magnetic regions) on the tool and abrasive motion and the interior finishing characteristics of capillary tubes. This paper also proposes a simple method to determine the pole-tip feed length, which allows the MAF process to achieve a uniformly finished surface in half the time of the existing single pole-tip system.
机译:由于在毛细管的内部磁研磨加工(MAF)期间难以控制精加工区域中的磁研磨剂,因此在实践中将精加工长度限制为仅极尖宽度的几倍。长管精加工需要多次多次精加工,这会导致精加工时间过长。为了克服这个问题,提出了使用带有工具的多极尖端系统,即由交替的磁性和非磁性区域组成的实心杆。该工具可同时接合多个精加工区域。本文阐明了精加工特性和机理,并显示了工具的磁性(包括磁性和非磁性区域之间的间隔)对工具的影响以及磨料运动和毛细管的内部精加工特性。本文还提出了一种确定极尖进给长度的简单方法,该方法允许MAF过程在现有单极尖系统的一半时间内获得均匀的精加工表面。

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