Milling of Sintered Carbide via Electrochemical Reaction - Investigation of Machining Phenomena -

A. Goto, Junda Chen, Kosuke Shirai
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引用次数: 1

Abstract

Herein, a new milling method via an electrochemical reaction is proposed to realize the high-speed machining of sintered carbide. In this method, cobalt (Co) on the surface of the sintered carbide is eluted via an electrochemical reaction, and the sintered carbide weakened by the elution of Co is scraped off with an insulating cutting edge. Results show that the cutting resistance is significantly reduced by the electrochemical reaction. However, under the conditions of a previous machining experiment, the amount of removal was low, and the machining test was conducted within a range that did not reflect the high-speed machining of sintered carbide. In this study, the conditions required to realize the high-speed machining of sintered carbide using the abovementioned method are examined. To increase the speed of electrolysis, the facing area between the tool and workpiece must be increased, and the current used for electrolysis must be increased as well. It is shown that the electrolytic current can be increased by performing machining with a large depth of cut. Consequently, the machining speed can be increased compared with that for the case without electrolysis, although a few problems remain.
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电化学反应铣削烧结硬质合金加工现象的研究
为此,提出了一种利用电化学反应的铣削方法来实现烧结硬质合金的高速加工。在这种方法中,通过电化学反应洗脱烧结硬质合金表面的钴(Co),并用绝缘切削刃刮掉被Co洗脱的烧结硬质合金。结果表明,电化学反应显著降低了切削阻力。然而,在之前的加工实验条件下,去除量较低,并且加工试验的范围并不能反映烧结硬质合金的高速加工。本研究考察了采用上述方法实现烧结硬质合金高速加工所需的条件。为了提高电解的速度,必须增加工具和工件之间的面对面积,电解所用的电流也必须增加。结果表明,大切削深度加工可以增加电解电流。因此,与不电解的情况相比,加工速度可以提高,尽管仍然存在一些问题。
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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