Observation of Quantity of Bubbles in Electrical Discharge Machining Gap

M. Hiroi, Y. Imai, M. Nakano
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引用次数: 3

Abstract

In order to further improve the machining accuracy and machining speed of electrical discharge machining (EDMing), it is necessary to understand the gap condition during the EDMing process. In this paper, a new method of using ultrasonic waves to measure the gap condition is proposed. First, the possibility that the change in the quantity of bubbles existing in the gap between the electrode and the workpiece could be detected as a change in the attenuation factor of ultrasonic waves is confirmed through a fundamental experiment of the proposed detection method. Second, the method is applied to an actual EDMing process with several machining settings. From these experiments, the dissimilarity of the gap conditions under several EDMing processes is clarified and the fact that the gap is filled with bubbles for most of the machining period is confirmed. Third, a comparative experiment is conducted to investigate the influence of the amount of bubbles in the gap on machining efficiency. As a result of the experiment, it is ascertained that machining with a small amount of bubbles has higher efficiency than machining with a large amount of bubbles. These results provide useful information for constructing the most suitable EDMing control system for improving machining performance.
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电火花加工间隙气泡量的观察
为了进一步提高电火花加工的加工精度和加工速度,有必要了解电火花加工过程中的间隙状况。本文提出了一种利用超声波测量间隙状态的新方法。首先,通过所提出的检测方法的基础实验,证实了通过超声波衰减系数的变化可以检测到电极与工件间隙中气泡数量的变化的可能性。其次,将该方法应用于具有多个加工设置的实际电火花加工。从这些实验中,澄清了几种电火花加工工艺的间隙条件的差异性,并证实了在大部分加工周期内间隙被气泡填充的事实。第三,通过对比实验研究了间隙气泡量对加工效率的影响。实验结果表明,少量气泡的加工效率高于大量气泡的加工效率。这些结果为构建最合适的电火花控制系统以提高加工性能提供了有用的信息。
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