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Investigation of Depth-dependent Characteristics in Micro EDM Drilling Based on Direct Inter-electrode Area Observation

机译:基于直接电极间观察的微EDM钻探深度依赖性特征研究

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摘要

In the EDM process of drilling deep blind micro-hole with an aspect ratio larger than 10, machining speed decreases significantly in the last stage of machining due to frequent retreat of the micro tool. Up to now, reasons for the speed decrease were mostly thought to be gradual deterioration of the machining environment in the inter-electrode area, mainly caused by debris accumulation and concentration in the narrow gap area. However, it is difficult to confirm the state of the gap area in micro scale by direct observation. Therefore, an affirmed explanation for the speed decrease in micro EDM drilling has not been reported. In this research, in order to analyze the behaviors of bubble, debris and discharge characteristic in the inter-electrode area and the reason for speed decrease, direct observation of the gap area was carried out with an originally designed sandwich workpiece and a high-speed camera. The characteristics of discharge, bubble behavior and change of discharge area have been investigated and discussed in different hole depths.
机译:在钻探深盲微孔的EDM过程中,纵横比大于10,由于微工具的频繁退缩,加工的最后阶段的加工速度显着降低。到目前为止,速度减小的原因主要被认为是电极间面积中加工环境的逐渐恶化,主要由窄间隙区域中的碎屑积聚和浓度引起。然而,通过直接观察难以确认微尺度的间隙区域的状态。因此,尚未报告对微EDM钻井速度降低的肯定解释。在本研究中,为了分析电极间面积的泡沫,碎屑和放电特性的行为以及速度下降的原因,采用最初设计的夹心工件和高速进行间隙区域的直接观察。相机。已经研究了放电的特性,泡沫行为和放电区域的变化,并在不同的孔深度中讨论。

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