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Elucidation of gap area phenomenon in micro EDM drilling through direct observation

机译:通过直接观察阐明微EDM钻井中的差距区域现象

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In micro EDM, the discharge is significantly influenced by the bubble behavior. The depth-dependent characteristics of bubble behavior play a key role on the dielectric exchange and debris exhaust. However, the difficulty of direct observation on the narrow gap area is a big obstacle in clarifying the bubble behavior in the gap area. In this paper, a method is put forward to both directly observe the behavior of bubble in the interelectrode gap area and the behavior of bubble escaping from the micro hole based on the self-designed SiC sandwich workpiece in the micro hole drilling with EDM. The aim is to comprehensively investigate the bubble behavior by combining the observation of bubbles in the interelectrode gap area with the bubbles escaping from the micro hole. The observation was performed by a high-speed camera at high frame rate. Depending on the proposed methods, the influence of bubble behavior on the micro hole drilling with EDM is comprehensively analyzed.
机译:在微EDM中,放电受到气泡行为的显着影响。 泡沫行为的深度依赖性特征在介电交换和碎屑排气中发挥着关键作用。 然而,在狭窄间隙区域上直接观察的难度是阐明间隙区域中的气泡行为的重要障碍。 本文提出了一种方法,向两者直接观察到互电极间隙区域中的气泡的行为以及基于微孔在微孔钻孔中的微孔在微孔中逸出的气泡逸出的行为。 目的是通过将气泡与电极间隙区域中的气泡观察到从微孔逸出来全面地研究气泡行为。 在高帧速率下通过高速摄像机进行观察。 根据所提出的方法,综合分析了用EDM对微孔钻井的气泡行为的影响。

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