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首页> 外文期刊>Journal of Materials Processing Technology >A modified electrode design for improving process performance of electric discharge drilling
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A modified electrode design for improving process performance of electric discharge drilling

机译:改进电极设计,用于提高放电钻井工艺性能

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摘要

The present experimental investigation aims at improvement of the response characteristics during electric discharge drilling process. It is a well-established fact that aspect ratio of a drilled hole in Electric Discharge Drilling (EDD) process is limited due to the occurrence of arcing and short circuiting, resulting from ineffectiveness of flushing at larger depth. The prevention of accumulation of debris during EDD is important in order to improve the material removal rate (MRR) and aspect ratio of the hole. This can be achieved by designing shaped tool electrodes which can easily evacuate the debris from the machining zone. In the present experimental investigation, a novel tool electrode has been fabricated by drilling an inclined through hole into the tool electrode (Patent pending). The proposed electrode was found effective in eliminating the accumulation of debris in the machining zone. Moreover, the need of flushing during the process has been totally eliminated making it a self-flushing electrode. The images captured using high speed camera supports the mechanism explained for the debris evacuation. The proposed electrode (diameter 0.8 mm) can drill a hole of depth greater than 9.8 mm in Ti6Al4V which is the highest depth ever reported in the literature for Ti6Al4V using electric discharge drilling. The effect on other response parameters such as machining time, hole taper and corner radius has also been investigated and compared with the holes drilled by solid cylindrical electrode. The fabrication time of the proposed electrode is lower than time reported in the literature. Therefore, the proposed electrode is capable of producing holes of high aspect ratio with minimum electrode fabrication time, thus, improving the overall productivity and reducing the cycle time.
机译:本实验研究的目的在于在放电钻井过程改进的响应特性。这是一个公认的事实是,在电火花钻孔(EDD)处理的钻孔的纵横比被由于电弧和短路,从在较大深度的冲洗无效所得的发生的限制。碎屑的积累的EDD时的预防是为了提高材料去除率(MRR)以及所述孔的纵横比重要。这可以通过设计形状的工具电极,可以很容易地从加工区排出的碎片来实现。在本实验研究了一种新的工具电极已被钻通孔的倾斜到工具电极(专利申请中)来制造​​。所提出的电极被发现有效地消除在加工区的碎屑的积累。此外,冲洗过程中的需求已经完全消除使其成为自冲洗电极。这些图像使用高速照相机支持机构的碎屑抽排说明捕获。所提出的电极(0.8mm直径)可钻深度大的孔超过980毫米的Ti6Al4V这是在文献中使用的Ti6Al4V放电钻孔曾经报道的最高深度。在其他反应参数,例如加工时间,孔的锥度和拐角半径的影响也进行了研究,并与由实心圆柱形电极钻出的孔进行比较。所提出的电极的制造时间比在文献中报道的时间低。因此,所提出的电极能够产生高纵横比的通孔用最小的电极制造时间,从而,提高了整体的生产率和减少循环时间的。

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