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Electrochemical drilling with vacuum extraction of electrolyte

机译:真空抽出电解液进行电化学钻孔

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摘要

Forward flow pattern of electrolyte is widely used in electrochemical drilling (ECD) process. But electrolyte in the machining gap presents a sharp divergent flow which causes an abnormal dissolution and even harmful sparking. Reverse flow of electrolyte leads to a stable machining process but is rarely used due to the poor application feasibility. In this paper, an electrochemical drilling method with vacuum extraction of electrolyte has been proposed. Vacuum extraction of electrolyte greatly facilitates the application of reverse flow in electrochemical drilling. Flow distributions along the machining gap with different electrolyte flow pattern are compared numerically and experimentally. Reverse flow using vacuum extraction is shown to improve the process stability while diminishing sparking and formation of striations. Machining characteristics of vacuum extraction are investigated experimentally. To minimize the radial overcut of machined hole by electrochemical machining with vacuum extraction of electrolyte, the orthogonal design is used to optimize process parameters such as initial machining gap, applied voltage, tool feed rate, and electrolyte concentration. Good results have been obtained in the experiments with optimized parameters.
机译:电解质的正向流动模式已广泛用于电化学钻井(ECD)过程中。但是,加工间隙中的电解液呈现出急剧的发散流动,这会导致异常溶解甚至有害的火花。电解液的逆流可导致稳定的加工过程,但由于应用可行性差而很少使用。本文提出了一种真空抽提电解液的电化学钻孔方法。真空抽出电解液极大地促进了逆流在电化学钻井中的应用。在数值上和实验上比较了沿具有不同电解液流动方式的加工间隙的流动分布。已显示使用真空萃取的逆流可改善工艺稳定性,同时减少火花和条纹的形成。实验研究了真空萃取的加工特性。为了使通过电化学加工和真空抽出电解液而使加工孔的径向过切最小化,采用正交设计来优化工艺参数,例如初始加工间隙,施加电压,工具进给速率和电解液浓度。在优化参数的实验中取得了良好的结果。

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