首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Experimental study of an electrostatic field-induced electrolyte jet electrical discharge machining process
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Experimental study of an electrostatic field-induced electrolyte jet electrical discharge machining process

机译:静电场诱导电解质喷射电气放电加工过程的实验研究

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摘要

In this study, a new electrostatic field-induced electrolyte jet electrical discharge machining method has been proposed, which can automatically generate the tool electrode. Then, a series of experiments have been carried out to reveal the machining mechanism and test the machining ability of this method. The continuous observation experiments and the online current detection experiments have demonstrated that the electrolyte jet discharge machining is a pulsing, dynamic and cyclic process. Moreover, the 20-min time long reverse polarity experiments on the silicon surface have revealed that the machining is an electrical discharge machining process during the negative polarity machining; however, in the positive polarity machining, it is a hybrid electrical discharge machining and electrochemical machining process. Furthermore, the craters as small as 2 mu m in diameter on stainless steel and silicon are produced by this electrolyte jet electrical discharge machining, which has proved the micro-machining ability of this method.
机译:在该研究中,已经提出了一种新的静电场诱导的电解质射流加工方法,其可以自动产生工具电极。然后,已经进行了一系列实验以揭示加工机构并测试该方法的加工能力。连续观察实验和在线电流检测实验已经证明了电解质喷射放电加工是脉冲,动态和循环过程。此外,硅表面上的20分钟长度反向极性实验表明,在负极性加工期间,加工是一种电气放电加工过程;然而,在正极性加工中,它是混合电气放电加工和电化学加工过程。此外,通过该电解质喷射电气放电加工生产的小于不锈钢和硅的直径小于2μm的陨石坑,这已经证明了这种方法的微加工能力。

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