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Research of lower tool electrode wear in simultaneous EDM and ECM

机译:同时进行EDM和ECM时降低工具电极磨损的研究

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摘要

Tool electrode wear is a key factor influencing shape accuracy in electrical discharge machining (EDM), In the process of drilling blind holes, wear constantly reduces the length of the tool electrode. As a result, when eroding down to a fixed depth, the real depth of the hole will be significantly smaller. The problems created by tool electrode wear become more complicated when machining complex three-dimensional micro-cavities. Performing electric discharge in deionized water can get less tool electrode wear compared with traditional EDM. However, this process causes excessive electrolytic-erosion and workpiece surface damage as slight electrical conductivity always exists in deionized water. In this manuscript, a new method to reduce the electrode wear and suppress excessive electrolytic-erosion is investigated. Electrolyte with a much higher conductivity than deionized water is utilized as machining fluid in the method, while electro-deposition is used to compensate for tool electrode wear in the processing. Besides, nanosecond voltage pulse and tool electrode with side-insulation are adopted to suppress excessive electrolytic-erosion. Experiment results show that this new method can reduce electrode wear and suppress excessive electrolytic-erosion effectively.
机译:工具电极的磨损是影响放电加工(EDM)形状精度的关键因素。在钻盲孔的过程中,磨损不断减小工具电极的长度。结果,当腐蚀到一定深度时,孔的实际深度将大大减小。当加工复杂的三维微腔时,由工具电极磨损产生的问题变得更加复杂。与传统的EDM相比,在去离子水中执行放电可以减少工具电极的磨损。但是,此过程会导致过度的电解腐蚀和工件表面损坏,因为去离子水中始终存在少量导电性。在本手稿中,研究了一种减少电极磨损并抑制过度电解腐蚀的新方法。该方法将电导率比去离子水高得多的电解质用作加工液,而电沉积法则用于补偿加工过程中的工具电极磨损。此外,采用纳秒级电压脉冲和带有侧面绝缘的工具电极来抑制过度的电解腐蚀。实验结果表明,该新方法可以减少电极磨损,有效抑制过度的电解腐蚀。

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