首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture >Study on single-discharge machining characteristics of non-conductive engineering ceramics in emulsion with high open voltage and large capacitor
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Study on single-discharge machining characteristics of non-conductive engineering ceramics in emulsion with high open voltage and large capacitor

机译:高开电压大电容乳液中非导电工程陶瓷的单放电加工特性研究

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摘要

This paper presents a new process for the machining of non-conductive engineering ceramics that is based on electrical discharge machining. It uses a thin copper sheet as an assisting electrode and a high capacitance value capacitor that is directly discharged into the machining process i.e. there are no current-limiting resistors in the discharge circuit. This configuration creates a high discharge energy and discharge force which enables electronically insulating engineering ceramics to be effectively machined. Single-discharge experiments were performed using an emulsion as the dielectric machining fluid. The effects of the dielectric fluid, polarity, open voltage, capacitance, and current-limiting resistance on the process performance in terms of the volume and depth of the crater created in the surface of the workpiece, tool wear, and assisting electrode wear were investigated. In addition, the microstructure of the crater was examined using a scanning electron microscope. The results show that the crater is the result of a spalling process on the surface of the non-conducting ceramic workpiece. However, at the centre region of the crater some material is removed by melting and vaporization, and this type of material removal is enhanced by an increase in the open voltage.
机译:本文介绍了一种基于放电加工的非导电工程陶瓷加工新工艺。它使用薄的铜片作为辅助电极,并使用高电容值的电容器直接放电到加工过程中,即放电电路中没有限流电阻。这种构造产生了高的放电能量和放电力,这使得能够有效地机械加工电子绝缘的工程陶瓷。使用乳液作为介电加工液进行单次放电实验。研究了介电液,极性,开路电压,电容和限流电阻对工艺性能的影响,包括工件表面产生的弹坑的体积和深度,工具磨损以及辅助电极的磨损。另外,使用扫描电子显微镜检查了火山口的微观结构。结果表明,火山口是不导电陶瓷工件表面剥落过程的结果。然而,在弹坑的中心区域,一些材料通过熔化和汽化被去除,并且这种类型的材料去除通过增加开路电压而得以增强。

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