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首页> 外文期刊>Journal of micro and nano manufacturing >A Computational Model to Study Film Formation and Debris Flushing Phenomena in Spray-Electric Discharge Machining
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A Computational Model to Study Film Formation and Debris Flushing Phenomena in Spray-Electric Discharge Machining

机译:研究喷雾电火花加工中膜形成和碎屑冲洗现象的计算模型

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摘要

A computational model to investigate the flushing of electric discharge machining (EDM) debris from the interelectrode gap during the spray-EDM process is developed. Spray-EDM differs from conventional EDM in that an atomized dielectric spray is used to generate a thin film that penetrates the interelectrode gap. The debris flushing in spray-EDM is investigated by developing models for three processes, viz., dielectric spray formation, film formation, and debris flushing. The range of spray system parameters including gas pressure and impingement angle that ensure formation of dielectric film on the surface is identified followed by the determination of dielectric film thickness and velocity. The debris flushing in conventional EDM with stationary dielectric and spray-EDM processes is then compared. It is observed that the dielectric film thickness and velocity play a significant role in removing the debris particles from the machining region. The model is used to determine the spray conditions that result in enhanced debris flushing with spray-EDM.
机译:建立了计算模型,以研究在喷涂-EDM过程中电极间间隙冲洗放电加工(EDM)碎屑的过程。 Spray-EDM与常规EDM的不同之处在于,使用雾化的电介质喷雾来产生穿透电极间间隙的薄膜。通过开发三种工艺的模型,即电介质喷雾形成,成膜和碎片冲洗,研究了喷雾EDM中的碎片冲洗。确定喷雾系统参数的范围,包括确保表面上形成电介质膜的气压和撞击角度,然后确定电介质膜的厚度和速度。然后比较了传统EDM中具有固定介电层和喷涂EDM工艺的碎屑冲洗情况。观察到介电膜的厚度和速度在从加工区域去除碎屑颗粒方面起着重要作用。该模型用于确定喷雾条件,该条件可增强用喷雾EDM冲洗碎屑的能力。

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