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Study of Dry EDM with Oxygen-Mixed and Cryogenic Cooling Approaches

机译:氧混合低温冷却干式电火花加工的研究

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摘要

Dry electrical discharge machining (EDM) is a technology that has the potential to replace conventional liquid based EDM, owing to its low tool electrode wear, thin recast layer, and environmental friendliness. However, at present major challenges of dry EDM are found in its material removal rate (MRR) and an unsatisfactory surface quality that results from debris reattachment on the EDMed surface. To improve the MRR in dry EDM, two methods are proposed in this work. First, based on an analysis of the oxygen EDM mechanism, a dry EDM approach with an oxygen gas mixture is proposed, and we perform experiments to validate the analysis. Second, dry EDM on cryogenically cooled workpieces is considered, and we describe the accompanying experiments. The experimental results show an increase in the MRR for both the oxygen-mixed EDM and the cryogenically cooled workpiece technique, along with a decrease in the surface roughness value (Ra) for the latter. These results verify the feasibility of the proposed methods in improving dry EDM performance.
机译:干式放电加工(EDM)技术具有较低的工具电极磨损,较薄的重铸层和环境友好性,因此有可能取代传统的基于液体的EDM。然而,目前发现干式电火花加工的主要挑战在于其材料去除率(MRR)和由于电火花加工表面上的碎屑重新附着而导致的表面质量不令人满意。为了提高干式电火花加工的MRR,本文提出了两种方法。首先,基于对氧气EDM机理的分析,提出了一种使用氧气混合物的干式EDM方法,并进行了实验以验证分析结果。其次,考虑在低温冷却的工件上进行干式电火花加工,并描述了随附的实验。实验结果表明,氧气混合的EDM和低温冷却的工件技术的MRR都增加了,而后者的表面粗糙度值(Ra)却降低了。这些结果证明了所提出的方法在改善干式EDM性能方面的可行性。

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