Abu Qudeiri Jaber E, Saleh Ahmad, Ziout Aiman, Mourad Abdel-Hamid I, Abidi Mustufa Haider, Elkaseer Ahmed
Mechanical Engineering Department, College of Engineering, United Arab Emirate University, Al Ain 15551, UAE.
Department of Mechanical Engineering, Zarqa University, Zarqa 13132, Jordan.
Materials (Basel). 2019 Mar 19;12(6):907. doi: 10.3390/ma12060907.
Electric discharge machining (EDM) is a material removal process that is especially useful for difficult-to-cut materials with complex shapes and is widely used in aerospace, automotive, surgical tools among other fields. EDM is one of the most efficient manufacturing processes and is used to achieve highly accurate production. It is a non-contact thermal energy process used to machine electrically conductive components irrespective of the material's mechanical properties. Studies related to the EDM have shown that the process performance can be considerably improved by properly selecting the process material and operating parameters. This paper reviews research studies on the application of EDM to different grades of stainless steel materials and describes experimental and theoretical studies of EDM that have attempted to improve the process performance, by considering material removal rate, surface quality and tool wear rate, amongst others. In addition, this paper examines evaluation models and techniques used to determine the EDM process conditions. This review also presents a discussion on developments in EDM and outlines the likely trend for future research.
电火花加工(EDM)是一种材料去除工艺,对于加工形状复杂且难以切削的材料尤为有用,广泛应用于航空航天、汽车、手术器械等领域。电火花加工是最高效的制造工艺之一,用于实现高精度生产。它是一种非接触式热能工艺,用于加工导电部件,而不考虑材料的机械性能。与电火花加工相关的研究表明,通过合理选择加工材料和操作参数,可显著提高加工工艺性能。本文综述了电火花加工在不同等级不锈钢材料应用方面的研究,并描述了电火花加工的实验和理论研究,这些研究试图通过考虑材料去除率、表面质量和工具磨损率等因素来提高加工工艺性能。此外,本文还研究了用于确定电火花加工工艺条件的评估模型和技术。本综述还讨论了电火花加工的发展情况,并概述了未来研究可能的趋势。