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Comparison of drilling of Inconel 625 by AWJM and WEDM

材料科学 可加工性 电火花加工 因科镍合金625 因科镍合金 机械加工 高温合金 表面粗糙度 合金 冶金 表面光洁度 拉削 黄铜 机械工程 复合材料 工程类
作者
Ferhat Cerıtbınmez,Ali Günen
出处
期刊:Aircraft Engineering and Aerospace Technology [Emerald (MCB UP)]
卷期号:96 (2): 329-336 被引量:3
标识
DOI:10.1108/aeat-03-2023-0068
摘要

Purpose This study aims to comparatively analyze the cut parts obtained as a result of cutting the Ni-based Inconel 625 alloy, which is widely used in the aerospace industry, with the wire electro-discharge machining (WEDM) and abrasive water jet machining (AWJM) methods in terms of macro- and microanalyses. Design/methodology/approach In this study, calipers, Mitutoyo SJ-210, Nikon SMZ 745 T, scanning electron microscope and energy dispersive X-ray were used to determine kerf, surface roughness and macro- and microanalyses. Findings Considering the applications in the turbine industry, it has been determined that the WEDM method is suitable to meet the standards for the machinability of Inconel 625 alloy. In contrast, the AWJM method does not meet the standards. Namely, while the kerf angle was formed because the hole entrance diameters of the holes obtained with AWJM were larger than the hole exit diameters, the equalization of the hole entry and exit dimensions, thanks to the perpendicularity and tension sensitivity of the wire electrode used in the holes drilled with WEDM ensured that the kerf angle was not formed. Originality/value It is known that the surface roughness of the parts used in the turbine industry is accepted at Ra = 0.8 µm. In this study, the average roughness value obtained from the successful drilling of Inconel 625 alloy with the WEDM method was 0.799 µm, and the kerf angle was obtained as zero. In the cuts made with the AWJM method, thermal effects such as debris, microcracks and melted materials were not observed; an average surface roughness of 2.293 µm and a kerf of 0.976° were obtained.

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