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Surface and sub surface evaluation in coated-wire electrical discharge machining (WEDM) of INCONEL® alloy 718

机译:INCONEL®合金718的包覆丝放电加工(WEDM)中的表面和亚表面评估

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摘要

Wire Electncal Discharge Machining (WEDM) is one of the most versatile and useflil technological processes for cuttmg complex shapes made of conductive matenals such as those typical of aerospace applications. With the aim to optimize process parameters, this paper studies the surface and subsurface modifications of INCONEL® alloy 718 (UNS N077 18) machined by WEDM using a Zinc coated brass wire. Machining was perfomwd under roughing and finishing conditions by setting different values of discharge energy and wire feed rate. Surface roughness of the cut surfaces was measured as well as the micro-hardness profile on polished sections. WED-machined surfaces and their cross sections were also observed by Scannmg Electron Microscope (SEM) and analyzed by Energy Dispersive X-ray Spectroscopy (EDS) to evaluate possible vanations of the surface chemical composition. In this investigation, results are discussed as a ifinction of the feed rate and of the smgle pulse discharge energy, which is determined by duration, peak current and discharge voltage of the discharge pulse. The research demonstrates that the required surface roughness can be achieved by properly settmg the feed rate and the smgle pulse discharge energy on the WEDM machme. Expenmental results also show that under the re-melted layer thickness no significant white layer formation or thermal modification occur, indicatmg that the chosen set of operatmg parameters minimizes secondary and unwanted chemical reactions
机译:电线放电加工(WEDM)是最通用,最实用的技术工艺之一,用于切割由导电材料(例如航空航天应用中的典型材料)制成的复杂形状。为了优化工艺参数,本文研究了WEDM使用镀锌黄铜丝对INCONEL®合金718(UNS N077 18)进行表面和亚表面改性。通过设置不同的放电能量和送丝速度值,在粗加工和精加工条件下进行加工。测量切割表面的表面粗糙度以及抛光部分的显微硬度。 WED加工的表面及其横截面也通过扫描电子显微镜(SEM)进行了观察,并通过能量色散X射线光谱(EDS)进行了分析,以评估表面化学成分的可能变化。在这项研究中,将讨论结果作为进给速率和脉冲脉冲放电能量的函数,该能量由持续时间,峰值电流和放电脉冲的放电电压确定。研究表明,通过适当设定电火花线切割机的进给速度和脉冲脉冲放电能量,可以达到所需的表面粗糙度。实验结果还表明,在重新熔化的层厚度下,没有明显的白层形成或热变质发生,表明所选的操作参数集可最大程度地减少次要和不希望的化学反应

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