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Impact of the Deionized Water on Making High Aspect Ratio Holes in the Inconel 718 Alloy with the Use of Electrical Discharge Drilling

机译:去离子水对使用放电钻孔的Inconel 718合金中高纵横比孔的影响

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摘要

Nickel-based superalloys are being increasingly applied to manufacture components in the aviation industry. The materials are classified as difficult-to-machine using conventional methods. Nowadays, manufacturing techniques are needed to drill high aspect ratio holes of above 20:1 (depth-to-diameter ratio) in these materials. One of the most effective methods of making high-aspect-ratio holes is electrical discharge drilling (EDD). While drilling high aspect ratio holes, a crucial issue is the flushing of the gap area and the evacuation of the erosion products. The use of deionized water as the dielectric fluid in the EDD offers a considerable potential. This paper includes an analysis of the influence of the machining parameters (pulse time, current amplitude and discharge voltage) on the process performance (drilling speed, linear tool wear, taper angle, hole’s aspect ratio, side gap thickness), during the EDD with the use of deionized water in the Inconel 718 alloy. The obtained through holes were subjected to the extended analysis. The impact of the initial working fluid temperature and pressure on the conditions of the flow through the electrode channel was also subjected to the analysis. The deionized water properties were changed by applying an initial temperature. Based on the results of an analysis of the previous research, the EDD of the through holes was performed for a pre-set initial temperature (~313.15 °K) and initial pressure of the working fluid (8 MPa) and selected process parameters. An analysis of the results indicates increasing of hole’s aspect ratio by about 15% (above 30), decreasing the side gap thickness by about 40% and enhanced surface integrity.
机译:镍基超级合金正越来越多地应用于航空业的零部件制造中。使用常规方法将材料分类为难以加工。如今,需要在这些材料中钻出大于20:1(深径比)的高长宽比的孔的制造技术。制作高长径比孔的最有效方法之一是放电钻孔(EDD)。在钻出高深宽比的孔时,关键问题是间隙区域的冲洗和腐蚀产物的排出。在EDD中使用去离子水作为介电液具有巨大的潜力。本文分析了在EDD加工过程中,加工参数(脉冲时间,电流幅度和放电电压)对加工性能(钻孔速度,线性刀具磨损,锥角,孔的长宽比,侧面间隙厚度)的影响。在Inconel 718合金中使用去离子水。对获得的通孔进行扩展分析。还对初始工作流体温度和压力对通过电极通道的流动条件的影响进行了分析。通过施加初始温度来改变去离子水的性质。根据先前研究的分析结果,对预设的初始温度(〜313.15°K)和工作流体的初始压力(8 MPa)以及选定的工艺参数进行通孔的EDD。对结果的分析表明,孔的长宽比增加了约15%(高于30),侧面间隙厚度减少了约40%,并增强了表面完整性。

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