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Hole quality and interelectrode gap dynamics during pulse current electrochemical deep hole drilling

机译:脉冲电流电化学深孔钻削过程中的孔质量和电极间间隙动力学

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摘要

This paper presents the experimental investigation of pulse-current shaped-tube electrochemical deep hole drilling (PC-STED) of nickel-based superalloy. Influence of five process variables (voltage, tool feed rate, pulse on-time, duty cycle, and bare tip length of tool) on the responses, namely, depth-averaged radial overcut (DAROC), mass metal removal rate (MRRg) and linear metal removal rate (MRRl) have been discussed. Mathematical models have been developed to express the effects of the process parameters on DAROC, MRRg and MRRl. The proposed model permits quantitative evaluation of the hole quality and process performance simultaneously. The results have been confirmed for the profile of the drilled hole and MRRl obtained experimentally. In all the experiments, through holes of 26 mm depth and diameters ranging from 2.205 mm to 3.279 mm were drilled. The results have been explained by the interelectrode gap dynamics prevailing during pulse electrochemical deep hole drilling. Optimum parameters determined from these experiments can be used to efficiently drill high-quality deep holes of high aspect ratio in nickel-based superalloys.
机译:本文介绍了镍基高温合金脉冲电流成形管电化学深孔钻探(PC-STED)的实验研究。五个过程变量(电压,工具进给速度,脉冲接通时间,占空比和工具的裸露尖端长度)对响应的影响,即深度平均径向过冲(DAROC),金属质量去除率(MRRg )和线性金属去除率(MRRl )。建立了数学模型来表达工艺参数对DAROC,MRRg 和MRR1 的影响。提出的模型允许同时评估孔质量和工艺性能。实验得到的钻孔轮廓和MRR1 的结果已得到证实。在所有实验中,钻了26毫米深度,直径为2.205毫米至3.279毫米的通孔。脉冲电化学深孔钻孔过程中普遍存在的极间间隙动力学解释了该结果。从这些实验确定的最佳参数可用于在镍基高温合金中高效钻出高深宽比的高质量深孔。

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    Department of Mechanical Engineering Indian Institute of Technology Kanpur 208 016 India;

    Department of Mechanical Engineering Indian Institute of Technology Kanpur 208 016 India;

    Department of Materials and Metallurgical Engineering Indian Institute of Technology Kanpur 208 016 India;

    Department of Mechanical Engineering Indian Institute of Technology Kanpur 208 016 India;

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