首页> 外文会议>International Conference on Advances in Materials and Processing Technologies >A STUDY OF MACHINING PARAMETERS DURING ELECTRICAL DISCHARGE MACHINING OF STEEL BY A ROTARY COPPER ELECTRODE
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A STUDY OF MACHINING PARAMETERS DURING ELECTRICAL DISCHARGE MACHINING OF STEEL BY A ROTARY COPPER ELECTRODE

机译:旋转铜电极电气放电加工过程的加工参数研究

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The use of thermo-electric source of energy, as in electrical discharge machining (EDM), has greatly helped in machining all types of electrically conductive materials being used in different industrial applications. The present work investigates the different machining characteristics during electrical discharge machining on EN-8 steel with a rotary copper electrode. The effects of three independent machining parameters viz. peak current, pulse on time and rotational speed of tool electrode are chosen as variables for evaluating the output parameters such as metal removal rate, surface finish of work piece. The research focuses on developing empirical models for prediction of metal removal rate and surface finish during rotary electrical discharge machining process with the help of input parameters. The models are developed using linear regression analysis by applying logarithmic data transformation of non-linear equation. Analysis of results using partial and multiple correlation analysis reveals that electrical parameters have more significant effect than the non-electrical parameters on the machining characteristics during electrical discharge machining by a rotary electrode. Furthermore, when high MRR is criterion, high peak current and low RPM with low pulse duration produces better output; whereas, and when smooth surface finish is criterion, low peak current and low RPM with high pulse duration produces better output. In addition, the predictions based on the above developed models are verified with extra experiments and are found to be in good agreement with the experimental verifications.
机译:使用热电源的能量,如在电放电加工(EDM)中,大大帮助加工各种类型的导电材料,用于不同的工业应用。本工作研究了旋转铜电极上的EN-8钢的电气放电过程中的不同加工特性。三个独立加工参数求用的影响。选择峰值电流,脉冲接通刀具电极的时间和转速作为评估输出参数,如金属去除率,工作片表面光洁度。该研究侧重于在输入参数的帮助下,在旋转电气放电加工过程中提出预测金属去除率和表面光洁度的实证模型。通过应用非线性方程的对数数据变换,使用线性回归分析开发了模型。使用部分和多个相关分析的结果分析显示,电参数比旋光电极的电放电加工过程中的加工特性上的非电参数具有更大的效果。此外,当高MRR是标准时,具有低脉冲持续时间的高峰电流和低RPM产生更好的输出;然而,并且当光滑的表面光洁度是标准时,具有高脉冲持续时间的低峰值电流和低RPM产生更好的输出。此外,基于上述开发模型的预测通过额外的实验来验证,并且发现与实验验证有关。

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