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Performance Assessment and Mathematical Modeling of Process Parameters in Electrical Discharge Machining of EN-31 Tool Steel Material Using Taguchi DOE

机译:使用田口DOE对EN-31工具钢材料进行放电加工的性能评估和工艺参数数学建模

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In non-traditional machining, electrical discharge machining (EDM) has tremendous potential on account of versatility of its applications and is successfully, commercially used in modern industries. EDM process is capable to machine geometrically complex, hard material components, tool steels, composites, super alloys, ceramics and carbides. In EDM, Material Removal Rate (MRR) and Tool wear rate (TWR) are generally analyzed to assess its performance. For this, a perfect combination of input variables is required. In the present study, machining is done on Tool steel workpiece material using a pure copper electrode. The input parameters like Pulse-ON time, Pulse- OFF time, Current and Gap voltage are selected for experimentation and Taguchi method is employed for the DOE by considering 4 factors and 3 levels. A total of 27 experiments (L27 orthogonal array) have been designed with a possible combination of selected input parameters. The present work mainly focuses on development of an extensive mathematical model for correlating the input and output variables using a conventional regression analysis. The adequacy of proposed model was tested with the help of some collected data through experimentation using taguchi optimized DOE. The proposed linear multi-variable regression equation was found to be a best fitted model with 98% confidence levels.
机译:在非传统加工中,放电加工(EDM)由于其用途广泛而具有巨大潜力,并已成功地在现代工业中商业使用。 EDM工艺能够加工几何形状复杂的硬质材料组件,工具钢,复合材料,超级合金,陶瓷和碳化物。在EDM中,通常会分析材料去除率(MRR)和工具磨损率(TWR)以评估其性能。为此,需要输入变量的完美组合。在本研究中,使用纯铜电极在工具钢工件材料上进行机加工。通过选择4个因素和3个等级,选择了输入参数(如Pulse-ON时间,Pulse-OFF时间,电流和间隙电压)进行实验,并将Taguchi方法用于DOE。利用所选输入参数的可能组合,总共设计了27个实验(L27正交阵列)。目前的工作主要集中在开发广泛的数学模型,以使用常规回归分析将输入和输出变量相关联。通过使用taguchi优化DOE进行的实验,借助一些收集的数据对所提出模型的适当性进行了测试。发现所提出的线性多变量回归方程是具有98%置信水平的最佳拟合模型。

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