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Modelling the WEDM Process Parameters for Cryogenic Treated D-2 Tool Steel by integrated RSM and GA

机译:通过集成的RSM和GA模拟低温处理D-2工具钢的WEDM工艺参数

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Wire electric discharge machine (WEDM) is a thermo-electric spark erosion machining process to cut very hard conductive material with the help of a wire electrode. Cryogenic treated high carbon high chromium tool steel (D-2 tool steel) is used for the current investigation. Cryogenic treatment is a surface process in which the material is placed in nitrogen environment (below-190 C) to remove stress and enhance wear resistance. The purpose of this study is to investigate the effect of parameters on surface roughness for WEDM. D-2 tool steel is used in die and punch industries, where wear takes place due to frequent operation of die-punch. To increase the wear resistance the cryogenic treated work-piece is used for the research. The Mathematical modelling of the process is carried with the help of Response surface methodology (RSM). The central composite rotatable design (CCRD) has been used to planning the experiments. The input process parameters are pulse on time, pulse off time, servo voltage and peak current. Out of which Pulse on-time has maximum effect on surface roughness as compared to other process parameters. Genetic algorithm is used to predict the best individual parameters along with the predicted fitness values.
机译:电线放电机(WEDM)是一种热电火花腐蚀加工过程,可根据线电极切割非常硬的导电材料。低温处理的高碳高铬工具钢(D-2工具钢)用于电流调查。低温处理是一种表面过程,其中材料置于氮环境(低于190℃)中以除去应力并增强耐磨性。本研究的目的是研究参数对WEDM表面粗糙度的影响。 D-2工具钢用于模具和打孔行业,由于模切打孔频繁运行,磨损发生。为了增加耐磨性,低温处理的工件用于研究。该过程的数学建模是在响应表面方法(RSM)的帮助下携带。中央复合可旋转设计(CCRD)已被用于规划实验。输入处理参数是脉冲接通时间,脉冲关闭时间,伺服电压和峰值电流。与其他工艺参数相比,在其中脉冲随时对表面粗糙度具有最大影响。遗传算法用于预测最佳的单独参数以及预测的适应值。

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