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Optimization of process parameters in CNC milling of P20 steel by cryo-treated tungsten carbide tools using NSGA-II

机译:使用NSGA-II通过Cryo-Cored碳化钨工具CNC铣削过程参数的优化

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This article proposes an extensive experimental and microstructural analysis to study the consequences of deep cryogenic treatment (DCT) soaking duration on tungsten carbide end mill cutter on the machinability of P20 mold steel. A Box-Behnken design of response surface methodology (RSM) is utilized to collect data for the study. Cutting speed, feed rate, depth of cut and milling cutters subjected to various soaking durations are taken as important process variables which are a function of performance measures viz. tool wear rate (TWR), material removal rate (MRR) and surface roughness (R _(a)). It is observed that cutting speed, feed, depth of cut and cryogenic treatment exhibit a considerable effect on performance measures. In the present study, NSGA-II multi-objective optimization technique is used to obtain the optimal process parameters of end milling process to enhance the productivity of the process. For this purpose, the developed RSM model is coupled with NSGA-II in MATLAB.
机译:本文提出了广泛的实验性和微观结构分析,研究了对碳化钨端铣刀在P20模钢的可加工性上的深层低温处理(DCT)浸泡持续时间的后果。使用响应表面方法(RSM)的Box-Behnken设计来收集研究数据。将经过各种浸泡持续时间的切割速度,进料速率,切割和铣刀的深度被视为重要的过程变量,这是性能测量viz的函数。工具磨损率(TWR),材料去除率(MRR)和表面粗糙度( r _(a))。观察到,切割速度,饲料,深度和低温治疗表现出对性能措施的相当大的影响。在本研究中,NSGA-II多目标优化技术用于获得最终铣削过程的最佳过程参数,以提高该过程的生产率。为此,开发的RSM模型与Matlab中的NSGA-II耦合。

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