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Optimization of material removal rate in wire electric discharge grinding for micro machining of tungsten electrodes

机译:钨电极微细加工的电火花线切割研磨中材料去除率的优化

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Manufacture of micro cylindrical electrodes has been proposed using the CNC wire electric discharge machine by attaching a rotary spindle. The work material tungsten is chosen due to its wide spread uses in aerospace, electronics and health care areas. In this work, tungsten work-piece of ?2.0 mm is machined to ?0.4 mm by WEDG by considering the factors such as spindle speed, peak current, pulse off time and wire speed. The full factorial experimental design has been used to find out the effect of process parameters. The results are further analyzed through analysis of variance (ANOVA) and surface plots for confirmation. It was found that spindle speed, pulse off time and wire speed has higher influence on material removal rate from this study. At low pulse off time and low wire speed more thermal energy is transferred to the work-piece which results in higher material removal of the material. The optimal process parameters for higher MRR are peak current of 5 A, pulse off time 1 μs, wire speed of 5 m/min and spindle speed of 700 rpm. The SEM images of machined work-pieces confirm the results obtained. The confirmation tests have been done and found that the variation is within 1.5%. From the study electrodes of ?400 μm has been machined to a length of 10 mm (aspect ratio eml/em/emd/em of 25) which is otherwise a challenge by the conventional machining processes.
机译:已经提出了使用CNC线放电加工机通过安装旋转主轴来制造微圆柱电极的方法。选择钨材料是因为它在航空航天,电子和医疗保健领域的广泛应用。在这项工作中,考虑到诸如主轴转速,峰值电流,脉冲断开时间和线速度之类的因素,WEDG将φ2.0mm的钨工件加工成φ0.4mm。完整的阶乘实验设计已用于找出过程参数的影响。通过方差分析(ANOVA)和表面图进一步分析结果以进行确认。从这项研究中发现,主轴速度,脉冲断开时间和线速度对材料去除率的影响更大。在较短的脉冲关闭时间和较低的线速度下,更多的热能被传递到工件,这导致材料的材料去除率更高。较高的MRR的最佳工艺参数是5 A的峰值电流,1μs的脉冲关断时间,5 m / min的线速度和700 rpm的主轴速度。加工过的工件的SEM图像证实了所获得的结果。确认测试已经完成,发现偏差在1.5%以内。从研究中,已将400μm的电极加工成10毫米长(纵横比 l / d 为25),这是传统加工工艺所面临的挑战。

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