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Optimization of parameters for diameter accuracy in wire electric discharge grinding for micro machining of tungsten rods

机译:钨杆微型加工线电放电磨削参数的优化

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In this study the process of Wire Electric Discharge Grinding was carried out with a precise, flexible and corrosion resistant submerged rotary spindle which was designed, fabricated and installed in a five axis CNC Wire Electric Discharge Machining in order to produce free form surfaces on micro rods. The tungsten was taken as a work material since it is hard to machine through conventional process. Based on the literature survey the following four factors such as the spindle speed, pulse off time, peak current and wire speed are considered for obtaining high diametrical accuracy. By Taguchi parametric design the array was designed and experimental trials were taken by machining an ?2.0mm tungsten (W) pin to ?0.40mm under various set of parameter combinations. The S/N ratio analysis was carried out to find the optimum machining parameters and significant parameters affecting the diametrical accuracy. The analysis of variance was used to analytically verify the significant parameters. Finally it is concluded experimentally and statically that the significant parameters affecting the diameter accuracy are spindle speed and pulse off time.
机译:在这项研究中,线放电研磨过程采用精确,柔性且耐腐蚀的浸没式旋转主轴进行,设计,制造和安装在五轴CNC线放电加工中,以便在微杆上生产自由形状表面。钨作为工作材料,因为它通过常规方法难以机器。基于文献调查,以下四个因素如主轴速度,脉冲关闭时间,峰值电流和线速被认为是为了获得高直径精度。通过Taguchi参数化设计,设计了阵列,通过在各种参数组合下加工α2.0mm钨(W)销至0.40mm来进行实验试验。进行S / N比分析以找到最佳加工参数和影响直径精度的重要参数。方差分析用于分析验证大致参数。最后,实验和静态地结束,影响直径精度的重要参数是主轴速度和脉冲关闭时间。

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