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Effects of electrode materials on performance measures of electrical discharge micro-machining

机译:电极材料对电放电微加工性能测量的影响

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摘要

The main objective of this study is to investigate the effects of various electrode materials and their influences on electrical discharge micro-machining performance attributes. The performance attributes are determined in terms of tool wear rate (TWR), material removal rate (MRR), taper angle, overcut, and surface roughness by drilling micro-holes on SS 316L material. It is noticed that, for high discharge energy the MRR, TWR, taper angle, and overcut are more and also when the thermal conductivity, boiling point, and melting point of the electrode material are high, the TWR is low. The surface finish is good at low discharge energy and low spindle speed. If the tool electrode is rotating at minimum speed during machining, a centrifugal effect is created on the dielectric so that debris at the inter-electrode gap is evacuated efficiently. If the tool is stationary, then the machining conditions are unstable due to improper flushing of debris.
机译:本研究的主要目的是研究各种电极材料的影响及其对电放电微加工性能属性的影响。 通过在SS 316L材料上钻微孔来根据工具磨损率(TWR),材料去除速率(MRR),锥角,过度和表面粗糙度来确定性能属性。 注意到,对于高放电能量,MRR,TWR,逐渐角和过剖案越来越多,并且当电极材料的导热性,沸点和熔点高时,TWR是低的。 表面光洁度在低放电能量和低主轴速度下良好。 如果工具电极在加工过程中以最小速度旋转,则在电介质上产生离心效果,从而有效地抽空电极间隙处的碎片。 如果工具是静止的,则由于碎屑的不当冲洗,加工条件是不稳定的。

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