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Material removal rate and electrode wear ratio study on the powder mixed electrical discharge machining of cobalt-bonded tungsten carbide

机译:钴结合碳化钨粉末混合放电加工的材料去除率和电极磨损比研究

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摘要

In this article, a material removal rate (MRR) and electrode wear ratio (EWR) study on the powder mixed electrical discharge machining (PMEDM) of cobalt-bonded tungsten carbide (WC-Co) has been carried out. This type of cemented tungsten carbide was widely used as moulding material of metal forming, forging, squeeze casting, and high pressure die casting. In the PMEDM process, the aluminum powder particle suspended in the dielectric fluid disperses and makes the discharging energy dispersion uniform; it displays multiple discharging effects within a single input pulse. This study was made only for the finishing stages and has been carried out taking into account the four processing parameters: discharge current, pulse on time, grain size, and concentration of aluminum powder particle for the machinability evaluation of MRR and EWR. The response surface methodology (RSM) has been used to plan and analyze the experiments. The experimental plan adopts the face-centered central composite design (CCD). This study highlights the development of mathematical models for investigating the influence of processing parameters on performance characteristics.
机译:本文对钴结合碳化钨(WC-Co)的粉末混合放电加工(PMEDM)进行了材料去除率(MRR)和电极磨损率(EWR)的研究。这种硬质合金碳化钨被广泛用作金属成型,锻造,挤压铸造和高压压铸的成型材料。在PMEDM工艺中,悬浮在介电液中的铝粉会分散并使放电能量分散均匀。它在单个输入脉冲内显示多种放电效果。这项研究仅针对精加工阶段,并考虑了四个加工参数:放电电流,脉冲时间,晶粒度和铝粉颗粒的浓度,以评估MRR和EWR的可加工性。响应面方法(RSM)已用于计划和分析实验。实验计划采用以面部为中心的中央复合设计(CCD)。这项研究强调了用于研究加工参数对性能特征影响的数学模型的发展。

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