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Electric discharge machining of Al-SiC metal matrix composites using rotary tube electrode

机译:旋转管电极对Al-SiC金属基复合材料进行放电加工

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摘要

The machining characteristics of SiC/6025 Al composite using rotary electro-discharge machining (EDM) with a tube electrode were investigated in this study. Brass was used as the electrode material to EDM SiC/6025 Al composites. Three observed values: material removal rate (MRR), electrode wear rate (EWR) and surface roughness (SR) are adopted to evaluate the machinability. Peak current, polarity, volume fraction of SiC reinforced particles, pulse duration, hole diameter of the tube electrode, and speed of electrode rotation were used as the input variables to assess the machinability. Peak currents of EDM drilling were confirmed to have positive effects on the MRR, EWR and SR. The MRR, EWR and SR were more with positive polarity of the electrode than at negative. Increase in volume percentage of SiC resulted in decrease in MRR and increase in EWR. The pulse duration had an inverse effect with MRR, EWR and SR. The decrease in the hole diameter and increase in speed of the rotating tube electrode resulted in increase in MRR and decrease in EWR and SR. In comparison, the electrode hole diameter and rotational speed have major effect on MRR, EWR and SR. The optimum machining parameter for maximum MRR, minimum EWR and better surface roughness were found out using genetic algorithm.
机译:研究了带管电极的旋转放电加工(EDM)对SiC / 6025 Al复合材料的加工特性。黄铜用作EDM SiC / 6025 Al复合材料的电极材料。采用三个观察值:材料去除率(MRR),电极磨损率(EWR)和表面粗糙度(SR)来评估可加工性。使用峰值电流,极性,SiC增强颗粒的体积分数,脉冲持续时间,管电极的孔径和电极旋转速度作为输入变量来评估可加工性。确认EDM钻孔的峰值电流对MRR,EWR和SR具有积极影响。电极的正极性的MRR,EWR和SR大于负极性。 SiC体积百分比的增加导致MRR降低和EWR升高。脉冲持续时间对MRR,EWR和SR具有相反的影响。孔径的减小和旋转管电极速度的提高导致MRR的增加以及EWR和SR的降低。相比之下,电极孔的直径和转速对MRR,EWR和SR有主要影响。利用遗传算法找出了最佳的加工参数,以获得最大的MRR,最小的EWR和更好的表面粗糙度。

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