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Influence of Nanoparticles-Suspended Electrolyte on Machinability of Stainless Steel 430 Using Electrochemical Micro-machining Process

机译:纳米颗粒悬浮电解质对使用电化学微加工过程不锈钢430加工性的影响

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In this present work, the experimental studies have been carried out on the electrochemical micro-machining (ECMM) process of stainless steel 430 by varying the process parameters such as electrolyte concentration, applied voltage, micro-tool feed rate and duty cycle. Microscopic image and SEM analysis have been characterised in the ECMM process. Therefore, the micro-level hole has been produced in the stainless steel 430 for the applications of fuel injectors and medical equipments. The detailed study on the influence of nanoparticles-suspended electrolyte analyses the response measurements such as material removal rate, overcut, circularity and cylindricity. Of the two machining conditions, the copper nanoparticles-suspended electrolyte enhances the performance measures of the machining surface, increases localisation region and reduces the stray current effect, while obtaining a uniform circularity profile, higher material removal rate and lesser overcut due to its high electrical and thermal conductivity compared to the without nanoparticles suspended in the electrolyte. The experimental results indicate the influence of variations in the electrolyte concentration, and the duty cycle has been most significant parameters in the cutting condition for copper nanoparticlessuspended electrolyte by ECMM process.
机译:在本工作中,通过改变电解质浓度,施加的电压,微型工具进料速率和占空比,在不锈钢430的电化学微加工(ECMM)过程上进行了实验研究。显微图像和SEM分析已经在ECMM过程中表征。因此,微级孔已经在不锈钢430中生产用于燃料喷射器和医疗设备的应用。关于纳米颗粒悬浮电解质的影响的详细研究分析了材料去除速率,过度,圆形度和圆柱等响应测量。在两个加工条件下,铜纳米颗粒悬浮电解质增强了加工表面的性能测量,增加了定位区域并降低了杂散电流效果,同时获得均匀的圆形曲线,较高的材料去除率和由于其高电平而较小的过度与悬浮在电解质中的没有纳米颗粒相比,导热率。实验结果表明电解质浓度变化的影响,并且占空比通过ECMM工艺对铜纳米粒子型电解质的切割条件中的最重要参数。

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