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Applicability of Diatomite Powder-Mixed Dielectric Fluid in Electrical Discharge Machining Processes

机译:硅藻土粉末混合介电液在放电加工过程中的适用性

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Electrical Discharge Machining (EDM) is a well-established non-contact machining technique for manufacturing geometrically complex shapes on hard but electrically conductive materials that are extremely difficult-to-cut by conventional processes. EDM has low material removal rate and Powder-Mixed Electrical Discharge Machining (PMEDM) is one of the latest techniques that has emerged to improve material removal rate and electrode wear ratio among other performance characteristics. However, its utilization in the manufacturing industry is very low because many fundamental issues of this new development are not well understood. In this study, the performance of the PMEDM process was evaluated in terms of Material Removal Rate (MRR) and Electrode Wear Ratio (EWR) with respect to peak current and pulse-on time. Experiments were carried out at a duty cycle of 0.5, peak current of 21A and pulse frequency of 10 KHz. Peak current and pulse-on time were varied from 3-21A and 45 ¨C 135|ìs, respectively for pure (distilled water) and distilled water suspended with diatomite (powder-mixed dielectric fluid) at a concentration of 2 g/l. Graphite tool electrode was used to machine mild steel workpiece submerged in dielectric fluid. Each of the experimental set was conducted for 10 minutes and analysis of variances on MRR and EWR were performed using Statistical Analysis of System (SAS) software at 5% level of significance. Completely randomized design was used to plan and analyze the experiments which were performed on Toolcraft A25 sinker electrical discharge machine with retrofitted dielectric fluid circulation system. This study has found that variations of peak current and pulse-on time in diatomite powder-mixed dielectric fluid have significant influence on.
机译:放电加工(EDM)是一种行之有效的非接触式加工技术,用于在坚硬但导电的材料上制造几何形状复杂的形状,而这些材料很难用常规方法切割。 EDM具有较低的材料去除率,而粉末混合放电加工(PMEDM)是为提高材料去除率和电极磨损率以及其他性能特征而出现的最新技术之一。但是,由于尚未充分理解这种新发展的许多基本问题,因此其在制造业中的利用率非常低。在这项研究中,根据相对于峰值电流和脉冲接通时间的材料去除率(MRR)和电极磨损率(EWR)评估了PMEDM工艺的性能。实验以0.5的占空比,21A的峰值电流和10 KHz的脉冲频率进行。对于纯净水(蒸馏水)和悬浮于硅藻土(粉末混合介电液)的蒸馏水(浓度为2 g / l),峰值电流和脉冲接通时间分别在3-21A和45℃135s之间变化。石墨工具电极用于加工浸入介电液中的低碳钢工件。每个实验集进行10分钟,并使用显着性为5%的系统统计分析(SAS)软件对MRR和EWR的方差进行分析。使用完全随机的设计来计划和分析在配备了介电流体循环系统的Toolcraft A25沉降片放电机上进行的实验。这项研究发现,硅藻土粉末混合介电流体中的峰值电流和脉冲接通时间的变化具有显着影响。

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