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Surface Roughness and Surface Topography of Inconel 718 in Powder Mixed Dielectric Electrical Discharge Machining (PMEDM)

机译:粉末混合介电放电加工(PMEDM)中Inconel 718的表面粗糙度和表面形貌

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In high speed EDM, maximum material removal rate (MRR) is a desirable to increase productivity rate and reducing production cost to the need of industry. However, the surface finish of the machined surface also cannot be neglected since it related to product quality and safety factor especially when to cut difficult to machine material such Inconel 718, which is widely used in aerospace industry. Surface roughness as one of the surface integrity criteria was choose as a response in this research. High discharge current from 20A to 40A, longer pulse on-time (pulse duration) from 200μs to 400μs and the different concentration of the nano Alumina powder were selected as the main parameters, respectively. The effect of powder mixed dielectric in EDM performance in terms of surface roughness was evaluated. The dielectric circulating system known as High Performance Electrical Discharge Machine (HPEDM) was attached to the conventional EDM machine to run the experiments involving powder mixed dielectric. The experiment results shows that, the highest peak current deteriorated the surface roughness. The surface roughness, R a was increased with the increasing of the peak current. The result also shows that an increasing of the pulse duration the surface roughness was slightly improved. It is observed that, the value of R a was closely related to the surface topography characteristic of the machined surfaces and directly depends on the applied discharge energy. There is no improvement in surface roughness when powder additive was mixed in a dielectric fluid.
机译:在高速电火花加工中,需要最大的材料去除率(MRR)以提高生产率并降低生产成本以满足工业需求。但是,机加工表面的表面光洁度也不能忽略,因为它与产品质量和安全系数有关,尤其是在难于加工的材料如Inconel 718切割时,这种精加工在航空航天工业中得到了广泛应用。在本研究中,选择表面粗糙度作为表面完整性标准之一。主要选择20A至40A的高放电电流,200μs至400μs的较长脉冲接通时间(脉冲持续时间)以及不同浓度的纳米氧化铝粉末作为主要参数。评估了粉末混合电介质在电火花加工性能方面对表面粗糙度的影响。称为高效放电机(HPEDM)的介电循环系统连接到常规EDM机上,以运行涉及粉末混合介电体的实验。实验结果表明,最高峰值电流使表面粗糙度恶化。表面粗糙度R a随着峰值电流的增加而增加。结果还表明,随着脉冲持续时间的增加,表面粗糙度有所改善。可以看出,R a的值与加工表面的表面形貌特征密切相关,并且直接取决于所施加的放电能量。当将粉末添加剂混合在介电液中时,表面粗糙度没有改善。

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