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Pulse Parameter Characterization in Microdrilling of Maraging Steel 300 Alloy

机译:马氏体时效钢300合金微钻孔中的脉冲参数表征

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MicroEDM process is mainly used for producing miniaturized features like microholes on different types of materials that are hard to cut and difficult to machine. One typical application of microEDM process is microhole drilling operation. Choice and utilization of optimum pulse parameters is of utmost importance for achieving superior surface quality and higher machining rates. However, the process is characterized by low machining rates and considerable overcut as compared to conventional EDM drilling. An attempt is made to investigate the effect of pulse parameters on maraging steel 300 alloy during microEDM drilling. Parameters like pulse on time, pulse off time, voltage and current are explored through 09 experiments replicated thrice using Taguchi method. Machining characteristics like material removal rate and overcut are studied while drilling micro holes of 500 urn diameter using brass electrode. Evaluation of mi-crohardness after microdrilling is also performed. It is found that pulse on time and current influenced the machining characteristics. Minimal change is observed in the microhardness of the alloy after microdrilling.
机译:MicroEDM工艺主要用于在各种类型的难以切割且难以加工的材料上产生微型特征,例如微孔。 microEDM工艺的一种典型应用是微孔钻孔操作。选择和利用最佳脉冲参数对于获得卓越的表面质量和更高的加工速度至关重要。但是,与传统的EDM钻孔相比,该方法的特点是加工速度低,切削量大。试图研究脉冲参数对microEDM钻孔过程中马氏体300合金马氏体时效的影响。通过使用Taguchi方法重复进行的09次实验,探索了诸如脉冲开启时间,脉冲关闭时间,电压和电流之类的参数。在使用黄铜电极钻制直径为500 um的微孔时,研究了材料去除率和过切等加工特性。还进行了微钻孔后的显微硬度评估。发现脉冲接通时间和电流会影响加工特性。在微钻孔后,观察到合金的显微硬度变化最小。

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