Mertiya Abhimanyu Singh, Upadhyay Aman, Nirwan Kaustubh, Harane Pravin Pandit, Abdul-Rani Ahmad Majdi, Pruncu Catalin Iulian, Unune Deepak Rajendra
Department of Mechanical-Mechatronics Engineering, The LNM Institute of Information Technology, Jaipur 302031, India.
Department of Mechanical Engineering, Universiti Teknologi Petronas, Seri Iskandar 32610, Malaysia.
Materials (Basel). 2021 Oct 18;14(20):6192. doi: 10.3390/ma14206192.
Difficulty in debris removal and the transport of fresh dielectric into discharge gap hinders the process performance of electrical discharge machining (EDM) process. Therefore, in this work, an economical low frequency vibration platform was developed to improve the performance of EDM through vibration assistance. The developed vibratory platform functions on an eccentric weight principle and generates a low frequency vibration in the range of 0-100 Hz. The performance of EDM was evaluated in terms of the average surface roughness (R), material removal rate (MRR), and tool wear rate (TWR) whilst varying the input machining parameters viz. the pulse-on-time (T), peak current (I), vibration frequency (VF), and tool rotational speed (TRS). The peak current was found to be the most significant parameter and contributed by 78.16%, 65.86%, and 59.52% to the R, MRR, and TWR, respectively. The low frequency work piece vibration contributed to an enhanced surface finish owing to an improved flushing at the discharge gap and debris removal. However, VF range below 100 Hz was not found to be suitable for the satisfactory improvement of the MRR and reduction of the TWR in an electrical discharge drilling operation at selected machining conditions.
碎屑清除困难以及新鲜电介质输送到放电间隙中受阻,这妨碍了电火花加工(EDM)工艺的加工性能。因此,在这项工作中,开发了一种经济的低频振动平台,通过振动辅助来提高电火花加工的性能。所开发的振动平台基于偏心配重原理工作,可产生0 - 100 Hz范围内的低频振动。在改变输入加工参数,即脉冲导通时间(T)、峰值电流(I)、振动频率(VF)和刀具转速(TRS)的同时,根据平均表面粗糙度(R)、材料去除率(MRR)和刀具磨损率(TWR)来评估电火花加工的性能。发现峰值电流是最显著的参数,分别对R、MRR和TWR的贡献率为78.16%、65.86%和59.52%。低频工件振动由于改善了放电间隙处的冲洗和碎屑清除,有助于提高表面光洁度。然而,在选定的加工条件下进行电火花钻孔操作时,发现低于100 Hz的VF范围不适用于令人满意地提高MRR和降低TWR。