Equbal Azhar, Equbal Asif, Khan Zahid A, Badruddin Irfan Anjum, Bashir Mohamed Bashir Ali, Alrobei Hussein
Department of Mechanical Engineering, Faculty of Engineering and Technology, Jamia Millia Islamia, New Delhi 110025, India.
Department of Mechanical Engineering, Cambridge Institute of Technology, Ranchi 835213, India.
Polymers (Basel). 2021 Nov 25;13(23):4109. doi: 10.3390/polym13234109.
In the present study, cylindrical ABS P400 polymer parts (diameter 6.5 mm) to be used as die-sinking EDM (electric discharge machining) novel electrodes were fabricated using a fused deposition modeling (FDM) process. To meet the conductivity requirement in EDM, ABS parts were metallized using an innovative method that comprised putting aluminum-charcoal (Al-C) on them followed by their copper electroplating. Real-time EDM of the mild steel workpiece was performed using novel electrodes, and machining performance of the electrodes, measured in terms of dimensional accuracy, i.e., change in diameter (Δ) and change in depth (Δ) of the cavity, under varying levels of three EDM factors, i.e., current (), pulse on time (), and pulse off time (), was investigated. Machining results were analyzed using analysis of variance (ANOVA), perturbation graphs, and 3D surface plots. The optimal setting of the EDM parameters for minimizing Δ and Δ was determined using the desirability function approach. The suitability of the novel electrodes for EDM was ascertained by comparing their machining results with those of solid copper (SC) electrodes and electrodes fabricated by FDM and metallized using the electro-deposition method (FDM-EM), already reported in the literature, under similar machining conditions. From the results, it was found that Δ and Δ were less when EDM was performed using novel electrodes.
在本研究中,采用熔融沉积成型(FDM)工艺制造了用作电火花加工(EDM)新型电极的圆柱形ABS P400聚合物零件(直径6.5毫米)。为满足电火花加工中的导电性要求,采用一种创新方法对ABS零件进行金属化处理,该方法包括在零件上放置铝炭(Al-C),然后对其进行铜电镀。使用新型电极对低碳钢工件进行实时电火花加工,并研究了在三个电火花加工因素(即电流()、脉冲导通时间()和脉冲关断时间())的不同水平下,以尺寸精度衡量的电极加工性能,即型腔直径变化(Δ)和深度变化(Δ)。使用方差分析(ANOVA)、扰动图和三维表面图对加工结果进行分析。使用合意性函数方法确定使Δ和Δ最小化的电火花加工参数的最佳设置。通过将新型电极的加工结果与文献中已报道的在类似加工条件下的实心铜(SC)电极以及通过FDM制造并采用电沉积方法金属化的电极(FDM-EM)的加工结果进行比较,确定了新型电极对电火花加工的适用性。从结果发现,使用新型电极进行电火花加工时,Δ和Δ较小。