Kong Weijing, Liu Ziyu, Zhang Rudong, Zeng Yongbin
College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China.
Micromachines (Basel). 2023 Jul 27;14(8):1505. doi: 10.3390/mi14081505.
With the development of MEMS, the machining demand and requirements for difficult-to-machine metal micro parts are getting higher. Microelectric discharge machining is an effective method to process difficult-to-machine metals. However, the recast layer caused by high temperatures in microelectric discharge machining affects the properties of machined materials. Here, we propose the wire electrochemical discharge micro-machining (WECDMM) and develop a new electrolyte system, which removes the recast layer. In this study, the mechanism of WECDMM was elucidated. The electrolyte was optimized through a comparison experiment, and NaNO-glycol solution was determined as the best electrolyte. The influences of key process parameters including the conductivity of the electrolyte, pulse voltage, pulse-on time and wire feed rate were analyzed on the slit width, standard deviation, the radius of fillet at the entrance of the slit and roughness. Typical microstructures were machined, which verified the machining ability of WECDMM.
随着微机电系统(MEMS)的发展,对难加工金属微零件的加工需求和要求越来越高。微放电加工是加工难加工金属的有效方法。然而,微放电加工中高温产生的重铸层会影响加工材料的性能。在此,我们提出了线电化学放电微加工(WECDMM)并开发了一种新的电解液系统,该系统可去除重铸层。在本研究中,阐明了WECDMM的加工机理。通过对比实验对电解液进行了优化,确定NaNO-乙二醇溶液为最佳电解液。分析了电解液电导率、脉冲电压、脉冲导通时间和送丝速度等关键工艺参数对狭缝宽度、标准偏差、狭缝入口处圆角半径和粗糙度的影响。加工出了典型的微观结构,验证了WECDMM的加工能力。