Chen Zhi, Zhou Hongbing, Wu Cheng, Zhang Guojun, Yan Hongzhi
State Key Laboratory of High Performance Complex Manufacturing, College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China.
Shenzhen Research Institute of Central South University, Shenzhen 518057, China.
Materials (Basel). 2022 Jun 9;15(12):4098. doi: 10.3390/ma15124098.
In wire electrical discharge machining, due to the random distribution of the insulating SiC particles, frequent wire rupture, low machining efficiency and surface quality when the common brass wire electrode (BWE) is used to process high-volume content SiCp/Al composite often appears. To address this issue, this paper proposes a new preparation method of zinc coating and surface microstructure on wire electrodes (ZCSMWE). The preparation process of ZCSMWE includes casting, coating, annealing and plastic processing. The experimental results show that, compared with BWE, ZCSMWE can increase material removal rate () by 16.67%, reduce surface roughness () by 21.18% and reduce wire rupture under the same discharge parameters. The analysis of workpiece surface topography shows that ZCSMWE can significantly decrease the recast layer and microcrack on the machined surface. The improvement mechanism of ZCSMWE main includes: The low work function zinc can promote the forming of the discharge channel. The vaporization of low boiling temperature zinc can reduce the temperature of the discharge gap and promote the ejecting of workpiece material. In addition, the surface microstructure on ZCSMWE can make the discharge spark more uniformly distributed and increase the proportion of the effective discharge, which contributes to making the discharge crater on the workpiece and wire electrode shallower and more uniform. The surface microstructure on ZCSMWE can also effectively improve the dielectric circulation, which can promote discharge debris to be expelled out and reduce the temperature in the discharge gap. Then, the wire rupture and microcracks on the workpiece surface can be reduced.
在电火花线切割加工中,当使用普通黄铜丝电极(BWE)加工高体积分数SiCp/Al复合材料时,由于绝缘SiC颗粒的随机分布,经常出现频繁断丝、加工效率低和表面质量差的问题。为了解决这个问题,本文提出了一种新的线电极锌涂层及表面微观结构制备方法(ZCSMWE)。ZCSMWE的制备过程包括铸造、涂层、退火和塑性加工。实验结果表明,与BWE相比,在相同放电参数下,ZCSMWE可使材料去除率提高16.67%,表面粗糙度降低21.18%,并减少断丝情况。对工件表面形貌的分析表明,ZCSMWE可显著减少加工表面的重铸层和微裂纹。ZCSMWE的改进机理主要包括:低功函数的锌可促进放电通道的形成;低沸点锌的汽化可降低放电间隙温度,促进工件材料的 ejecting(此处原文有误,推测可能为“喷射”);此外,ZCSMWE上的表面微观结构可使放电火花分布更均匀,增加有效放电比例,有助于使工件和线电极上的放电坑更浅且更均匀。ZCSMWE上的表面微观结构还可有效改善介质循环,促进放电碎屑排出,降低放电间隙温度。进而减少断丝和工件表面的微裂纹。