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玻璃微孔石墨粉混合电化学放电加工中加工特性的实验研究。

Experimental Investigation of the Machining Characteristics in Graphite-Powder-Mixed Electrochemical Discharge Machining of Microholes in Glass.

作者信息

Tang Weidong, Yao Jikai, Zhang Jize, Zhao Quancai, Fan Lixiang, Mao Cong, Kang Xiaoming, Li Xuyu, Chen Shuhan

机构信息

College of Automotive and Mechanical Engineering, Changsha University of Science and Technology, Changsha 410114, China.

State Key Laboratory of Mechanical System and Vibration, School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Micromachines (Basel). 2023 Sep 22;14(10):1810. doi: 10.3390/mi14101810.

Abstract

The effect of graphite powder on the machining characteristics in graphite-powder-mixed electrochemical discharge machining of microholes was still not clear. How the discharge mechanism changed with the addition of graphite powder into the electrolyte, which further led to changes in the morphology of the machined holes, remained to be revealed. In this study, a series of microhole machining experiments were conducted in glass. Comparisons of the discharge energy, microhole entrance diameter, hole taper, and tool electrode morphology after machining were made when machining in the electrolytes with and without graphite powder. Experimental results revealed that there were a lot of small pulse currents distributed on the current waveform when machining with the graphite-powder-mixed electrolyte. The average discharge energy of the small pulse current was 2.8 times as much as that of the general electrochemical discharge. After introducing graphite powder into the electrolyte, the entrance diameter of the hole became larger when the hole depth was deeper than 200 μm. The HAZ width increased with increasing hole depth at the voltage of 37-41 V, while it decreased at the voltage of 43 V. A reduction in hole taper angle with a range of 0.5° to 2.3° was achieved. In addition, after machining in electrolytes with and without graphite powder, the tool electrode surfaces showed different morphologies due to different discharges.

摘要

石墨粉对微孔石墨粉混合电化学放电加工中加工特性的影响尚不清楚。随着石墨粉添加到电解液中放电机制如何变化,进而导致加工孔的形貌发生改变,仍有待揭示。在本研究中,在玻璃中进行了一系列微孔加工实验。对在含有和不含有石墨粉的电解液中加工后的放电能量、微孔入口直径、孔锥度和工具电极形貌进行了比较。实验结果表明,在用石墨粉混合电解液加工时,电流波形上分布着许多小脉冲电流。小脉冲电流的平均放电能量是普通电化学放电的2.8倍。在电解液中引入石墨粉后,当孔深超过200μm时,孔的入口直径变大。在37 - 41V电压下,热影响区宽度随孔深增加而增大,而在43V电压下则减小。孔锥角减小了0.5°至2.3°。此外,在含有和不含有石墨粉的电解液中加工后,由于放电情况不同,工具电极表面呈现出不同的形貌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2223/10609388/02e16d3957dc/micromachines-14-01810-g001.jpg

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