Wang Guoqian, Zhang Yan, Li Hansong, Tang Jian
School of Mechanical and Power Engineering, Nanjing Tech University, Nanjing 211816, China.
College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China.
Materials (Basel). 2020 Dec 17;13(24):5780. doi: 10.3390/ma13245780.
Micro-hole arrays have found wide applications in aerospace, precision instruments, and biomedicine. Among various methods of their production, including mechanical, laser, and electrical discharge, electrochemical machining (ECM) is considered the most lucrative due to its wide processing range, high surface quality, and excellent productivity. In particular, ultrasound-assisted through-mask ECM exhibits an enhanced machining precision due to ultrasonic cavitation, which promotes the removal of the electrolytic products and bubbles. In this study, the equation of cavitation bubble oscillation was derived and numerically solved to study the influence of six different parameters on the ultrasonic cavitation and electrolysis process, and their optimal values were determined. The feasibility of the proposed ultrasound-assisted through-mask ECM technology with the optimized parameters was experimentally corroborated by the fabrication of a high-quality hole array in an oxide dispersion strengthened (ODS) MA956 superalloy.
微孔阵列在航空航天、精密仪器和生物医学等领域有着广泛的应用。在其各种制造方法中,包括机械加工、激光加工和放电加工,电化学加工(ECM)因其加工范围广、表面质量高和生产率优异而被认为是最具优势的。特别是,超声辅助掩膜电化学加工由于超声空化作用而具有更高的加工精度,超声空化促进了电解产物和气泡的去除。在本研究中,推导并数值求解了空化气泡振荡方程,以研究六个不同参数对超声空化和电解过程的影响,并确定了它们的最佳值。通过在氧化物弥散强化(ODS)MA956高温合金中制造高质量的孔阵列,实验证实了所提出的具有优化参数的超声辅助掩膜电化学加工技术的可行性。