Liu Yang, Ouyang Pengfei, Zhang Zhaoyang, Zhu Hao, Chen Xiaolei, Wang Yufeng, Li Benkai, Xu Kun, Wang Jingtao, Lu Jinzhong
School of Mechanical Engineering, Jiangsu University, Zhenjiang 212013, China.
School of Electro-Mechanical Engineering, Guangdong University of Technology, Guangzhou 510016, China.
Nanoscale. 2024 Nov 7;16(43):19938-19969. doi: 10.1039/d4nr02910k.
The use of array micro-holes is becoming increasingly prevalent across a range of industries, including the aerospace, automotive, electronics, medical and chemical industries. The utilization of advanced sustainable machining technologies offers distinctive advantages and is pivotal for the sustainable manufacture of array micro-holes. This paper examines the sustainable machining techniques commonly employed in the production of array micro-holes, including electrical discharge machining, laser machining, electrochemical machining and composite machining technologies. The paper begins with an elaboration of the processing principles and characteristics of multiple non-traditional machining techniques. The performance indicators of the most commonly used processing technologies in industrial production are summarized from seven perspectives. Six significant avenues for the advancement of sustainable manufacturing technology for array micro-holes have been identified and categorized. This article provides a summary and evaluation of the previous relevant literature, with the aim of offering guidance for the development of array micro-hole processing technologies.
阵列微孔的应用在包括航空航天、汽车、电子、医疗和化工等一系列行业中越来越普遍。先进可持续加工技术的应用具有独特优势,对阵列微孔的可持续制造至关重要。本文研究了阵列微孔生产中常用的可持续加工技术,包括电火花加工、激光加工、电化学加工和复合加工技术。文章首先阐述了多种非传统加工技术的加工原理和特点。从七个方面总结了工业生产中最常用加工技术的性能指标。确定并分类了阵列微孔可持续制造技术发展的六个重要途径。本文对以往相关文献进行了总结和评价,旨在为阵列微孔加工技术的发展提供指导。