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用于超精密加工的机械驱动双轴超声辅助系统

Mechanically Enabled Two-Axis Ultrasonic-Assisted System for Ultra-Precision Machining.

作者信息

Yu Nan, Liu Jinghang, Mainaud Durand Hélène, Fang Fengzhou

机构信息

Centre of Micro/Nano Manufacturing Technology (MNMT-Dublin), University College Dublin, Dublin D04 V1W8, Ireland.

Survey, Mechatronics and Measurements Group, European Organization for Nuclear Research, 121 Geneva, Switzerland.

出版信息

Micromachines (Basel). 2020 May 20;11(5):522. doi: 10.3390/mi11050522.

Abstract

With the use of ultrasonic-assisted diamond cutting, an optical surface finish can be achieved on hardened steel or even brittle materials such as glass and infrared materials. The proposed ultrasonic vibration cutting system includes an ultrasonic generator, horn, transducer, cutting tool and the fixture. This study is focused on the design of the ultrasonic vibration cutting system with a high vibration frequency and an optimized amplitude for hard and brittle materials, particularly for moulded steel. A two-dimensional vibration design is developed by means of the finite element analysis (FEA) model. A prototype of the system is manufactured for the test bench. An elliptical trajectory is created from this vibration system with amplitudes of micrometers in two directions. The optimization strategy is presented for the application development.

摘要

通过使用超声辅助金刚石切割,可以在硬化钢甚至玻璃和红外材料等脆性材料上实现光学表面光洁度。所提出的超声振动切割系统包括超声发生器、变幅杆、换能器、切割工具和夹具。本研究的重点是设计一种具有高振动频率和优化振幅的超声振动切割系统,用于硬脆材料,特别是模制钢。通过有限元分析(FEA)模型进行二维振动设计。制造了该系统的原型用于试验台。该振动系统在两个方向上产生了振幅为微米级的椭圆轨迹。针对应用开发提出了优化策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fdd/7281293/b0b2592ad536/micromachines-11-00522-g001.jpg

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