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Featured researches published by Cao Yongzhi.


SCIENTIA SINICA Chimica | 2017

Research advances of electrochemical micro/nanofabrication based on confined etchant layer technique

Han Lianhuan; He Quanfeng; Zhao Xuesen; Cao Yongzhi; Hu Zhenjiang; Yan Yongda; Tian Zhao-Wu; Zhan Dongping

Compared with mechanical machining, ECM has several advantages, such as avoiding tool wear, none thermal or mechanical stress on machining surfaces, as well as high removal rate. Moreover, ECM is capable of making complex three-dimensional structures and is appropriate for flexible, fragile, or fissile materials even materials harder than the machining tool. Thus, ECM has been widely used for various industrial applications in the fields of aerospace, automobiles, electronics, etc. ECM methods can be classified usually as electrolytic machining based on anodic dissolution and electroforming based on cathodic deposition of metallic materials. Recently, high technology industry, such as ultralarge scale integration (ULSI) circuits, microelectromechanical systems (MEMS), miniaturized total analysis systems (μ-TAS) and precision optics, has developed more and more rapidly, where miniaturization and integration of functional components are becoming significant. Nowadays, the feature size of interconnectors in ULSI circuits has been down to 20 nanometers, predicted by Moore’s law. Confined etchant layer technique (CELT) was proposed in 1992 to fabricate three-dimensional micro- and nanostructures (3D-MNS) on different metals and semiconductors, which has been developed an effective machining method with independent intellectual property rights. Generally, there are three procedures in CELT: (1) generating the etchant on the surface of the tool electrode by electrochemical or photoelectrochemical reactions; (2) confining the etchant in a depleted layer with a thickness of micro- or nanometer scale; (3) etching process when the tool electrode is fed to the workpiece, which applicable for 1D milling, 2D polishing, and 3D microfabrication with an accuracy at micro or nanometer scale. External physical-field modulations have recently been introduced into CELT to improve its machining precision. In this review, the advances of CELT in principles, instruments and applications will be addressed as well as the prospects.


Archive | 2013

Nonlinear large-aperture optical element clamping device capable of achieving definite value axial load application

Liang Yingchun; Su Ruifeng; Cao Yongzhi; Liu Haitao; Yu Fuli


Archive | 2015

Transverse online cleaning, dismounting and mounting device for large aperture optical elements

Lu Lihua; Zhang Qingchun; Yu Fuli; Cao Yongzhi; Liang Yingchun


Archive | 2015

Purging device and method for keeping cleanliness of laser transmission optical system

Lu Lihua; Cao Yongzhi; Yu Fuli; Zhang Qingchun; Liang Yingchun


Archive | 2014

Horizontal detecting device, levelling device and levelling method of workpiece in electrochemical system

Zhan Dongping; Han Lianhuan; Yuan Ye; Hu Zhenjiang; Cao Yongzhi; Zhao Xuesen; Yan Yongda; Tian Zhongqun


Archive | 2013

Multi-posture adjusting mechanism for nonlinear big-caliber optical element

Liang Yingchun; Su Ruifeng; Cao Yongzhi; Yu Fuli; Zhang Qingchun


Archive | 2017

Array electrode based on electrochemical confined etching and processing method of array electrode

Hu Zhenjiang; Yan Yongda; Zhan Dongping; Cao Yongzhi; Zhao Xuesen; Han Lianhuan


Archive | 2017

Surface coating, polishing and wiping equipment

Sun Tao; Guo Shusen; Cao Yongzhi; Xu Zhiqiang


Archive | 2017

Method for electrochemical machining through special-shaped electrode tool

Cao Yongzhi; Han Lianhuan; Zhan Dongping; Zhao Xuesen; Hu Zhenjiang; Yan Yongda


Archive | 2017

Electrochemical induction processing method for three dimensional micro-nano structure

Yan Yongda; Zhan Dongping; Han Lianhuan; Cao Yongzhi; Hu Zhenjiang; Zhao Xuesen

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Liang Yingchun

Harbin Institute of Technology

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Yan Yongda

Harbin Institute of Technology

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Hu Zhenjiang

Harbin Institute of Technology

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Zhang Qingchun

Harbin Institute of Technology

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Lu Lihua

Harbin Institute of Technology

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Zhao Xuesen

Harbin Institute of Technology

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