• CN:11-2187/TH
  • ISSN:0577-6686

›› 2013, Vol. 49 ›› Issue (19): 144-155.

• 论文 • 上一篇    下一篇

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微结构自由曲面的超精密单点金刚石切削技术概述

李荣彬;孔令豹; 张志辉;杜雪;陈新;刘强   

  1. 香港理工大学超精密加工技术国家重点实验室伙伴实验室;广东工业大学广东省微纳加工技术与装备重点实验室
  • 发布日期:2013-10-05

An Overview of Ultra-precision Diamond Machining of Microstructured Freeform Surfaces

LEE Wingbun;KONG Lingbao;CHEUNG Chifai;TO Suet;CHEN Xin;LIU Qiang   

  1. Partner State Key Laboratory of Ultra-precision Machining Technology, The Hong Kong Polytechnic University, Hong Kong Guangdong Provincial Key Lab of Micro/Nano Machining Technology and Equipment, Guangdong University of Technology
  • Published:2013-10-05

摘要: 回顾了超精密加工技术的发展,主要包括超精密加工设备的开发历程,以及超精密单点金刚石切削技术基础,并对微工程技术作一简要介绍;重点论述微结构自由曲面的微纳切削技术,包括单点金刚石车削(Single point diamond turning, SPDT),快刀伺服加工(Fast tool servo, FTS),金刚石微凿切(Diamond micro chiseling, DMC),光栅铣削等技术。指出微结构自由曲面测量领域面临的挑战和存在的问题,包括接触式测量和非接触式测量。通过几个典型微结构自由曲面的加工及测量的应用进行举例说明;最后介绍我国在超精密加工机床领域内的研制情况,展望了超精密切削技术未来发展趋势。

关键词: 超精密加工, 机床设备, 精密测量, 切削机理, 微结构自由曲面

Abstract: The development of ultra-precision machining technology, including ultra-precision machining equipment and the single point diamond cutting mechanism, is reviewed and summarized. Micro-engineering technology used in the production of microstructured freeform surfaces is introduced. The ultra-precision diamond cutting process for these microstructured freeform surfaces is elucidated, including single point diamond turning (SPDT), fast tool servo (FTS) machining, diamond micro chiseling (DMC), as well as ultra-precision raster milling. Challenges for measuring microstructured freeform surfaces are discussed, including contact and non-contact measuring methods. Case studies on the fabrication and characterization of some typical microstructured freeform surfaces are presented. Finally, the development of ultra-precision machining equipment in China and the future trends in the machining and measurement of microstructured freeform surfaces are discussed.

Key words: Machining equipment, Cutting mechanism, Microstructured freeform surface, Precision metrology, Ultra-precision machining

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