• CN:11-2187/TH
  • ISSN:0577-6686

›› 2005, Vol. 41 ›› Issue (2): 137-141.

• 论文 • 上一篇    下一篇

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大长径比微细轴的车削工艺研究

张明君;殷国富;袁光辉   

  1. 四川大学制造科学与工程学院;中国工程物理研究院
  • 发布日期:2005-02-15

STUDY ON TURNING TECHNICS OF BIG DIAMETER-LENGTH RATE MICRO-SHAFT

Zhang Mingjun;Yin Guofu;Yuan Guanghui   

  1. Manufacturing Science and Engineering School, Sichuan University China Academy of Engineering Physics
  • Published:2005-02-15

摘要: 微纳米级器件的加工是MEMS系统的开发、应用的关键技术之一。通过切削试验,设计出能加工最小直径为7m的微细轴的金刚石车刀,其主要参数为:主偏角Kr=93°,副偏角K 'r =30°,前角0=0°,后角0=5°。然后以加工直径20m的轴为例,分析了进给量、背吃刀量以及主轴转速对微细轴成形和表面粗糙度的影响。研究结果表明,在微细轴的加工中,切削用量不仅对工作表面质量产生影响,而且关系到是否能够车削成形。在可成形范围内,进给量与表面粗糙度值成正比,具有显著的影响;背吃刀量、主轴转速对表面粗糙度的影响较小。最后试制了不同加工参数条件下的极限实例产品。

关键词: MEMS, 精密切削, 微纳米器件, 微细轴加工, 多材料, 多目标优化, 柔顺机构, 拓扑优化

Abstract: Manufacturing part at micron or nanometer scale is key technology for developing MEMS. Firstly designing a diamond tool by experiments, it’s main parameters as follow: K r =93°, K 'r =30°, g0 =0°, a0 =5°. Furthermore using this tool turning as small as f7 mm micro-shaft. Then researching the relationship between micro-shaft’s surface quality and the main turning technical parameters such as feed, spindle speeds and the amount of back infeed. The results indicate that the feed not noly effect the surface quality of shaft, but also effect the shaft taking shape whether or not. In the range of shaped, the feed has marked influence, it direct ratio to roughness; the back infeed and spindle speed have little influence. As an example, presenting some samples based on different machining parameters.

Key words: Micron-nanometer part, Precision cutting, MEMS, Micro-shaft machining, compliant mechanism, multi-objective optimization, multiple materials, topology optimization

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