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毫米级全方位移动机器人及其微装配系统研究 被引量:5

Omni-directional Mobile Microrobot and Its Micro Assembly System
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摘要 微装配系统由微机器人、微移动平台、普通摄像头和显微摄像头组成。微机器人本体尺寸为9mm×9mm×6mm,具有全方位移动特性。机器人使用了4个直径3mm电磁型微电机,其中1个为转向驱动器,其余为前进动力源。基于LIGA技术制造的微齿轮减速系统将4个电机联系在一起,提高了转向分辨率和转向驱动力矩。由SU-8胶制成的手掌固定于压电机械手臂的前端并安装在机器人的顶部,可夹放工件。通过采用细分方法,微机器人直线移动定位达到每步0.07mm,转向精度每步0.8°。微移动平台的定位精度为每步0.005mm,其位移范围为0~0.3mm。微机器人与微动平台相互结合实现了轴孔装配,轴承孔径为0.6mm,轴径0.35mm。 The paper introduced a micro-assembling system which was based on a mobile microrobot. The size of the microrobot is less than a cubic centimeter. It was constituted by 4 micromotors. Three electromagnetic motors were used as driving wheel directly. Another one was used as steering driver to control direction. A micro gear system which was made by LIGA linked the four micromotors. It enhances the directional changing precision and driving forces. The rotors of the motors were used as special castors directly. The experimental results from a prototype of a microrobot are presented, which demonstrate the feasibility of building an omni-directional microrobot with micromotor and special castors. The mobile microrobot can move at 0.07 mm/step and steer 0.8°/step. This microrobot realized the task of axis/hole assembly.
出处 《中国机械工程》 EI CAS CSCD 北大核心 2005年第14期1223-1225,共3页 China Mechanical Engineering
基金 国家自然科学基金资助项目(60475037) 国家863高技术研究发展计划资助项目(2002AA422220)
关键词 毫米级 全方位 移动机器人 微装配 millimeter scale omni-directional mobile robot micro assembly
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  • 1李小海.自主式微小型机器人及其行为和进化的研究:博士学位论文[M].上海:上海交通大学,2001..
  • 2Buekle A, Schmoechel F, Kiefer M, et al. Vision based closed-loop control of mobile microrobots for microhandling tasks [C]. Proceedings of SPIE Microrobotics and Microassembly Ⅲ , Boston, USA, October, 2001.
  • 3Shi J, Tomasi C. Good features to track [C]. IEEE Conf on Computer Vision and Pattern Recognition,1994. 593-600.
  • 4Fernandez F H, Casanella R. Microsystems for bioParticle handling and manipulation [C]. First BioMens & Biomedical NanoTechnology World, Columbus, Ohio, USA, 2000.
  • 5Park Sung-Wook, Jung-Han, Kim Eun-Hee. Development of a multi-agent system for robot soccer game [C]. Proceeding of the 1997 IEEE International Conference on Robotics an Automation, 1997. 629-631.
  • 6Martel Sylvain, Sherwood Mark, Helm Chad, et al. Three-legged wireless miniature robots for massscaleoperations at the sub-atomic scale [C]. Proceeding of the 2001 IEEE ICRA, Seoul, Korea, May, 2001.
  • 7Bleuler H, Clavel R, Breguet J M, et al. Issues in precision motion control and microhanding [A].Proceedings, International Conference on Robotics and Automation (ICRA 2000) [C]. San Francisco,CA: IEEE,2000. 959-964.
  • 8Fatikow S, Seyfried J, Fahlbusch S, et al. A flexible microrobot-based microassembly station [A].Proceedings of Emerging Technologies and Factory Automation [C]. Barcelona, Spain: IEEE,1999. 397-406.
  • 9Jung Myung-Jin, Shim Hyun-Sik, Kim Heung-Soo,et al. The miniature omni-drectional mobile robot omnikity-I(OK-I) [A]. IEEE International Conference on Robotic and Automation [C]. Detroit:IEEE, 1999. 2686-2690.
  • 10蔡自兴,周翔,李枚毅,雷鸣.基于功能/行为集成的自主式移动机器人进化控制体系结构[J].机器人,2000,22(3):169-175. 被引量:45

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  • 1张庆新,王凤翔,李文君,杨静.磁控形状记忆合金直线驱动器[J].中国机械工程,2004,15(20):1787-1790. 被引量:10
  • 2王勇,刘志刚,薄锋,朱健强.五自由度纳米级定位工作台的设计研究[J].中国机械工程,2005,16(15):1317-1321. 被引量:5
  • 3巩娟,李庆祥,李玉和.精密工作台的设计与实验研究[J].光学技术,2005,31(4):636-638. 被引量:4
  • 4乔大勇,苑伟政,马志波,李开成,李晓莹.一种基于静电排斥力的纵向微驱动器研究[J].传感技术学报,2006,19(6):2662-2664. 被引量:6
  • 5Sitti M. Survey of Nanomanipulation Systems[C]// The Institute of Electrical and Electronics Engineers,Proc, of the IEEE Conf. on Naotechnology. Maul, HI : IEEE, 2001 : 75-80.
  • 6Trumpet D L, Williams M, Nguyen T. Magnet Arrays for Synchronous Machines[C]//The Institute of Electrical and Electronics Engineers,IEEE Indus try Applications Society Annual Meeting. Toronto: IEEE, 1993,1:9-18.
  • 7Hakho L, Alfreda M P,Robert M W. Micromanipulation of Biological Systems with Microelectromagnets[J]. IEEE Trans. Magn. ,2004, 40(4):2991- 2993.
  • 8Han Q, Ham C, Phillips R. Four-and Eight-piece Halbach Array Analysis and Geometry Optimisation for Maglev[J].lEE Proc. Electr. Power Appl. , 2005, 152(3) :535-542.
  • 9Trumper D L, Kim W J, Williams M E. Compiler: US, 5631618[P]. 1997-05.
  • 10Trumper D L, Kim W, Williams M. Design and Analysis Framework for Linear Permanent- magnet Machines[J].IEEE Trans. Ind. Appl. ,1996,32(2):371-379.

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