ZHANG Yong-hua, HE Jian-hui, ZHANG Shi-wu, DONG Er-bao, YANG Jie. Research on Biomimetic Fish Fin Driven by NiTi Shape Memory Alloy[J]. ROBOT, 2007, 29(3): 207-213.
Citation: ZHANG Yong-hua, HE Jian-hui, ZHANG Shi-wu, DONG Er-bao, YANG Jie. Research on Biomimetic Fish Fin Driven by NiTi Shape Memory Alloy[J]. ROBOT, 2007, 29(3): 207-213.

Research on Biomimetic Fish Fin Driven by NiTi Shape Memory Alloy

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  • Received Date: July 09, 2006
  • Published Date: May 14, 2007
  • In order to improve the maneuverability of underwater biomimetic fish-like propulsor,we recently study black ghost knifefish which typically uses undulatory locomotion of ventral ribbon fin to produce thrust.The morphology and kinematics of this ribbon fin is analyzed.Meanwhile,the fin model is simplified,and a robotic fish fin driven by shape memory alloy(SMA)is developed.Then,the mechanical structure and corresponding control circuit of this biomimetic robot fin are introduced.Particularly,the swimming velocity and thrust generated by undulatory motion of the developed robotic fin are analyzed theoretically.Furthermore,a computational fluid dynamics(CFD)method is used to show pressure distribution on robotic fin surface as well as the periodical change of generated swimming thrust with time.These computational results are compared with previous experimental value,indicating that these computational results are reasonable and correct.All these results show that it's a very interesting and feasible to study the SMA driven robotic fish fin.
  • [1]
    Lauder G V,Liem K F.The evolution and interrelationships of the actinopterygian fish[J].Bulletin of the Museum of Comparative Zoology,1983,150:95-197.
    [2]
    Sfakiotakis M,Lane D M,Davies B C.Review of fish swimming modes for aquatic locomotion[J].IEEE Journal of Oceanic Engineering,1999,24(2):237-252.  
    [3]
    Sfakiotakis M.Flexible Appendage for Positioning and Stabilisation[EB/OL].http://www.ece.eps.hw.ac.uk/oceans/,2005-01/2006-07-10.
    [4]
    沈林成,王光明.仿鱼长鳍波动推进器研究的进展与分析[J].国防科技大学学报,2005,27(4):96-100.
    [5]
    Sfakiotakis M,Lane D M,Davies B C.An experimental undulating fin device using the parallel bellows actuator[A].Proceedings of the IEEE International Conference on Robotics and Automation[C].Piscataway,NJ,USA:IEEE,2001.2356-2362.
    [6]
    Low K H,Willy A.Development and initial investigation of NTU robotic fish with modular flexible fins[A].Proceedings of the IEEE International Conference on Mechatronics & Automation[C].Piscataway,NJ,USA:IEEE,2005.958-963.
    [7]
    Malcolm A.The Maclver Lab Website[DB/OL].http://www.neuromech.northwestern.edu/index.shtml,2005-01/2006-07-10.
    [8]
    胡天江,李非,沈林成."尼罗河魔鬼"长背鳍波动包络线的提取算法[J].国防科技大学学报,2005,27(6):67-72.
    [9]
    谢海斌,沈林成,胡天江."尼罗河魔鬼"柔性长鳍运动曲面建模与仿真[J].国防科技大学学报,2005,27(5):62-66.
    [10]
    Ono N,Kusaka M,Taya M,et al.Design offish fin actuators using shape memory alloy composites[A].Proceedings of the SPIE(vol.5388):Smart Structures and Materials 2004-Industrial and Commercial Applications of Smart Structures Technologies[C].Bellingham,WA,USA:SPIE,2004.305-312.
    [11]
    Guo S X,Okuda Y Y,Asaka K.Characteristic evaluation of an underwater micro biped robot with multi DOF[A].Proceedings of the IEEE International Conference on Intelligent Mechatronics and Automation[C].New York,NY,USA:IEEE,2004.95-100.
    [12]
    匿名.商务领航[EB/OL].http://www.gdbnet.cn/web/Supply/Detail.aspx? InfoID = 7580841,2006-07-25/2006-08-15.
    [13]
    Maclver M A,Fontaine E,Burdick J W.Designing future underwater vehicles:principles and mechanisms of the weakly electric fish[J].IEEE Journal of Oceanic Engineering,2004,29(3):651-659.  
    [14]
    Ortega H,Vari R P.Annotated checklist of the freshwater fishes of Peru[J].Smithsonian Contributions to Zoology,1986,437(9):1-25.
    [15]
    Colgate J E,Lynch K M.Mechanics and control of swimming:a review[J].IEEE Journal of Oceanic Engineering,2004,29(3):660-673.  
    [16]
    Blake R W.Swimming in the electric eels and knifefishes[J].Canadian Journal of Zoology-Revue Canadienne De Zoologie,1983,61(6):1432-1441.  
    [17]
    梁建宏,王田苗,魏洪兴.水下仿生机器鱼的研究进展Ⅰ--鱼类推进机理[J].机器人,2002,24(2):107-111.

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