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MODELING CONTACTS OF IONIC POLYMER METAL COMPOSITES BASED TACTILE SENSORS 被引量:2

MODELING CONTACTS OF IONIC POLYMER METAL COMPOSITES BASED TACTILE SENSORS
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摘要 We report the first attempt to model the contacts of an ionic polymer metal composite(IPMC) based tactile sensor. The tactile sensor comprises an IPMC actuator, an IPMC sensor and the target to be detected. The system makes use of multiple contacts to work: the actuator comes into contact with the sensor and pushes the movement of sensor; the contact between the sensor and the object detects the existence and the stiffness of the target. We integrate modeling of various physical processes involved in IPMC devices to form a simulation scheme. An iteration and optimization strategy is also described to correlate the experimental and simulation results of an IPMC bending actuator to identify the two key parameters used in electromechanical transduction. Modeling the multiple contacts will aid the design and optimization of such IPMC based soft robotics. We report the first attempt to model the contacts of an ionic polymer metal composite(IPMC) based tactile sensor. The tactile sensor comprises an IPMC actuator, an IPMC sensor and the target to be detected. The system makes use of multiple contacts to work: the actuator comes into contact with the sensor and pushes the movement of sensor; the contact between the sensor and the object detects the existence and the stiffness of the target. We integrate modeling of various physical processes involved in IPMC devices to form a simulation scheme. An iteration and optimization strategy is also described to correlate the experimental and simulation results of an IPMC bending actuator to identify the two key parameters used in electromechanical transduction. Modeling the multiple contacts will aid the design and optimization of such IPMC based soft robotics.
出处 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2014年第4期407-411,共5页 固体力学学报(英文版)
基金 supported by the National Natural Science Foundation of China(Nos.11372239,11321062 and 11472210)
关键词 IPMC tactile sensor CONTACT finite element method IPMC,tactile sensor,contact,finite element method
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  • 1Calvert,P, Hydrogels for soft machines. Advanced materials, 2009, 21(7): 743-756.
  • 2Shahinpoor,M. and Kim,K.J., Ionic polymer-metal composites: I. Fundamentals. Smart Materials and Structures, 2001, 10(4): 819-833.
  • 3Shahinpoor,M. and Kim,K.J., Ionic polymer-metal composites: III. Modeling and simulation as biomimetic sensors, actuators, transducers, and artificial muscles. Smart Materials and Structures, 2004, 13(6): 1362- 1388.
  • 4Shahinpoor,M. and Kim,K.J., Ionic polymer-metal composites: IV. Industrial and medical applications. Smart Materials and Structures, 2005, 14(1): 197-214.
  • 5Pugal,D., Kim,K.J., Punning,A., Kasemagi,H., Kruusmaa,M. and Aabloo,A., Ionic polymer-metal compos- ite mechanoelectrical transduction: review and perspectives. Polymer International, 2010, 59(3): 279-289.
  • 6Bonomo,C., Brunetto,P., Fortuna,L., Giannone,P., Graziani,S. and Strazzeri,S., A tactile sensor for bio- medical applications based on IPMCs. IEEE Sensors Journal, 2008, 8(8): 1486-1493.
  • 7Pugal,D., Jung,K., Aabloo,A. and Kim,K.J., A self-oscillating ionic polymer-metal composite bending ac- tuator. Journal of Applied Physics, 2008, 103(8): 084908.
  • 8Wallmersperger,T., Leo,D.J. and Kothera,C.S., Transport modeling in ionomeric polymer transducers and its relationship to electromechanical coupling. Journal of Applied Physics, 2007, 101(2): 024912.
  • 9Nemat-Nasser,S. and Zamani,S., Modeling of electrochemomechanical response of ionic polymer-metal com- posites with various solvents. Journal of Applied Physics, 2006, 100(6): 064310.
  • 10Li,H., Zhou,J. and Li,M., Multiphysics modeling of self-oscillations of ionic polymer gel actuators. Inter- national Journal of Applied Mechanics, 2011, 3(2): 355-363.

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