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Fast Control of Negative Pressure Response of a Bio-inspired Suction Cup Actuated by Shape Memory Alloy

Fast Control of Negative Pressure Response of a Bio-inspired Suction Cup Actuated by Shape Memory Alloy
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摘要 A bio-inspired suction cup actuated by shape memory alloy(SMA)for miniature wall climbing robots is developed based on studying characteristics of biological suction apparatus.Some fast control strategies are introduced to improve negative pressure response.Theoretic model of the suction cup is built,and simulation and experiments results indicate the effectiveness of the fast control strategies.The largest negative pressure of the suction cup can reach 14 000 Pa,and its generating and cancelling just need 5 s.Research results indicate the suction cup can be used as an adhesion mechanism for miniature wall climbing robots. A bio-inspired suction cup actuated by shape memory alloy(SMA)for miniature wall climbing robots is developed based on studying characteristics of biological suction apparatus.Some fast control strategies are introduced to improve negative pressure response.Theoretic model of the suction cup is built,and simulation and experiments results indicate the effectiveness of the fast control strategies.The largest negative pressure of the suction cup can reach 14 000 Pa,and its generating and cancelling just need 5 s.Research results indicate the suction cup can be used as an adhesion mechanism for miniature wall climbing robots.
出处 《Journal of Donghua University(English Edition)》 EI CAS 2010年第6期830-834,共5页 东华大学学报(英文版)
基金 National Science and Technology Foundations of China(No.61075086,No.60875058) the Hi-Tech Research and Development Programof China(863 Program)(No.2009AA04Z221)
关键词 wall climbing robot shape memory alloy(SMA) suction cup fast control wall climbing robot shape memory alloy(SMA) suction cup fast control
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参考文献2

  • 1F. Gori,D. Carnevale,A. Doro Altan,S. Nicosia,E. Pennestrì. A New Hysteretic Behavior in the Electrical Resistivity of Flexinol Shape Memory Alloys Versus Temperature[J] 2006,International Journal of Thermophysics(3):866~879
  • 2Metin Sitti,Ronald S. Fearing. Synthetic gecko foot-hair micro/nano-structures as dry adhesives[J] 2003,Journal of Adhesion Science and Technology(8):1055~1073

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