Self-excitation pneumatic soft actuator inspired by vocal cords
Tài liệu tham khảo
Kure, 2006, Intelligent fma using flexible displacement sensor with paste injection, Proceedings – IEEE International Conference on Robotics and Automation, vol. 2006, 1012, 10.1109/ROBOT.2006.1641842
Bartlett, 2015, A 3d-printed, functionally graded soft robot powered by combustion, Science, 349, 161, 10.1126/science.aab0129
Ogura, 2009, Micro pneumatic curling actuator-nematode actuator, 462
Suzumori, 2007, A bending pneumatic rubber actuator realizing soft-bodied manta swimming robot, 4975
Kurumaya, 2018, Exoskeleton inflatable robotic arm with thin mckibben muscle, 120
Niiyama, 2015, Pouch motors: Printable soft actuators integrated with computational design, Soft Robot., 2, 59, 10.1089/soro.2014.0023
Miyaki, 2018, Soft simple compact valve inducing self-excited vibration aimed for mobile robots unnecessary for electricity, 670
Nabae, 2018, Effect of elastic element on self-excited electrostatic actuator, Sens. Actuators A: Phys., 279, 725, 10.1016/j.sna.2018.06.045
Shmulevich, 2015, The electromechanical response of a self-excited mems franklin oscillator, 41
NAKASHIMA, 2003, A study on the propulsive mechanism of a double jointed fish robot utilizing self-excitation control, JSME Int. J. Ser. C Mech. Syst. Mach. Elem. Manuf., 46, 982
Cunningham, 2009, The winch-bot: a cable-suspended, under-actuated robot utilizing parametric self-excitation, 2009 IEEE International Conference on Robotics and Automation, 1844, 10.1109/ROBOT.2009.5152378
Nemoto, 2015, Thermobot: a bipedal walker driven by constant heating, 983
Masuda, 2017, Weak actuators generate adaptive animal gaits without a brain, 2638
Nishioka, 2010, Experimental evaluation of multiplex penumatic control drive, 1
Kim, 2019, A simple tripod mobile robot using soft membrane vibration actuators, IEEE Robot. Autom. Lett., 4, 2289, 10.1109/LRA.2019.2902018
Tani, 2020, Proposal and prototyping of self-excited pneumatic actuator using automatic-flow-path-switching-mechanism, IEEE Robot. Autom. Lett.
Kojima, 2018, Prolonging the lifetime of straight-fiber-type pneumatic rubber artificial muscle by shape consideration and material development, 188
Matysek, 2011, Lifetime investigation of dielectric elastomer stack actuators, IEEE Trans. Dielectr. Electr. Insul., 18, 89, 10.1109/TDEI.2011.5704497
Yuan, 2009, Long lifetime dielectric elastomer actuators under continuous high strain actuation, Electroactive Polymer Actuators and Devices (EAPAD) 2009, vol. 7287, International Society for Optics and Photonics, 72870O
DEGUCHI, 2006, Wavelike motion of a mechanical vocal fold model at the onset of self-excited oscillation, J. Biomech. Sci. Eng., 1, 246, 10.1299/jbse.1.246
Gupta, 1973, A model for vocal cord excitation, J. Acoust. Soc. Am., 54, 1607, 10.1121/1.1914457
Fukui, 2007, Mechanical vocal cord model for anthropomorphic talking robot based on human biomechanical structure, Nippon Kikai Gakkai Ronbunshu C Hen (Trans. Jpn. Soc. Mech. Engrs. Part C) (Japan), 19, 2750
Alipour-Haghighi, 1988, A finite element simulation of vocal folds vibrations, 186
Alipour, 2000, A finite-element model of vocal-fold vibration, J. Acoust. Soc. Am., 108, 3003, 10.1121/1.1324678
Tao, 2006, Simulation of vocal fold impact pressures with a self-oscillating finite-element model, J. Acoust. Soc. Am., 119, 3987, 10.1121/1.2197798
Snedeker, 1971, A study of free jet impingement. Part 1. mean properties of free and impinging jets, J. Fluid Mech., 45, 281, 10.1017/S0022112071000053
Zaman, 1999, Spreading characteristics of compressible jets from nozzles of various geometries, J. Fluid Mech., 383, 197, 10.1017/S0022112099003833