Soft Biomimetic Fish Robot Made of Dielectric Elastomer Actuators
暂无分享,去创建一个
[1] Robert Jagger,et al. Analysis of the properties of silicone rubber maxillofacial prosthetic materials. , 2003, Journal of dentistry.
[2] Luc Maffli,et al. Fluidically-coupled dielectric elastomer actuator structures for tunable optics and microfluidics , 2014 .
[3] Alexandre Poulin,et al. Dielectric elastomer actuator for mechanical loading of 2D cell cultures. , 2016, Lab on a chip.
[4] H. Shea,et al. Fabrication Process of Silicone-based Dielectric Elastomer Actuators , 2016, Journal of visualized experiments : JoVE.
[5] Kyu-Jin Cho,et al. Review of biomimetic underwater robots using smart actuators , 2012 .
[6] Q. Pei,et al. Advances in dielectric elastomers for actuators and artificial muscles. , 2010, Macromolecular rapid communications.
[7] J. Sader. Frequency response of cantilever beams immersed in viscous fluids with applications to the atomic force microscope , 1998 .
[8] F. Carpi,et al. Ultrafast all-polymer electrically tuneable silicone lenses , 2016 .
[9] H. Shea,et al. Improved electromechanical behavior in castable dielectric elastomer actuators , 2013 .
[10] Mariangela Manti,et al. Stiffening in Soft Robotics: A Review of the State of the Art , 2016, IEEE Robotics & Automation Magazine.
[11] Li Wen,et al. Understanding undulatory locomotion in fishes using an inertia-compensated flapping foil robotic device , 2013, Bioinspiration & biomimetics.
[12] Robert J. Wood,et al. A Resilient, Untethered Soft Robot , 2014 .
[13] Dario Floreano,et al. Biomimetic underwater robots based on dielectric elastomer actuators , 2016, 2016 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS).
[14] Koichi Suzumori,et al. Elastic materials producing compliant robots , 1996, Robotics Auton. Syst..
[15] Maarja Kruusmaa,et al. Modelling of a biologically inspired robotic fish driven by compliant parts , 2014, Bioinspiration & biomimetics.
[16] D. Rus,et al. Design, fabrication and control of soft robots , 2015, Nature.
[17] Kamal Youcef-Toumi,et al. Design of Machines With Compliant Bodies for Biomimetic Locomotion in Liquid Environments , 2006 .
[18] L. Meirovitch,et al. Fundamentals of Vibrations , 2000 .
[19] R. Oppermann. Strength of materials, part I, elementary theory and problems , 1941 .
[20] Pablo,et al. Design of biomimetic compliant devices for locomotion in liquid environments , 2007 .
[21] George V Lauder,et al. Hydrodynamics of C-Start Escape Responses of Fish as Studied with Simple Physical Models. , 2015, Integrative and comparative biology.
[22] Q. Pei,et al. High-speed electrically actuated elastomers with strain greater than 100% , 2000, Science.
[23] Michael Sfakiotakis,et al. Review of fish swimming modes for aquatic locomotion , 1999 .
[24] Tingyu Cheng,et al. Fast-moving soft electronic fish , 2017, Science Advances.
[25] Samuel Rosset,et al. Small, fast, and tough: Shrinking down integrated elastomer transducers , 2016 .
[26] Todd A. Gisby,et al. Multi-functional dielectric elastomer artificial muscles for soft and smart machines , 2012 .
[27] L. Wen,et al. Hydrodynamic performance of a biomimetic robotic swimmer actuated by ionic polymer–metal composite , 2013 .
[28] Ian D. Walker,et al. Soft robotics: Biological inspiration, state of the art, and future research , 2008 .
[29] Jian Zhu,et al. A Soft Jellyfish Robot Driven by a Dielectric Elastomer Actuator , 2016, IEEE Robotics and Automation Letters.
[30] D. Floreano,et al. Versatile Soft Grippers with Intrinsic Electroadhesion Based on Multifunctional Polymer Actuators , 2016, Advanced materials.
[31] Filip Ilievski,et al. Soft robotics for chemists. , 2011, Angewandte Chemie.
[32] Michael T. Tolley,et al. Fluid electrodes for submersible robotics based on dielectric elastomer actuators , 2017, Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[33] Matteo Aureli,et al. Nonlinear finite amplitude vibrations of sharp-edged beams in viscous fluids , 2012 .
[34] Eric D Tytell,et al. The role of mechanical resonance in the neural control of swimming in fishes. , 2014, Zoology.
[35] Maurizio Porfiri,et al. Fish and robots swimming together: attraction towards the robot demands biomimetic locomotion , 2012, Journal of The Royal Society Interface.
[36] H. Shea,et al. High-Resolution, Large-Area Fabrication of Compliant Electrodes via Laser Ablation for Robust, Stretchable Dielectric Elastomer Actuators and Sensors. , 2015, ACS applied materials & interfaces.
[37] M. C. Tracey,et al. Mechanical characterization of bulk Sylgard 184 for microfluidics and microengineering , 2014 .
[38] A. Smits,et al. Scaling the propulsive performance of heaving flexible panels , 2013, Journal of Fluid Mechanics.
[39] Daniela Rus,et al. Autonomous Soft Robotic Fish Capable of Escape Maneuvers Using Fluidic Elastomer Actuators. , 2014, Soft robotics.
[40] Paul W. Webb,et al. ‘Steady’ Swimming Kinematics of Tiger Musky, an Esociform Accelerator, and Rainbow Trout, a Generalist Cruiser , 1988 .