An Advanced Mathematical Model and its Experimental Verification for Trilayer Conjugated Polymer Actuators
暂无分享,去创建一个
[1] Q. Pei,et al. Electrochemical applications of the bending beam method. 1. Mass transport and volume changes in polypyrrole during redox , 1992 .
[2] Chen Liu,et al. Evaluation of porous membrane core elasticity and porous morphology for polypyrrole trilayer actuators , 2012 .
[3] S. John,et al. Inversion-Based Feedforward Control of Polypyrrole Trilayer Bender Actuators , 2010, IEEE/ASME Transactions on Mechatronics.
[4] Xiaobo Tan,et al. Redox level-dependent impedance model for conjugated polymer actuators , 2008, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[5] John Stephen William. Modelling and control of conducting polymer actuators , 2008 .
[6] P. Madden,et al. Development and modeling of conducting polymer actuators and the fabrication of a conducting polymer based feedback loop , 2003 .
[7] C. H. Nguyen,et al. Modelling trilayer conjugated polymer actuators for their sensorless position control , 2012 .
[8] G. Alici. An effective modelling approach to estimate nonlinear bending behaviour of cantilever type conducting polymer actuators , 2009 .
[9] Christopher David Cook,et al. Bending modeling and its experimental verification for conducting polymer actuators dedicated to manipulation applications , 2006 .
[10] W. Takashima,et al. Tris(trifluoromethylsulfonyl)methide-doped polypyrrole as a conducting polymer actuator with large electrochemical strain , 2006 .
[11] J. Madden,et al. A Dynamic Electromechanical Model for Electrochemically Driven Conducting Polymer Actuators , 2011, IEEE/ASME Transactions on Mechatronics.
[12] G. Alici,et al. Validation of Resonant Frequency Model for Polypyrrole Trilayer Actuators , 2008, IEEE/ASME Transactions on Mechatronics.
[13] G. Alici,et al. Performance Quantification of Conducting Polymer Actuators for Real Applications: A Microgripping System , 2007, IEEE/ASME Transactions on Mechatronics.
[14] Analysis of high performance polypyrrole actuators , 2011 .
[15] Binbin Xi,et al. Enhanced control and stability of polypyrrole electromechanical actuators , 2004 .
[16] Warren P. Mason,et al. Introduction to polymer viscoelasticity , 1972 .
[17] G. Wallace,et al. Fast trilayer polypyrrole bending actuators for high speed applications , 2006 .
[18] J. Madden,et al. An NMR study of PF6− ions in polypyrrole , 2007 .
[19] Binbin Xi,et al. Conjugated Polymer Actuators: Fundamentals , 2009 .
[20] Juan Bisquert,et al. Theory of the Impedance of Electron Diffusion and Recombination in a Thin Layer , 2002 .
[21] T. Pritz,et al. Unbounded complex modulus of viscoelastic materials and the Kramers-Kronig relations , 2005 .
[22] Yoseph Bar-Cohen,et al. Electroactive Polymer (EAP) Actuators as Artificial Muscles: Reality, Potential, and Challenges, Second Edition , 2004 .
[23] John David Wyndham Madden,et al. Conducting polymer actuators , 2000 .
[24] G. Wallace,et al. Actuators for the cochlear implant , 2003 .
[25] Xiaobo Tan,et al. Robust Adaptive Control of Conjugated Polymer Actuators , 2008, IEEE Transactions on Control Systems Technology.
[26] E. Smela. Conjugated Polymer Actuators for Biomedical Applications , 2003 .
[27] D. De Rossi,et al. Performance and work capacity of a polypyrrole conducting polymer linear actuator , 1997 .
[28] A. Ivaska,et al. Electrochemical impedance spectroscopy of oxidized poly(3,4-ethylenedioxythiophene) film electrodes in aqueous solutions , 2000 .
[29] L. E. Malvern. Introduction to the mechanics of a continuous medium , 1969 .
[30] Yang Fang,et al. A scalable model for trilayer conjugated polymer actuators and its experimental validation , 2007, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[31] Qibing Pei,et al. Electrochemical applications of the bending beam method. 2. Electroshrinking and slow relaxation in polypyrrole , 1993 .
[32] Y. Cohen. Electroactive Polymer (EAP) Actuators as Artificial Muscles - Reality , 2001 .