Fused filament 3D printing of ionic polymer-metal composites (IPMCs)
暂无分享,去创建一个
Matteo Aureli | Kam K. Leang | James D. Carrico | K. Leang | M. Aureli | Nicklaus W. Traeden | N. Traeden
[1] Barbar J. Akle,et al. Micro deposition method: a novel fabrication method for ionic polymer metallic composites , 2008, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[2] Guo-Hua Feng,et al. Fabrication and Characterization of a Micromachined Swirl-Shaped Ionic Polymer Metal Composite Actuator with Electrodes Exhibiting Asymmetric Resistance , 2014, Sensors.
[3] Woosoon Yim,et al. Corrigendum: A cylindrical ionic polymer-metal composite-based robotic catheter platform: modeling, design and control (2015 Smart Mater. Struct. 24 015007) , 2015 .
[4] Hod Lipson,et al. Multi-Material Freeform Fabrication of Active Systems , 2008 .
[5] K. K. Leang,et al. Integrated Sensing for IPMC Actuators Using Strain Gages for Underwater Applications , 2012, IEEE/ASME Transactions on Mechatronics.
[6] Takuya Umedachi,et al. Highly deformable 3-D printed soft robot generating inching and crawling locomotions with variable friction legs , 2013, 2013 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[7] Kyu-Jin Cho,et al. Design of the shape memory alloy coil spring actuator for the soft deformable wheel robot , 2012, 2012 9th International Conference on Ubiquitous Robots and Ambient Intelligence (URAI).
[8] Robert B. Moore,et al. Barriers to Flow in Semicrystalline Ionomers: A Procedure for Preparing Melt-Processed Perfluorosulfonate Ionomer Films and Membranes , 1992 .
[9] Carl Schubert,et al. Innovations in 3D printing: a 3D overview from optics to organs , 2013, British Journal of Ophthalmology.
[10] I. Oh,et al. A Biomimetic Actuator Based on an Ionic Networking Membrane of Poly(styrene‐alt‐maleimide)‐Incorporated Poly(vinylidene fluoride) , 2008 .
[11] Andreas Gebhardt,et al. Rapid prototyping , 2003 .
[12] Ming-Shaung Ju,et al. Development of sensing/actuating ionic polymer–metal composite (IPMC) for active guide-wire system , 2010 .
[13] K. Leang,et al. Monolithic IPMC Fins for Propulsion and Maneuvering in Bioinspired Underwater Robotics , 2014, IEEE Journal of Oceanic Engineering.
[14] Xiaobo Tan,et al. Modeling of Biomimetic Robotic Fish Propelled by An Ionic Polymer–Metal Composite Caudal Fin , 2010, IEEE/ASME Transactions on Mechatronics.
[15] Sung-Hoon Ahn,et al. Review of manufacturing processes for soft biomimetic robots , 2009 .
[16] Maurizio Porfiri,et al. Free-Locomotion of Underwater Vehicles Actuated by Ionic Polymer Metal Composites , 2010, IEEE/ASME Transactions on Mechatronics.
[17] Matteo Aureli,et al. A physics-based model of the electrical impedance of ionic polymer metal composites , 2012 .
[18] Robert B. Moore,et al. State of understanding of nafion. , 2004, Chemical reviews.
[19] Hod Lipson,et al. Freeform fabrication of ionomeric polymer‐metal composite actuators , 2006, Rapid Prototyping Journal.
[20] Sung-hoon Ahn,et al. A review on IPMC material as actuators and sensors: Fabrications, characteristics and applications , 2012 .
[21] Aiguo Ming,et al. Fundamental analysis for design and control of soft fish robots using piezoelectric fiber composite , 2013, 2013 IEEE International Conference on Mechatronics and Automation.
[22] Rashi Tiwari,et al. The state of understanding of ionic polymer metal composite architecture: a review , 2011 .
[23] Sang Jun Lee,et al. A new fabrication method for IPMC actuators and application to artificial fingers , 2006 .
[24] Dermot Diamond,et al. Biomimetic, low power pumps based on soft actuators , 2007 .
[25] K. Kim,et al. Ionic polymer–metal composites: II. Manufacturing techniques , 2003 .
[26] Guo Shuxiang,et al. A new type of micropump driven by a low electric voltage , 2004 .
[27] Matteo Aureli,et al. On the capacitance-boost of ionic polymer metal composites due to electroless plating: Theory and experiments , 2009 .
[28] Hao Chen,et al. Design and analysis of a soft mobile robot composed of multiple thermally activated joints driven by a single actuator , 2010, 2010 IEEE International Conference on Robotics and Automation.
[29] K. Asaka,et al. Electromechanical behavior of a fully plastic actuator based on dispersed nano-carbon/ionic-liquid-gel electrodes , 2009 .
[30] Kwang J. Kim,et al. Design of IPMC actuator-driven valve-less micropump and its flow rate estimation at low Reynolds numbers , 2006 .
[31] Guo-Hua Feng,et al. A self-strain feedback tuning-fork-shaped ionic polymer metal composite clamping actuator with soft matter elasticity-detecting capability for biomedical applications. , 2014, Materials science & engineering. C, Materials for biological applications.
[32] Simon Hanna,et al. Hydrolysis of the Nafion® precursor studied by X-ray scattering and in-situ atomic force microscopy , 2001 .
[33] James D. Carrico,et al. Slender tube-shaped and square rod-shaped IPMC actuators with integrated sensing for soft mechatronics , 2015 .
[34] Shuxiang Guo,et al. A new type of fish-like underwater microrobot , 2003 .
[35] Nam Seo Goo,et al. Design, fabrication, and experimental characterization of a flap valve IPMC micropump with a flexibly supported diaphragm , 2008 .
[36] Mohsen Shahinpoor,et al. Artificial Muscles: Applications of Advanced Polymeric Nanocomposites , 2007 .
[37] Kinji Asaka,et al. Nanothorn electrodes for ionic polymer-metal composite artificial muscles , 2014, Scientific Reports.
[38] K. Kim,et al. A novel method of manufacturing three-dimensional ionic polymer–metal composites (IPMCs) biomimetic sensors, actuators and artificial muscles , 2002 .
[39] Matteo Aureli,et al. Nonlinear sensing of ionic polymer metal composites , 2013 .
[40] K. Kim,et al. Ionic polymer-metal composites: I. Fundamentals , 2001 .
[41] Chou-Ching K. Lin,et al. A new approach to develop ionic polymer-metal composites (IPMC) actuator: Fabrication and control for active catheter systems , 2007 .
[42] Rhys Jones,et al. RepRap – the replicating rapid prototyper , 2011, Robotica.