Design Methodology for Constructing Multimaterial Origami Robots and Machines
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[1] Tomohiro Tachi,et al. Self-Foldability of Rigid Origami , 2016 .
[2] Jamie Kyujin Paik,et al. A Novel Torsional Shape Memory Alloy Actuator: Modeling, Characterization, and Control , 2016, IEEE Robotics & Automation Magazine.
[3] Robert J. Wood,et al. Self-assembling sensors for printable machines , 2014, 2014 IEEE International Conference on Robotics and Automation (ICRA).
[4] Chen Li,et al. Terradynamically streamlined shapes in animals and robots enhance traversability through densely cluttered terrain , 2015, Bioinspiration & biomimetics.
[5] Daniel M. Aukes,et al. Self-folding origami: shape memory composites activated by uniform heating , 2014 .
[6] Robert J. Wood,et al. An analytic framework for developing inherently-manufacturable pop-up laminate devices , 2014 .
[7] Daniel M. Vogt,et al. Embedded 3D Printing of Strain Sensors within Highly Stretchable Elastomers , 2014, Advanced materials.
[8] E. Demaine,et al. Self-folding with shape memory composites† , 2013 .
[9] Daniela Rus,et al. Foldable Joints for Foldable Robots , 2015 .
[10] Robert J. Wood,et al. Printing angle sensors for foldable robots , 2015, 2015 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS).
[11] Ronald S. Fearing,et al. Fast scale prototyping for folded millirobots , 2008, ICRA.
[12] Kyu-Jin Cho,et al. Flea-Inspired Catapult Mechanism for Miniature Jumping Robots , 2012, IEEE Transactions on Robotics.
[13] Robert J. Wood,et al. The First Takeoff of a Biologically Inspired At-Scale Robotic Insect , 2008, IEEE Transactions on Robotics.
[14] Robert J. Wood,et al. Soft curvature sensors for joint angle proprioception , 2011, 2011 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[15] Robert J. Wood,et al. Self-folding and self-actuating robots: A pneumatic approach , 2015, 2015 IEEE International Conference on Robotics and Automation (ICRA).
[16] Neel Doshi,et al. Model driven design for flexure-based Microrobots , 2015, 2015 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS).
[17] Amir Firouzeh,et al. Soft piezoresistive sensor model and characterization with varying design parameters , 2015 .
[18] Robert J. Wood,et al. Robot self-assembly by folding: A printed inchworm robot , 2013, 2013 IEEE International Conference on Robotics and Automation.
[19] Aude Billard,et al. An under actuated robotic arm with adjustable stiffness shape memory polymer joints , 2015, 2015 IEEE International Conference on Robotics and Automation (ICRA).
[20] Amir Firouzeh,et al. A Low Profile Electromagnetic Actuator Design and Model for an Origami Parallel Platform , 2017 .
[21] Cagdas D. Onal,et al. TriBot: A minimally-actuated accessible holonomic hexapedal locomotion platform , 2015, 2015 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS).
[22] Daniela Rus,et al. Edge-Compositions of 3D Surfaces , 2013 .
[23] SunXu,et al. Pouch Motors: Printable Soft Actuators Integrated with Computational Design , 2015 .
[24] Cagdas D. Onal,et al. A lightweight modular 12-DOF print-and-fold hexapod , 2013, 2013 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[25] Daniela Rus,et al. Robotic metamorphosis by origami exoskeletons , 2017, Science Robotics.
[26] R. Wood,et al. A bidirectional shape memory alloy folding actuator , 2012 .
[27] Cagdas D. Onal,et al. Self-pop-up cylindrical structure by global heating , 2013, 2013 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[28] Kyu-Jin Cho,et al. Omega-Shaped Inchworm-Inspired Crawling Robot With Large-Index-and-Pitch (LIP) SMA Spring Actuators , 2013, IEEE/ASME Transactions on Mechatronics.
[29] Shuji Hashimoto,et al. Origami Robot: A Self-Folding Paper Robot With an Electrothermal Actuator Created by Printing , 2016, IEEE/ASME Transactions on Mechatronics.
[30] Robert J. Wood,et al. Stretchable circuits and sensors for robotic origami , 2011, 2011 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[31] Robert J. Wood,et al. A biologically inspired, flapping-wing, hybrid aerial-aquatic microrobot , 2017, Science Robotics.
[32] Rui Peng,et al. Origami of thick panels , 2015, Science.
[33] Robert J. Wood,et al. Microrobot Design Using Fiber Reinforced Composites , 2008 .
[34] Robert J. Wood,et al. Origami-Inspired Printed Robots , 2015, IEEE/ASME Transactions on Mechatronics.
[35] Kyu-Jin Cho,et al. A self-deployable origami structure with locking mechanism induced by buckling effect , 2015, 2015 IEEE International Conference on Robotics and Automation (ICRA).
[36] R. Wood,et al. A novel low-profile shape memory alloy torsional actuator , 2010 .
[37] Jianguo Cai,et al. Mobility and Kinematic Analysis of Foldable Plate Structures Based on Rigid Origami , 2016 .
[38] Robert J. Wood,et al. Robotic Origamis: Self-morphing Modular Robot , 2012 .
[39] Daniel M. Aukes,et al. Self-folding with shape memory composites at the millimeter scale , 2015 .
[40] E. Hawkesa,et al. Programmable matter by folding , 2010 .
[41] Martin L. Dunn,et al. Sequential Self-Folding Structures by 3D Printed Digital Shape Memory Polymers , 2015, Scientific Reports.
[42] C. C. Wang,et al. Shape Memory Materials , 2018 .
[43] Hwan Chul Jeon,et al. Controlled origami folding of hydrogel bilayers with sustained reversibility for robust microcarriers. , 2012, Angewandte Chemie.
[44] Amir Firouzeh,et al. The Design and Modeling of a Novel Resistive Stretch Sensor With Tunable Sensitivity , 2015, IEEE Sensors Journal.
[45] Cagdas D. Onal,et al. Hierarchical Kinematic Design of Foldable Hexapedal Locomotion Platforms , 2016 .
[46] Jamie Kyujin Paik,et al. The design and control of the multi-modal locomotion origami robot, Tribot , 2015, 2015 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS).
[47] Amir Firouzeh,et al. Robogami: A Fully Integrated Low-Profile Robotic Origami , 2015 .
[48] Larry L. Howell,et al. Facilitating Deployable Mechanisms and Structures Via Developable Lamina Emergent Arrays , 2016 .
[49] Samuel M. Felton,et al. A method for building self-folding machines , 2014, Science.
[50] Dimitris C. Lagoudas,et al. Kinematics of Origami Structures with Smooth Folds , 2016 .
[51] Larry L. Howell,et al. Evaluating Compliant Hinge Geometries for Origami-Inspired Mechanisms , 2014 .
[52] Amir Firouzeh,et al. Stiffness Control With Shape Memory Polymer in Underactuated Robotic Origamis , 2017, IEEE Transactions on Robotics.
[53] Cagdas D. Onal,et al. Robot Makers: The Future of Digital Rapid Design and Fabrication of Robots , 2015, IEEE Robotics & Automation Magazine.
[54] Joseph S. B. Mitchell,et al. Folding flat silhouettes and wrapping polyhedral packages: new results in computational origami , 1999, SCG '99.
[55] Daniela Rus,et al. Teleoperated Micromanipulation System Manufactured by Cut-and-Fold Techniques , 2017, IEEE Transactions on Robotics.
[56] R. J. Wood,et al. An Origami-Inspired Approach to Worm Robots , 2013, IEEE/ASME Transactions on Mechatronics.
[57] Byoungkwon An,et al. Designing and programming self-folding sheets , 2014, Robotics Auton. Syst..
[58] G. Whitesides,et al. Elastomeric Origami: Programmable Paper‐Elastomer Composites as Pneumatic Actuators , 2012 .