A miniature robotic device that can fold-up on the spot, accomplish tasks, and disappear by degradation into the environment promises a range of medical applications but has so far been a challenge in engineering. This work presents a sheet that can self-fold into a functional 3D robot, actuate immediately for untethered walking and swimming, and subsequently dissolve in liquid. The developed sheet weighs 0.31g, spans 1.7cm square in size, features a cubic neodymium magnet, and can be thermally activated to self-fold. Since the robot has asymmetric body balance along the sagittal axis, the robot can walk at a speed of 3.8 body-length/s being remotely controlled by an alternating external magnetic field. We further show that the robot is cap...
Underwater swimmers present unique opportunities for using bodily reconfiguration for self propulsio...
Self-folding is universal in nature. The concept of self-folding has attracted interests from standp...
Abstract — Programmable matter is a material that produces distinctive shapes or patterns according ...
Changing the inherent physical capabilities of robots by metamorphosis has been a long-standing goal...
Changing the inherent physical capabilities of robots by metamorphosis has been a long-standing goal...
Changing the inherent physical capabilities of robots by metamorphosis has been a long-standing goal...
Origami can turn a sheet of paper into complex three-dimensional shapes, and similar folding techniq...
Locomotive robots that do not rely on electronics and/or electromagnetic components will open up new...
Developing miniature robots that can carry out versatile clinical procedures inside the body under t...
This paper presents an end-to-end approach to automate the design and fabrication process for self-f...
This paper presents an end-to-end approach to automate the design and fabrication process for self-f...
Self-folding origami is of great interest in current research on functional materials and structures...
Abstract — Self-assembling robots can be transported and deployed inexpensively and autonomously in ...
© 2016 IEEE.Developing miniature robots that can carry out versatile clinical procedures inside the ...
Abstract Origami enables the folding of objects into a variety of shapes. This paper presents a swim...
Underwater swimmers present unique opportunities for using bodily reconfiguration for self propulsio...
Self-folding is universal in nature. The concept of self-folding has attracted interests from standp...
Abstract — Programmable matter is a material that produces distinctive shapes or patterns according ...
Changing the inherent physical capabilities of robots by metamorphosis has been a long-standing goal...
Changing the inherent physical capabilities of robots by metamorphosis has been a long-standing goal...
Changing the inherent physical capabilities of robots by metamorphosis has been a long-standing goal...
Origami can turn a sheet of paper into complex three-dimensional shapes, and similar folding techniq...
Locomotive robots that do not rely on electronics and/or electromagnetic components will open up new...
Developing miniature robots that can carry out versatile clinical procedures inside the body under t...
This paper presents an end-to-end approach to automate the design and fabrication process for self-f...
This paper presents an end-to-end approach to automate the design and fabrication process for self-f...
Self-folding origami is of great interest in current research on functional materials and structures...
Abstract — Self-assembling robots can be transported and deployed inexpensively and autonomously in ...
© 2016 IEEE.Developing miniature robots that can carry out versatile clinical procedures inside the ...
Abstract Origami enables the folding of objects into a variety of shapes. This paper presents a swim...
Underwater swimmers present unique opportunities for using bodily reconfiguration for self propulsio...
Self-folding is universal in nature. The concept of self-folding has attracted interests from standp...
Abstract — Programmable matter is a material that produces distinctive shapes or patterns according ...