2019 2nd IEEE International Conference on Soft Robotics (RoboSoft) 2019
DOI: 10.1109/robosoft.2019.8722719
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A Design and Fabrication Approach for Pneumatic Soft Robotic Arms Using 3D Printed Origami Skeletons

Abstract: Soft robots which employ materials with inherent compliance have demonstrated great potential in a variety of applications such as manipulators, medical tools and wearable devices. This paper presents an origami-folding inspired design and fabrication approach for developing semi-soft robotic arms. The approach starts from a conceptual design by identifying foldable origami structures. This is followed by the kinematic modelling of the selected origami skeleton with base folds of thick panels and flexible hing… Show more

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Cited by 26 publications
(17 citation statements)
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“…To derive the kinematic equation of the manipulator used in this research, reference frames, which are used to specify movements of each joint, were attached to the joints (as specified in Fig. 6 ) following the right-hand convention rules [ 38 , 39 ] ( Fig. 11 ).…”
Section: Motion Planning Algorithm: Generating Kinematic Parameters W...mentioning
confidence: 99%
“…To derive the kinematic equation of the manipulator used in this research, reference frames, which are used to specify movements of each joint, were attached to the joints (as specified in Fig. 6 ) following the right-hand convention rules [ 38 , 39 ] ( Fig. 11 ).…”
Section: Motion Planning Algorithm: Generating Kinematic Parameters W...mentioning
confidence: 99%
“…At the manipulator level, several works (Kim et al, 2018;Zhang et al, 2019;Samadikhoshkho et al, 2020;Chien et al, 2021;Peng et al, 2021) have implemented soft/continuum robots for aerial manipulations. In (Kim et al, 2018;Zhang et al, 2019), an origami-folding inspired design and fabrication approach has been proposed for developing semi-soft robotic arms in which materials with inherent compliance were employed. The prototypes provided extensible and foldable arms with pneumatic (Zhang et al, 2019) and electric (Kim et al, 2018) actuation.…”
Section: Brief Literature Survey On Similar Workmentioning
confidence: 99%
“…Considering both mechanical properties and compatibility with other materials, air tight TPU membrane was chosen to fabricate the artificial muscle. The crystallisation temperature of TPU membrane is 156 • C and the melting point is 260 • C [26], so the heating temperature can be set in the range of [156,260] • C for laminating TPU membranes to form a chamber.…”
Section: B Fabrication Of the Artificial Musclementioning
confidence: 99%