研究業績リスト
ジャーナル論文 - rm_published_papers: Scientific Journal
公開済 28/10/2025
Advanced Science, accepted
ジャーナル論文 - rm_published_papers: Scientific Journal
公開済 23/10/2025
Advanced Robotics Research, accepted
ジャーナル論文 - rm_published_papers: International Conference Proceedings
Soft electrohydraulic actuators with intrinsic electroadhesion
公開済 22/10/2025
IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS)
ジャーナル論文 - rm_published_papers: International Conference Proceedings
Soft actuators with integrated electrohydrodynamic pump and intrinsic electroadhesion
公開済 21/10/2025
IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS)
ジャーナル論文 - rm_published_papers: International Conference Proceedings
Electroadhesive electrohydraulic soft actuators
公開済 18/03/2025
Electroactive Polymer Actuators, Sensors, and Devices (EAPAD) XXVII, 13431-12
ジャーナル論文 - rm_published_papers: Scientific Journal
Electrically Driven, Bioluminescent Compliant Devices for Soft Robotics
公開済 10/02/2025
ACS Applied Materials & Interfaces
ジャーナル論文 - rm_published_papers: Scientific Journal
Plant Mobile Robot Using Mimosa pudica
公開済 18/11/2024
IEEE Robotics and Automation Letters, 1 - 8
ジャーナル論文 - rm_published_papers: Scientific Journal
3D Printed Biodegradable Soft Actuators from Nanocellulose Reinforced Gelatin Composites
公開済 14/11/2024
Advanced Sustainable Systems
Abstract
Eco‐friendly materials are increasingly important for several applications due to growing environmental concerns, including in robotics and medicine. Within robotics, silicone‐based soft grippers are recently developed owing to their high adaptability and versatility allowing to deal with various objects. However, the soft grippers are difficult to recycle and may cause increased environmental impact. Here biodegradable soft pneumatic actuators reinforced by cellulose nanofibrils (CNF) distributed in a matrix of gelatin are presented. The results show that adding CNF enables 3D printability and provides tunable mechanical properties for the actuators. The actuator performance, with a bending angle of 80° and a blocked force of 0.1 N at 15 kPa, is comparable to state‐of‐the‐art mold‐casted pneumatic actuators from conventional silicone materials while being exclusively composed of non‐toxic, biodegradable materials and fabricated by additive manufacturing techniques. Moreover, the actuators exhibit self‐healing ability and enable object manipulation when formed in a gripper configuration. The mold‐free approach and achieved functionalities establish new opportunities for soft‐robotics, across various fields including healthcare, packaging, or even environmental monitoring. The performance of the gripper shows that CNF can be used in the creation of eco‐friendly high‐performance soft robots and contribute to the advancement of sustainable and green robotics.
ジャーナル論文 - rm_published_papers: Scientific Journal
Biodegradable Dielectric Elastomer Actuators and Sensors
公開済 13/11/2024
IEEE Robotics and Automation Letters, 1 - 8
ジャーナル論文 - rm_published_papers: Scientific Journal
Agile robotic fish based on direct drive of continuum body
公開済 22/10/2024
npj Robotics, 2, 1