A single universal robotic gripper with the capacity to fulfill a wide variety of gripping and grasping tasks has always been desirable. A three-dimensional (3D) printed modular soft gripper with highly conformal soft fingers that are composed of positive pressure soft pneumatic actuators along with a mechanical metamaterial was developed. The fingers of the soft gripper along with the mechanical metamaterial, which integrates a soft auxetic structure and compliant ribs, was 3D printed in a single step, without requiring support material and postprocessing, using a low-cost and open-source fused deposition modeling (FDM) 3D printer that employs a commercially available thermoplastic poly (urethane) (TPU). The soft fingers of the gripper wer...
Advances in soft robotics and material science have enabled rapid progress in soft grippers. The abi...
Advances in soft robotics and material science have enabled rapid progress in soft grippers. The abi...
Advances in soft robotics and material science have enabled rapid progress in soft grippers. The abi...
© 2020 IEEE. In this work, a 3D printed modular soft gripper with highly conformal soft fingers was ...
The recent advances in material science and engineering disciplines have had a significant impact on...
Soft robotic grippers are required for power grasping of objects without inducing damage. Additive m...
Soft materials have been incorporated in the design of robotic systems particularly as a damper, cov...
In the field of 3D printing, soft robotics have made remarkable progress, yet certain applications f...
Soft robotics has recently gained a significant momentum as a newly emerging field in robotics that ...
Grippers with shape conformance and tunable rigidity are often achieved using a combination of soft ...
Grippers have existed for a long time and have contributed to the development of automation. Soft gr...
This project presents a robotic gripper with soft compliant fingers that is capable of simple graspi...
This work reports on a soft gripper with three-dimensional (3D) printed soft monolithic fingers that...
This project presents a robotic gripper with soft compliant fingers that is capable of simple graspi...
Unlike traditional hard grippers, soft robotic grippers are commonly made of soft materials so that ...
Advances in soft robotics and material science have enabled rapid progress in soft grippers. The abi...
Advances in soft robotics and material science have enabled rapid progress in soft grippers. The abi...
Advances in soft robotics and material science have enabled rapid progress in soft grippers. The abi...
© 2020 IEEE. In this work, a 3D printed modular soft gripper with highly conformal soft fingers was ...
The recent advances in material science and engineering disciplines have had a significant impact on...
Soft robotic grippers are required for power grasping of objects without inducing damage. Additive m...
Soft materials have been incorporated in the design of robotic systems particularly as a damper, cov...
In the field of 3D printing, soft robotics have made remarkable progress, yet certain applications f...
Soft robotics has recently gained a significant momentum as a newly emerging field in robotics that ...
Grippers with shape conformance and tunable rigidity are often achieved using a combination of soft ...
Grippers have existed for a long time and have contributed to the development of automation. Soft gr...
This project presents a robotic gripper with soft compliant fingers that is capable of simple graspi...
This work reports on a soft gripper with three-dimensional (3D) printed soft monolithic fingers that...
This project presents a robotic gripper with soft compliant fingers that is capable of simple graspi...
Unlike traditional hard grippers, soft robotic grippers are commonly made of soft materials so that ...
Advances in soft robotics and material science have enabled rapid progress in soft grippers. The abi...
Advances in soft robotics and material science have enabled rapid progress in soft grippers. The abi...
Advances in soft robotics and material science have enabled rapid progress in soft grippers. The abi...