This work reports on a soft gripper with three-dimensional (3D) printed soft monolithic fingers that seamlessly incorporate pneumatic touch sensing chambers (pTSCs) for real-time pressure/force control to grasp objects with varying stiffness (i.e., soft, compliant, and rigid objects). The fingers of the soft gripper were 3D printed simultaneously along with the pTSC, without requiring support materials, using an inexpensive fused deposition modeling 3D printer. The pTSCs embedded in the fingers have numerous advantages, including fast response, repeatability, reliability, negligible hysteresis, stability over time, durability, and very low power consumption. Finite element modeling is used to predict the behavior of the pTSCs under differen...
Grippers made from soft elastomers are able to passively and gently adapt to their targets allowing ...
One of the most valuable contributions robotics can offer is support to daily human activities, yet ...
© 2020 IEEE. Soft robots require robust soft and flexible sensors that can undergo large deformation...
This article presents a directly 3-D printed soft monolithic robotic finger with embedded soft pneum...
Grippers have existed for a long time and have contributed to the development of automation. Soft gr...
IEEE This paper presents a directly 3D printed soft monolithic robotic finger with embedded soft pne...
A single universal robotic gripper with the capacity to fulfill a wide variety of gripping and grasp...
Soft robotics has recently gained a significant momentum as a newly emerging field in robotics that ...
Soft robotic grippers are required for power grasping of objects without inducing damage. Additive m...
This project presents a robotic gripper with soft compliant fingers that is capable of simple graspi...
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 ...
This paper presents the design, improvement, fabrication and application of a novel 3D printed pneum...
This paper presents the design, improvement, fabrication and application of a novel 3D printed pneum...
This paper presents the design, improvement, fabrication and application of a novel 3D printed pneum...
Grippers made from soft elastomers are able to passively and gently adapt to their targets allowing ...
One of the most valuable contributions robotics can offer is support to daily human activities, yet ...
© 2020 IEEE. Soft robots require robust soft and flexible sensors that can undergo large deformation...
This article presents a directly 3-D printed soft monolithic robotic finger with embedded soft pneum...
Grippers have existed for a long time and have contributed to the development of automation. Soft gr...
IEEE This paper presents a directly 3D printed soft monolithic robotic finger with embedded soft pne...
A single universal robotic gripper with the capacity to fulfill a wide variety of gripping and grasp...
Soft robotics has recently gained a significant momentum as a newly emerging field in robotics that ...
Soft robotic grippers are required for power grasping of objects without inducing damage. Additive m...
This project presents a robotic gripper with soft compliant fingers that is capable of simple graspi...
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 ...
This paper presents the design, improvement, fabrication and application of a novel 3D printed pneum...
This paper presents the design, improvement, fabrication and application of a novel 3D printed pneum...
This paper presents the design, improvement, fabrication and application of a novel 3D printed pneum...
Grippers made from soft elastomers are able to passively and gently adapt to their targets allowing ...
One of the most valuable contributions robotics can offer is support to daily human activities, yet ...
© 2020 IEEE. Soft robots require robust soft and flexible sensors that can undergo large deformation...