The following is a study of the performance of soft cable-driven polymer actuators produced by multimaterial 3D printing. We demonstrate that the mechanical response of the polymer actuator with an embedded cable can be flexibly tuned through the targeted selection of actuator architecture. Various strategies, such as the addition of discrete or periodic stiff inserts, the sectioning of the actuator, or the shifting of the cable channel are employed to demonstrate ways to achieve more controllable deformed shape during weight lifting or reduce the required actuation force. To illustrate these concepts, we design and manufacture a prototype of the soft polymer gripper, which is capable of manipulating small, delicate objects. The explored st...
We present a new approach to the fabrication of soft dielectric elastomer actuators using a 3D print...
Closed-loop control systems and monitoring the activities of soft robots in the natural environment ...
This work reports on a soft gripper with three-dimensional (3D) printed soft monolithic fingers that...
The following is a study of the performance of soft cable-driven polymer actuators produced by multi...
Soft actuators have been receiving tremendous attention as a result of their excellent adaptability ...
Unlike traditional hard grippers, soft robotic grippers are commonly made of soft materials so that ...
Inspired from nature, soft robots capable of actively tuning their mechanical rigidity can rapidly t...
This article presents a direct additive manufacturing method for composite material soft pneumatic a...
Smart polymeric and gel actuators change shape or size in response to stimuli like electricity, heat...
A new type of soft actuator was developed by using hydrogel materials and three-dimensional (3D) pri...
A new type of soft actuator was developed by using hydrogel materials and three-dimensional (3D) pri...
The field of soft robotics has emerged as a viable complement to conventional industrial robotics. S...
Soft actuation allows robots to interact safely with humans, other machines, and their surroundings....
Conventional robotics have always pursued methods to bring robots near human. Human robot interactio...
In the field of 3D printing, soft robotics have made remarkable progress, yet certain applications f...
We present a new approach to the fabrication of soft dielectric elastomer actuators using a 3D print...
Closed-loop control systems and monitoring the activities of soft robots in the natural environment ...
This work reports on a soft gripper with three-dimensional (3D) printed soft monolithic fingers that...
The following is a study of the performance of soft cable-driven polymer actuators produced by multi...
Soft actuators have been receiving tremendous attention as a result of their excellent adaptability ...
Unlike traditional hard grippers, soft robotic grippers are commonly made of soft materials so that ...
Inspired from nature, soft robots capable of actively tuning their mechanical rigidity can rapidly t...
This article presents a direct additive manufacturing method for composite material soft pneumatic a...
Smart polymeric and gel actuators change shape or size in response to stimuli like electricity, heat...
A new type of soft actuator was developed by using hydrogel materials and three-dimensional (3D) pri...
A new type of soft actuator was developed by using hydrogel materials and three-dimensional (3D) pri...
The field of soft robotics has emerged as a viable complement to conventional industrial robotics. S...
Soft actuation allows robots to interact safely with humans, other machines, and their surroundings....
Conventional robotics have always pursued methods to bring robots near human. Human robot interactio...
In the field of 3D printing, soft robotics have made remarkable progress, yet certain applications f...
We present a new approach to the fabrication of soft dielectric elastomer actuators using a 3D print...
Closed-loop control systems and monitoring the activities of soft robots in the natural environment ...
This work reports on a soft gripper with three-dimensional (3D) printed soft monolithic fingers that...