Artificial muscles are promising in soft exoskeletons, locomotion robots, and operation machines. However, their performance in contraction ratio, output force, and dynamic response is often imbalanced and limited by materials, structures, or actuation principles. We present lightweight, high–contraction ratio, high–output force, and positive pressure–driven X-crossing pneumatic artificial muscles (X-PAMs). Unlike PAMs, our X-PAMs harness the X-crossing mechanism to directly convert linear motion along the actuator axis, achieving an unprecedented 92.9% contraction ratio and an output force of 207.9 Newtons per kilogram per kilopascal with excellent dynamic properties, such as strain rate (1603.0% per second), specific power (5.7 kilowatts ...
Soft pneumatic actuators (SPAs) are found in mobile robots, assistive wearable devices, and rehabili...
Pneumatic artificial muscles (PAMs) are soft and flexible linear pneumatic actuators which produce h...
The characteristics of pneumatic artificial muscles (PAMs) make them very interesting for the develo...
Artificial muscles are promising in soft exoskeletons, locomotion robots, and operation machines. Ho...
Artificial muscles are promising in soft exoskeletons, locomotion robots, and operation machines. Ho...
We present a high-displacement pneumatic artificial muscle made of textiles or plastics that can inc...
This paper presents a novel pneumatic artificial muscle (PAM) that is able to generate a high payloa...
Developing robotic systems which can operate in complex, human centred environments is a major chall...
Pneumatic Artificial Muscles, which are lightweight actuators with inherently compliant behavior, ar...
This dissertation focuses on advancing the state of the art in soft robotics using pneumatic artific...
This article presents the design of a novel Extensor-Contractor Pneumatic Artificial Muscle (ECPAM)....
This article presents the design of a novel Extensor-Contractor Pneumatic Artificial Muscle (ECPAM)....
This article presents the design of a novel Extensor-Contractor Pneumatic Artificial Muscle (ECPAM)....
This article presents the design of a novel Extensor-Contractor Pneumatic Artificial Muscle (ECPAM)....
Pneumatic artificial muscles (PAMs) are one of the key technologies in soft robotics, and they enabl...
Soft pneumatic actuators (SPAs) are found in mobile robots, assistive wearable devices, and rehabili...
Pneumatic artificial muscles (PAMs) are soft and flexible linear pneumatic actuators which produce h...
The characteristics of pneumatic artificial muscles (PAMs) make them very interesting for the develo...
Artificial muscles are promising in soft exoskeletons, locomotion robots, and operation machines. Ho...
Artificial muscles are promising in soft exoskeletons, locomotion robots, and operation machines. Ho...
We present a high-displacement pneumatic artificial muscle made of textiles or plastics that can inc...
This paper presents a novel pneumatic artificial muscle (PAM) that is able to generate a high payloa...
Developing robotic systems which can operate in complex, human centred environments is a major chall...
Pneumatic Artificial Muscles, which are lightweight actuators with inherently compliant behavior, ar...
This dissertation focuses on advancing the state of the art in soft robotics using pneumatic artific...
This article presents the design of a novel Extensor-Contractor Pneumatic Artificial Muscle (ECPAM)....
This article presents the design of a novel Extensor-Contractor Pneumatic Artificial Muscle (ECPAM)....
This article presents the design of a novel Extensor-Contractor Pneumatic Artificial Muscle (ECPAM)....
This article presents the design of a novel Extensor-Contractor Pneumatic Artificial Muscle (ECPAM)....
Pneumatic artificial muscles (PAMs) are one of the key technologies in soft robotics, and they enabl...
Soft pneumatic actuators (SPAs) are found in mobile robots, assistive wearable devices, and rehabili...
Pneumatic artificial muscles (PAMs) are soft and flexible linear pneumatic actuators which produce h...
The characteristics of pneumatic artificial muscles (PAMs) make them very interesting for the develo...