We present a high-displacement pneumatic artificial muscle made of textiles or plastics that can include integrated electronics to sense its pressure and displacement. Compared to traditional pneumatic muscle actuators such as the McKibben actuator and other more recent soft actuators, the actuator described in this paper can produce a much higher (40~65%) contraction ratio. In this paper, we describe the design, fabrication, and evaluation of the actuator, as well as the manufacturing process used to create it. We demonstrate the actuator design with several examples that produce 120 and 300 N at pressures of 35 and 105 kPa, respectively, and have contraction ratios of 40–65%
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...
Animals exploit soft structures to move smoothly and effectively in complex natural environments. Th...
This paper presents a novel pneumatic artificial muscle (PAM) that is able to generate a high payloa...
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)....
Developing robotic systems which can operate in complex, human centred environments is a major chall...
Pneumatic artificial muscles (PAMs) are soft and flexible linear pneumatic actuators which produce h...
To clarify the advantages of using soft robots in all aspects of life, the effective behaviour of th...
To clarify the advantages of using soft robots in all aspects of life, the effective behaviour of th...
This dissertation focuses on advancing the state of the art in soft robotics using pneumatic artific...
<p>In recent years, soft materials have seen increased prevalence in the design of robotic systems a...
In recent years, soft materials have seen increased prevalence in the design of robotic systems and ...
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...
Animals exploit soft structures to move smoothly and effectively in complex natural environments. Th...
This paper presents a novel pneumatic artificial muscle (PAM) that is able to generate a high payloa...
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)....
Developing robotic systems which can operate in complex, human centred environments is a major chall...
Pneumatic artificial muscles (PAMs) are soft and flexible linear pneumatic actuators which produce h...
To clarify the advantages of using soft robots in all aspects of life, the effective behaviour of th...
To clarify the advantages of using soft robots in all aspects of life, the effective behaviour of th...
This dissertation focuses on advancing the state of the art in soft robotics using pneumatic artific...
<p>In recent years, soft materials have seen increased prevalence in the design of robotic systems a...
In recent years, soft materials have seen increased prevalence in the design of robotic systems and ...
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...
Animals exploit soft structures to move smoothly and effectively in complex natural environments. Th...