Creating an artificial muscle has been one of the grand challenges of science and engineering. The invention of such a flexible, versatile, and power efficient actuator opens the gate for a new generation of lightweight, highly efficient, and multifunctional robotics. Many current artificial muscle technologies enable low-power mobile actuators, robots that mimic efficient and natural forms of motion, autonomous robots and sensors, and lightweight wearable technologies. They also have serious applications in biomedical devices, where biocompatibility, from a chemical, flexibility, and force perspective, is crucial. It remains unknown which material will ultimately form the ideal artificial muscle. Anything from shape memory alloys (SMAs) to...
ABSTRACT: The author has been studying the electrical actuation of non-ionic dielectric polymeric ma...
A soft robotic actuator using dielectric minimum energy structures Soft robotics is an exciting fiel...
The need for light, high-strength, and artificial muscles is growing rapidly. A well-known type of a...
The lack of soft high-dielectric-permittivity elastomers responsive to a low voltage has been a long...
Advancements in software engineering have enabled the robotics industry to transition from the use o...
Advancements in software engineering have enabled the robotics industry to transition from the use o...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
Over the past couple of years, the field of soft robotics has seen tremendous expansion. As humans a...
This book describes one of the most promising classes of polymer-based smart materials and technolog...
Ryan Z. Amick1, Zheng Chen2, Kim Cluff3, Ramazan Asmatulu4, Jeremy A. Patterson, FACSM1 1Dept. of Hu...
Artificial muscles are the core components of the smart and interactive soft robotic systems, provid...
Electroactive polymers (EAPs) consist of synthetic materials capable of changing dimensions and/or s...
This paper appraisals state-of-the-art dielectric elastomer actuators (DEAs) and their forth coming ...
Evolution has resolved many of nature's challenges leading to working and lasting solutions that emp...
Due to the inherent rigidity of hard materials, the adaptability and flexibility of traditional robo...
ABSTRACT: The author has been studying the electrical actuation of non-ionic dielectric polymeric ma...
A soft robotic actuator using dielectric minimum energy structures Soft robotics is an exciting fiel...
The need for light, high-strength, and artificial muscles is growing rapidly. A well-known type of a...
The lack of soft high-dielectric-permittivity elastomers responsive to a low voltage has been a long...
Advancements in software engineering have enabled the robotics industry to transition from the use o...
Advancements in software engineering have enabled the robotics industry to transition from the use o...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
Over the past couple of years, the field of soft robotics has seen tremendous expansion. As humans a...
This book describes one of the most promising classes of polymer-based smart materials and technolog...
Ryan Z. Amick1, Zheng Chen2, Kim Cluff3, Ramazan Asmatulu4, Jeremy A. Patterson, FACSM1 1Dept. of Hu...
Artificial muscles are the core components of the smart and interactive soft robotic systems, provid...
Electroactive polymers (EAPs) consist of synthetic materials capable of changing dimensions and/or s...
This paper appraisals state-of-the-art dielectric elastomer actuators (DEAs) and their forth coming ...
Evolution has resolved many of nature's challenges leading to working and lasting solutions that emp...
Due to the inherent rigidity of hard materials, the adaptability and flexibility of traditional robo...
ABSTRACT: The author has been studying the electrical actuation of non-ionic dielectric polymeric ma...
A soft robotic actuator using dielectric minimum energy structures Soft robotics is an exciting fiel...
The need for light, high-strength, and artificial muscles is growing rapidly. A well-known type of a...