Purpose: The accurate selection of materials and the fine tuning of their properties represent a fundamental aspect in the realization of new active systems able to produce actuating forces, such as artificial muscles. In this regard, exciting opportunities for the design of new advanced systems are offered by materials belonging to the emerging class of functional polymers: exploiting their actuation response, specific devices can be realized. Along this direction, materials showing either shape-memory effect (SME) or shape-change effect (SCE) have been the subject of extensive studies aimed at designing of actuators as artificial muscles. Here, we concisely review active polymers in terms of properties and main applications in artificial ...
Artificial muscles are the core components of the smart and interactive soft robotic systems, provid...
New actuation technology in functional or "smart" materials has opened new horizons in robotics actu...
Shape Memory Polymers (SMPs) are a class of smart materials, capable of significant shape variations...
Purpose: The accurate selection of materials and the fine tuning of their properties represent a fun...
Purpose: The accurate selection of materials and the fine tuning of their properties represent a fun...
Purpose: The accurate selection of materials and the fine tuning of their properties represent a fun...
Evolution has resolved many of nature's challenges leading to working and lasting solutions that emp...
For many years, electroactive polymers (EAP) received relatively little attention due to the small n...
Creating an artificial muscle has been one of the grand challenges of science and engineering. The i...
Polymer smart materials are a broad class of polymeric materials that can change their shapes, mecha...
For many years, electroactive polymers (EAP) received relatively little attention due to the small n...
For many years, electroactive polymers (EAP) received relatively little attention due to the small n...
This report is an examination of smart materials for their use in prosthetic arms. A literature revi...
Throughout the evolution of human technologies, electronic-based actuators have been unreplaceable. ...
Throughout the evolution of human technologies, electronic-based actuators have been unreplaceable. ...
Artificial muscles are the core components of the smart and interactive soft robotic systems, provid...
New actuation technology in functional or "smart" materials has opened new horizons in robotics actu...
Shape Memory Polymers (SMPs) are a class of smart materials, capable of significant shape variations...
Purpose: The accurate selection of materials and the fine tuning of their properties represent a fun...
Purpose: The accurate selection of materials and the fine tuning of their properties represent a fun...
Purpose: The accurate selection of materials and the fine tuning of their properties represent a fun...
Evolution has resolved many of nature's challenges leading to working and lasting solutions that emp...
For many years, electroactive polymers (EAP) received relatively little attention due to the small n...
Creating an artificial muscle has been one of the grand challenges of science and engineering. The i...
Polymer smart materials are a broad class of polymeric materials that can change their shapes, mecha...
For many years, electroactive polymers (EAP) received relatively little attention due to the small n...
For many years, electroactive polymers (EAP) received relatively little attention due to the small n...
This report is an examination of smart materials for their use in prosthetic arms. A literature revi...
Throughout the evolution of human technologies, electronic-based actuators have been unreplaceable. ...
Throughout the evolution of human technologies, electronic-based actuators have been unreplaceable. ...
Artificial muscles are the core components of the smart and interactive soft robotic systems, provid...
New actuation technology in functional or "smart" materials has opened new horizons in robotics actu...
Shape Memory Polymers (SMPs) are a class of smart materials, capable of significant shape variations...