Electroactive polymer(EAP) is a “smart material” with high energy density, high electromechanical energy conversion efficiency, simple structure, good adaptability to the working environment, etc. It can be made into various shapes to realize flexible drivers. At present, the common EAP actuator is mainly composed of EAP film wound on a spring, and the output performance of this type of actuator is related to the spring stiffness, film prestretching rate, voltage, and other factors. Its working process is actually an electromechanical coupling process. In this paper, two types of cylindrical actuators are designed and tested. The electromechanical coupling mathematical model is constructed to simulate the driver. According to the experiment...
Miniature, lightweight, low-cost actuators that consume low-power can be used to develop unmatched r...
At present advanced robotics concepts require new and more suitable components to be exploited, espe...
A biaxial pre-stretching of an elastomer film providing a negative load is an effective method in en...
In order to make EAP actuators technology scalable a design methodology for polymer actuators is req...
The goal of this PhD thesis is to build a shell-like actuator based on dielectric elastomers (DE), w...
Electroactive polymer (EAP) materials are a novel soft electromechanical device that exploits the in...
AbstractSmart materials are used in many critical actuation systems for different applications and a...
Electroactive polymers (EAP) are attractive actuation materials because of their large deformation, ...
Electroactive polymers (EAPs) are an advanced family of polymers that change their shape through ele...
Mechatronic applications require actuation devices that are inexpensive, lightweight, compact and si...
Miniature, lightweight, miser actuators that operate similar to biological muscles can be used to de...
AbstractDue to the large strain capability, electroactive polymers (EAPs) are promising materials fo...
AbstractThe mechanical response of a widely used electro-active polymer (EAP) material, and the sens...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
Electro Active Polymers (EAPs) are the group of polymeric materials which are also known as the Arti...
Miniature, lightweight, low-cost actuators that consume low-power can be used to develop unmatched r...
At present advanced robotics concepts require new and more suitable components to be exploited, espe...
A biaxial pre-stretching of an elastomer film providing a negative load is an effective method in en...
In order to make EAP actuators technology scalable a design methodology for polymer actuators is req...
The goal of this PhD thesis is to build a shell-like actuator based on dielectric elastomers (DE), w...
Electroactive polymer (EAP) materials are a novel soft electromechanical device that exploits the in...
AbstractSmart materials are used in many critical actuation systems for different applications and a...
Electroactive polymers (EAP) are attractive actuation materials because of their large deformation, ...
Electroactive polymers (EAPs) are an advanced family of polymers that change their shape through ele...
Mechatronic applications require actuation devices that are inexpensive, lightweight, compact and si...
Miniature, lightweight, miser actuators that operate similar to biological muscles can be used to de...
AbstractDue to the large strain capability, electroactive polymers (EAPs) are promising materials fo...
AbstractThe mechanical response of a widely used electro-active polymer (EAP) material, and the sens...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
Electro Active Polymers (EAPs) are the group of polymeric materials which are also known as the Arti...
Miniature, lightweight, low-cost actuators that consume low-power can be used to develop unmatched r...
At present advanced robotics concepts require new and more suitable components to be exploited, espe...
A biaxial pre-stretching of an elastomer film providing a negative load is an effective method in en...