In order to make EAP actuators technology scalable a design methodology for polymer actuators is required. Design variables, optimization formulas and a general architecture are required as it is usual in electromagnetic or hydraulic actuators design. This will allow the development of large EAP actuators from micro-actuator units, specifically designed for a particular application. It will also help to enhance the EAP material final performance. This approach is not new, since it is found in Nature. Skeletal muscle architecture has a profound influence on muscle force-generating properties and functionality. Based on existing literature on skeletal muscle biomechanics, the Nature design philosophy is inferred. Formulas and curves employed ...
Hyper-redundant, flexible robotic arms inspired by muscular hydrostats perform well in tightly-const...
Human-like robots are increasingly becoming an engineering reality thanks to recent technology advan...
Purpose: The accurate selection of materials and the fine tuning of their properties represent a fun...
In order to make EAP actuators technology scalable a design methodology for polymer actuators is req...
Electro Active Polymers (EAPs) are the group of polymeric materials which are also known as the Arti...
Tendon driven actuators are getting mature in electroactive polymer (EAP) researches. Research and d...
For many years, electroactive polymers (EAP) received relatively little attention due to the small n...
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...
Ras Labs produces contractile electroactive polymer (EAP) based materials and actuators that bend, s...
Electroactive polymers are a polymer that demonstrate a change in the size or shape when roused by a...
Creating an artificial muscle has been one of the grand challenges of science and engineering. The i...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
Electroactive polymers (EAPs) consist of synthetic materials capable of changing dimensions and/or s...
Advancements in software engineering have enabled the robotics industry to transition from the use o...
Hyper-redundant, flexible robotic arms inspired by muscular hydrostats perform well in tightly-const...
Human-like robots are increasingly becoming an engineering reality thanks to recent technology advan...
Purpose: The accurate selection of materials and the fine tuning of their properties represent a fun...
In order to make EAP actuators technology scalable a design methodology for polymer actuators is req...
Electro Active Polymers (EAPs) are the group of polymeric materials which are also known as the Arti...
Tendon driven actuators are getting mature in electroactive polymer (EAP) researches. Research and d...
For many years, electroactive polymers (EAP) received relatively little attention due to the small n...
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...
Ras Labs produces contractile electroactive polymer (EAP) based materials and actuators that bend, s...
Electroactive polymers are a polymer that demonstrate a change in the size or shape when roused by a...
Creating an artificial muscle has been one of the grand challenges of science and engineering. The i...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
Electroactive polymers (EAPs) consist of synthetic materials capable of changing dimensions and/or s...
Advancements in software engineering have enabled the robotics industry to transition from the use o...
Hyper-redundant, flexible robotic arms inspired by muscular hydrostats perform well in tightly-const...
Human-like robots are increasingly becoming an engineering reality thanks to recent technology advan...
Purpose: The accurate selection of materials and the fine tuning of their properties represent a fun...