In recent years, dielectric elastomer actuators (DEAs) have attracted lots of attention for providing multiple degree-of-freedom motions, such as axial extensions, torsion, bending, and their combinations. The wide applications include soft robots, artificial muscles, and biomimetic animals. In general, DEAs are composed of stretchable elastomers sandwiched by two compliant electrodes and actuated by applying external electric stimuli. Since most DEAs are limited by the breakdown thresholds and low strain-to-volume ratios, dielectric fluid transducers (DFTs) have been developed by substituting dielectric elastomers with dielectric fluids for high breakdown threshold voltages. In addition, DFTs have large rate of lateral extensions, due to t...
Soft actuators have received extensive attention in the fields of soft robotics, biomedicine, and in...
Due to their continuous and natural motion, fluidic elastomer actuators (FEAs) have shown potential ...
Inspired from nature, soft robots capable of actively tuning their mechanical rigidity can rapidly t...
This paper presents a bio-inspired, dielectric elastomer (DE) based tubular pumping unit, developed ...
Dielectric elastomer actuators (DEAs) offer robust, high-energy-density solutions for soft robotics....
In bioinspired soft robotics, very few studies have focused on fluidic transmissions and there is an...
Dielectric elastomers have demonstrated tremendous potential as high-strain electromechanical transd...
With a view to confirm that dielectric elastomer actuators (DEAs) are one the promising enabling act...
Fluidic elastomer actuators have become ubiquitous in soft robotics as they can be used to create in...
Over the past couple of years, the field of soft robotics has seen tremendous expansion. As humans a...
In the past few decades, interest in novel soft actuators that can mimic the compliant nature of bio...
Soft pneumatic actuators possess attributes of large deformation, high driving force and light weigh...
Dielectric elastomer actuators (DEAs) have been widely investigated for more than 30 years. Lately, ...
Advancements in software engineering have enabled the robotics industry to transition from the use o...
Creating an artificial muscle has been one of the grand challenges of science and engineering. The i...
Soft actuators have received extensive attention in the fields of soft robotics, biomedicine, and in...
Due to their continuous and natural motion, fluidic elastomer actuators (FEAs) have shown potential ...
Inspired from nature, soft robots capable of actively tuning their mechanical rigidity can rapidly t...
This paper presents a bio-inspired, dielectric elastomer (DE) based tubular pumping unit, developed ...
Dielectric elastomer actuators (DEAs) offer robust, high-energy-density solutions for soft robotics....
In bioinspired soft robotics, very few studies have focused on fluidic transmissions and there is an...
Dielectric elastomers have demonstrated tremendous potential as high-strain electromechanical transd...
With a view to confirm that dielectric elastomer actuators (DEAs) are one the promising enabling act...
Fluidic elastomer actuators have become ubiquitous in soft robotics as they can be used to create in...
Over the past couple of years, the field of soft robotics has seen tremendous expansion. As humans a...
In the past few decades, interest in novel soft actuators that can mimic the compliant nature of bio...
Soft pneumatic actuators possess attributes of large deformation, high driving force and light weigh...
Dielectric elastomer actuators (DEAs) have been widely investigated for more than 30 years. Lately, ...
Advancements in software engineering have enabled the robotics industry to transition from the use o...
Creating an artificial muscle has been one of the grand challenges of science and engineering. The i...
Soft actuators have received extensive attention in the fields of soft robotics, biomedicine, and in...
Due to their continuous and natural motion, fluidic elastomer actuators (FEAs) have shown potential ...
Inspired from nature, soft robots capable of actively tuning their mechanical rigidity can rapidly t...