Javascript must be enabled to continue!
Bending Dielectric Elastomer Actuators
View through CrossRef
Dielectric Elastomer Actuators (DEAs) are a type of electroactive polymers that transform electric energy into mechanical work and are capable of large strains and high energy densities. DEAs are often described as “artificial muscles” because they exhibit strains, energy density, and responsiveness similar to natural human muscles. Their applications as soft robotic grippers, artificial arms, underwater robots, and aerial robots have previously been demonstrated. Single-layer DEAs have a simple design, with a dielectric layer sandwiched between compliant electrodes. However, by alternating positive and negative electrodes, multilayer DEAs can exhibit larger forces and strains than single-layer DEAs. DEAs are actuated by applying voltage and forming an electric field, generating a Maxwell stress between the electrodes. The process of fabricating a multilayer DEA consists of spin coating and curing layers of elastomer, stamping carbon nanotubes (CNT), and making connections to the electrodes. By alternating positive and negative electrodes, multilayer DEAs are constructed, which can exhibit larger forces and strains than single-layer DEAs. When electrically activated, DEAs expand laterally; however, by fabricating a bimorph DEA actuator, we demonstrate bending DEAs. A bimorph DEA consists of a multilayer DEA layer attached to a thicker inactive elastomer layer. When the bimorph is actuated, only the DEA layer expands, causing the actuator to bend. We study the relationship between the bending and stiffness of the inactive layer. By changing the shape of the DEA to a triangle or wing-like shape, we also emulate the high-frequency flapping of birds. Work begun on characterizing the voltage-controlled deflection of bimorph DEAs and understanding the mechanics of the bending of a simple beam in terms of forces at Harvard University will be continued on the Navajo Reservation at Navajo Technical University.
The Electrochemical Society
Title: Bending Dielectric Elastomer Actuators
Description:
Dielectric Elastomer Actuators (DEAs) are a type of electroactive polymers that transform electric energy into mechanical work and are capable of large strains and high energy densities.
DEAs are often described as “artificial muscles” because they exhibit strains, energy density, and responsiveness similar to natural human muscles.
Their applications as soft robotic grippers, artificial arms, underwater robots, and aerial robots have previously been demonstrated.
Single-layer DEAs have a simple design, with a dielectric layer sandwiched between compliant electrodes.
However, by alternating positive and negative electrodes, multilayer DEAs can exhibit larger forces and strains than single-layer DEAs.
DEAs are actuated by applying voltage and forming an electric field, generating a Maxwell stress between the electrodes.
The process of fabricating a multilayer DEA consists of spin coating and curing layers of elastomer, stamping carbon nanotubes (CNT), and making connections to the electrodes.
By alternating positive and negative electrodes, multilayer DEAs are constructed, which can exhibit larger forces and strains than single-layer DEAs.
When electrically activated, DEAs expand laterally; however, by fabricating a bimorph DEA actuator, we demonstrate bending DEAs.
A bimorph DEA consists of a multilayer DEA layer attached to a thicker inactive elastomer layer.
When the bimorph is actuated, only the DEA layer expands, causing the actuator to bend.
We study the relationship between the bending and stiffness of the inactive layer.
By changing the shape of the DEA to a triangle or wing-like shape, we also emulate the high-frequency flapping of birds.
Work begun on characterizing the voltage-controlled deflection of bimorph DEAs and understanding the mechanics of the bending of a simple beam in terms of forces at Harvard University will be continued on the Navajo Reservation at Navajo Technical University.
Related Results
ANALISIS PENGARUH RADIUS BENDING PADA PROSES BENDING MENGGUNAKAN PELAT SPCC-SD TERHADAP PERUBAHAN STRUKTUR MIKRO
ANALISIS PENGARUH RADIUS BENDING PADA PROSES BENDING MENGGUNAKAN PELAT SPCC-SD TERHADAP PERUBAHAN STRUKTUR MIKRO
Paper ini membahas tentang pengaruh radius bending pada kualitas hasil bending dan pengaruhnya terhadap perubahan microstructure. Proses bending merupakan salah satu proses pembent...
An Innovative Simulated Experimental System for Evaluating PCP Elastomer's Dynamic Fatigue Properties
An Innovative Simulated Experimental System for Evaluating PCP Elastomer's Dynamic Fatigue Properties
Abstract
Elastomer is the core component of progressing cavity pump (PCP) which influences the running life of PCP considerably. Conventional elastomer performance t...
Smart Adaptive Structures for an Ocean Wave Energy Converter
Smart Adaptive Structures for an Ocean Wave Energy Converter
Abstract
Ocean wave energy converters face significant challenges including cost-effectiveness, minimizing maintenance requirements, and withstanding extreme conditi...
Ultimate Strength of Tubular Joints Subjected to Combined Loads
Ultimate Strength of Tubular Joints Subjected to Combined Loads
ABSTRACT
Nine tests were conducted on double-tee tubular joints subjected to various combinations of axial load, in-plane bending and out-of-plane bending in the ...
Nonlinear optimal control for robotic exoskeletons with electropneumatic actuators
Nonlinear optimal control for robotic exoskeletons with electropneumatic actuators
Purpose
To provide high torques needed to move a robot’s links, electric actuators are followed by a transmission system with a high transmission rate. For instance, gear ratios of...
Optimization of dielectric elastomer wave power generation systems
Optimization of dielectric elastomer wave power generation systems
Power generation devices using dielectric elastomers have attracted attention as renewable energy devices because they are highly efficient, stackable, easy to install, and inexpen...
Development of Light Weight, Low Cost Pleated Soft Actuators
Development of Light Weight, Low Cost Pleated Soft Actuators
Abstract
Soft pneumatic actuators are a useful type of actuator for compliant structures, including inflatable robots, morphing wings, and assistive devices for astr...
A Review on Dielectric Materials and Composites: Polarisation Effects, Synthesis Methods and Applications
A Review on Dielectric Materials and Composites: Polarisation Effects, Synthesis Methods and Applications
ABSTRACT
Dielectric materials are key elements in modern electronic applications such as sensors, actuators and communication systems. This review consolidates th...

