We present an automated test setup for the systematic performance and lifetime evaluation of dielectric elastomer actuators (DEAs). This setup, called the MAPLE setup, performs accelerated aging tests and allows quantifying how material choice, fabrication methods, voltage waveform, and environmental conditions influence DEA lifetime, an important step for commercial use of DEAs. The setup continuously monitors strain and electrode resistance of multiple DEAs under a wide range of environmental conditions (up to 85 degrees C and 85% relative humidity), with automatic breakdown detection to record device lifetime. To illustrate a use case, we investigate the lifetime of DEAs made of two different elastomer materials, comparing fixed polarity...
Humidity, temperature and membrane prestretch influence the dielectric breakdown strength of elastom...
Dielectric Elastomer Transducers (DETs) represent an emerging technology with great potential for me...
Dielectric Elastomer Actuators (DEAs) show promise for robotics and mechatronics applications. They ...
We present the effect of electric field, temperature, humidity, type of elastomer material, and enca...
Dielectric Elastomer Transducers (DETs) are deformable capacitors that can transform electrical ener...
For dielectric elastomer actuators (DEAs) to find more widespread adoption in commercial products, a...
We present high-cycle aging tests of dielectric elastomer actuators (DEAs) based on silicone elastom...
Dielectric Elastomer Transducers (DETs) are a promising technology for the development of actuators,...
Dielectric Elastomer Transducers (DETs) are solid-state electrostatic devices with variable capacita...
Dielectric elastomers (DE) are used in various applications, such as artificial eye lids, pressure s...
Abstract. Dielectric Elastomer Actuators (DEA) have been studied extensively under laboratory condit...
AbstractDielectric elastomer actuators (DEAs) show promise for robotic and mechatronic applications....
This paper will show a conceptual new material platform for dielectric elastomer actuators (DEA). Th...
Dielectric Elastomer (DE) actuators have been studied extensively under laboratory conditions where ...
Humidity, temperature and membrane prestretch influence the dielectric breakdown strength of elastom...
Dielectric Elastomer Transducers (DETs) represent an emerging technology with great potential for me...
Dielectric Elastomer Actuators (DEAs) show promise for robotics and mechatronics applications. They ...
We present the effect of electric field, temperature, humidity, type of elastomer material, and enca...
Dielectric Elastomer Transducers (DETs) are deformable capacitors that can transform electrical ener...
For dielectric elastomer actuators (DEAs) to find more widespread adoption in commercial products, a...
We present high-cycle aging tests of dielectric elastomer actuators (DEAs) based on silicone elastom...
Dielectric Elastomer Transducers (DETs) are a promising technology for the development of actuators,...
Dielectric Elastomer Transducers (DETs) are solid-state electrostatic devices with variable capacita...
Dielectric elastomers (DE) are used in various applications, such as artificial eye lids, pressure s...
Abstract. Dielectric Elastomer Actuators (DEA) have been studied extensively under laboratory condit...
AbstractDielectric elastomer actuators (DEAs) show promise for robotic and mechatronic applications....
This paper will show a conceptual new material platform for dielectric elastomer actuators (DEA). Th...
Dielectric Elastomer (DE) actuators have been studied extensively under laboratory conditions where ...
Humidity, temperature and membrane prestretch influence the dielectric breakdown strength of elastom...
Dielectric Elastomer Transducers (DETs) represent an emerging technology with great potential for me...
Dielectric Elastomer Actuators (DEAs) show promise for robotics and mechatronics applications. They ...