TY - GEN
T1 - Dielectric Elastomers
T2 - 2021 IEEE Pulsed Power Conference, PPC 2021
AU - Onyenucheya, Barnard
AU - Ashford, Marcus
AU - Zirnheld, Jennifer
AU - Burke, Kevin
N1 - Publisher Copyright:
© 2021 IEEE.
PY - 2021
Y1 - 2021
N2 - Dielectric Elastomers (DE) are soft polymers sandwiched between two electrodes that have the unique ability to exhibit large strains when exposed to an external electric potential. This property makes these polymers popular candidates for applications in soft robotic, actuators, and energy harvesting. However, it is the applied electrodes that govern this phenomenon, for this reason it is important for research to be done on the characterization of these electrodes' properties. Environmental parameters such as varying temperature have the potential to alter material characteristics which can cause disruption of the device intended performance. The goal of this research is to investigate thermal effects on the electromechanical properties of DE's electrodes. Four carbon grease electrode samples were created using a mixture of high vacuum grease (Dow Corning, USA), Ketjen black carbon powder, and carbon graphite (Asbury Carbons, USA). The electrical percolation threshold was met at a ratio of 0.5:7g and 1:7 g of Ketjen black carbon black samples, while the threshold was met at a ratio of 5:7 g and 6:7g of graphite samples. Three sets of experiments were conducted to investigate the thermal effects the carbons samples produce in voltage induced actuation, max breakdown voltage, and elongation breakpoint tests where the four samples are subjected to various temperatures. From these experiments, a comparative analysis on parameters like young's modulus, induced actuation displacement, breakdown voltage, and applicable force are tabulated and presented.
AB - Dielectric Elastomers (DE) are soft polymers sandwiched between two electrodes that have the unique ability to exhibit large strains when exposed to an external electric potential. This property makes these polymers popular candidates for applications in soft robotic, actuators, and energy harvesting. However, it is the applied electrodes that govern this phenomenon, for this reason it is important for research to be done on the characterization of these electrodes' properties. Environmental parameters such as varying temperature have the potential to alter material characteristics which can cause disruption of the device intended performance. The goal of this research is to investigate thermal effects on the electromechanical properties of DE's electrodes. Four carbon grease electrode samples were created using a mixture of high vacuum grease (Dow Corning, USA), Ketjen black carbon powder, and carbon graphite (Asbury Carbons, USA). The electrical percolation threshold was met at a ratio of 0.5:7g and 1:7 g of Ketjen black carbon black samples, while the threshold was met at a ratio of 5:7 g and 6:7g of graphite samples. Three sets of experiments were conducted to investigate the thermal effects the carbons samples produce in voltage induced actuation, max breakdown voltage, and elongation breakpoint tests where the four samples are subjected to various temperatures. From these experiments, a comparative analysis on parameters like young's modulus, induced actuation displacement, breakdown voltage, and applicable force are tabulated and presented.
UR - https://www.scopus.com/pages/publications/85127300736
U2 - 10.1109/PPC40517.2021.9733133
DO - 10.1109/PPC40517.2021.9733133
M3 - Conference contribution
AN - SCOPUS:85127300736
T3 - IEEE International Pulsed Power Conference
BT - 2021 IEEE Pulsed Power Conference, PPC 2021
PB - Institute of Electrical and Electronics Engineers Inc.
Y2 - 12 December 2021 through 16 December 2021
ER -