2021
DOI: 10.1007/s11071-020-06157-6
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Modeling and approximate analytical solution of nonlinear behaviors for a self-excited electrostatic actuator

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Cited by 9 publications
(1 citation statement)
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“…When the DC voltage is powered on (operating voltage, 2400 V), the metal beam starts oscillating under a steady electric field. [43,59,60] As shown in Figure 2A, the electrostatic force F E overcomes the mechanical force F M and aerodynamic forces F A1 and F A2 to drive the movement of the flapping unit. F A1 and F A2 are the joint forces of lift and drag, respectively.…”
Section: Design Of the Electrostatic Actuatormentioning
confidence: 99%
“…When the DC voltage is powered on (operating voltage, 2400 V), the metal beam starts oscillating under a steady electric field. [43,59,60] As shown in Figure 2A, the electrostatic force F E overcomes the mechanical force F M and aerodynamic forces F A1 and F A2 to drive the movement of the flapping unit. F A1 and F A2 are the joint forces of lift and drag, respectively.…”
Section: Design Of the Electrostatic Actuatormentioning
confidence: 99%