TY - GEN
T1 - The effect of membrane load on the usage of Berger's model in electrostatically actuated pre-stressed circular curved micro plates
AU - Medina, Lior
AU - Eliasi, Rami
AU - Gilat, Rivka
AU - Krylov, Slava
N1 - Publisher Copyright:
Copyright © 2021 by ASME.
PY - 2021
Y1 - 2021
N2 - The effect of membrane load on the behaviour of axisymmetric bistable circular curved microplates on Berger's based axisymmetric reduced order (RO) model, incorporating radial prestress, is studied. The model is first validated for a "mechanical"load, against a Föppl-von-Kármán's RO model with twenty degrees of freedom (DOF), a finite differences (FD) solution and a finite elements (FE) model, serving as the reference. All solutions implement the "Riks"method to track possible unstable branches, which can swerve in due to the presence of higher buckling modes. A convergence study is carried out for the snap-through location and load, as well as for the critical elevation and prestress required for bistability. Based on validated results of the analysis, the reliability of the model for predicting the effect of prestress on the plate behaviour under nonlinear electrostatic load is then investigated while using FD solutions as the reference. The study furnishes a reliable expended RO model, which includes prestress on the as-fabricated curved plate. The resulting model can further be used to estimate the value of residual prestress, present in an electrostatically actuated curved plate, based on its response.
AB - The effect of membrane load on the behaviour of axisymmetric bistable circular curved microplates on Berger's based axisymmetric reduced order (RO) model, incorporating radial prestress, is studied. The model is first validated for a "mechanical"load, against a Föppl-von-Kármán's RO model with twenty degrees of freedom (DOF), a finite differences (FD) solution and a finite elements (FE) model, serving as the reference. All solutions implement the "Riks"method to track possible unstable branches, which can swerve in due to the presence of higher buckling modes. A convergence study is carried out for the snap-through location and load, as well as for the critical elevation and prestress required for bistability. Based on validated results of the analysis, the reliability of the model for predicting the effect of prestress on the plate behaviour under nonlinear electrostatic load is then investigated while using FD solutions as the reference. The study furnishes a reliable expended RO model, which includes prestress on the as-fabricated curved plate. The resulting model can further be used to estimate the value of residual prestress, present in an electrostatically actuated curved plate, based on its response.
UR - http://www.scopus.com/inward/record.url?scp=85120170117&partnerID=8YFLogxK
U2 - 10.1115/DETC2021-69404
DO - 10.1115/DETC2021-69404
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AN - SCOPUS:85120170117
T3 - Proceedings of the ASME Design Engineering Technical Conference
BT - 15th International Conference on Micro- and Nanosystems (MNS)
T2 - 15th International Conference on Micro- and Nanosystems, MNS 2021, Held as Part of the ASME 2021 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, IDETC-CIE 2021
Y2 - 17 August 2021 through 19 August 2021
ER -