A Timoshenko dielectric beam model with flexoelectric effect

被引:0
|
作者
Runzhi Zhang
Xu Liang
Shengping Shen
机构
[1] Xi’an Jiaotong University,State Key Laboratory for Strength and Vibration of Mechanical Structures, School of Aerospace
来源
Meccanica | 2016年 / 51卷
关键词
Flexoelectricity; Strain gradient; Electromechanical coupling; Timoshenko beam model;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, a Timoshenko dielectric beam model with the consideration of the direct flexoelectric effect is developed by using the variational principle. The governing equations and the corresponding boundary conditions are naturally derived from the variational principle. The effect of flexoelectricity on the Timoshenko dielectric beams is analytically investigated. The developed beam model recovers to the classical Timoshenko beam model when the flexoelectricity is not taken into account. To illustrate this model, the deflection and rotation of Timoshenko dielectric nanobeam under two different boundary conditions are calculated. The numerical results reveal that both the deflection and rotation predicted by the current model are smaller than those predicted by the classical Timoshenko beam model. Moreover, the discrepancies of the deflection and rotation between the values predicted by the two models are very large when the beam thickness is small. The current model can also reduce to the Bernoulli–Euler dielectric beam model wherein the shear deflection is not considered. This work may be helpful in understanding the electromechanical response at nanoscale and designing dielectric devices.
引用
收藏
页码:1181 / 1188
页数:7
相关论文
共 50 条
  • [31] Spectral operators generated by Timoshenko beam model
    Shubov, MA
    SYSTEMS & CONTROL LETTERS, 1999, 38 (4-5) : 249 - 258
  • [32] An Inverse Problem for a Viscoelastic Timoshenko Beam Model
    Cavaterra, C.
    ZEITSCHRIFT FUR ANALYSIS UND IHRE ANWENDUNGEN, 1998, 17 (01): : 67 - 87
  • [33] Active Actuating of a Simply Supported Beam with the Flexoelectric Effect
    Fan, Mu
    Min, Hequn
    MATERIALS, 2020, 13 (07)
  • [34] Dielectric Behavior of Antiferroelectric Liquid Crystals in Presence of Flexoelectric Effect
    Das, Deblal
    Mandal, Pravash
    Majumder, Tapas Pal
    BRAZILIAN JOURNAL OF PHYSICS, 2015, 45 (03) : 280 - 287
  • [35] Dielectric Behavior of Antiferroelectric Liquid Crystals in Presence of Flexoelectric Effect
    Deblal Das
    Pravash Mandal
    Tapas Pal Majumder
    Brazilian Journal of Physics, 2015, 45 : 280 - 287
  • [36] AN ANALYTICAL MODEL FOR BEAM FLEXURE MODULES BASED ON THE TIMOSHENKO BEAM THEORY
    Kahrobaiyan, M. H.
    Zanaty, M.
    Henein, S.
    PROCEEDINGS OF THE ASME INTERNATIONAL DESIGN ENGINEERING TECHNICAL CONFERENCES AND COMPUTERS AND INFORMATION IN ENGINEERING CONFERENCE, 2017, VOL 5A, 2017,
  • [37] Discretization of a nonlinear dynamic thermoviscoelastic Timoshenko beam model
    Bernardi, Christine
    Copetti, Maria Ines M.
    ZAMM-ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND MECHANIK, 2017, 97 (05): : 532 - 549
  • [38] Finite element method for a nonlocal Timoshenko beam model
    Alotta, Gioacchino
    Failla, Giuseppe
    Zingales, Massimiliano
    FINITE ELEMENTS IN ANALYSIS AND DESIGN, 2014, 89 : 77 - 92
  • [39] A CDM-based computational model for the Timoshenko beam
    Shazali, AM
    Rahman, K
    ElBoghdadi, MH
    Taher, SF
    Baluch, MH
    ENGINEERING COMPUTATIONS, 1997, 14 (01) : 57 - &
  • [40] A dissipation model for concrete based on an enhanced Timoshenko beam
    Aretusi, Giuliano
    Cardillo, Christian
    Terranova, Larry Murcia
    Bednarczyk, Ewa
    NETWORKS AND HETEROGENEOUS MEDIA, 2024, 19 (02) : 700 - 723