The influence of surface stress and surface-induced internal residual stresses on the size-dependent behaviors of Kirchhoff microplate

被引:0
作者
Y. M. Yue
K. Y. Xu
Z. Q. Tan
W. J. Wang
D. Wang
机构
[1] Shijiazhuang Tiedao University,Department of Engineering Mechanics
[2] Shanghai University,Department of Mechanics, Shanghai Institute of Applied Mathematics and Mechanics
[3] Changzhou University,School of Mechanical Engineering
[4] University of Alberta,Department of Mechanical Engineering
[5] HCIG New-Energy Co.,undefined
[6] Ltd,undefined
来源
Archive of Applied Mechanics | 2019年 / 89卷
关键词
Strain gradient; Kirchhoff microplate; Surface stress; Surface-induced internal residual stress;
D O I
暂无
中图分类号
学科分类号
摘要
The present paper develops a size-dependent Kirchhoff microplate model with surface effects by using simplified strain gradient elasticity theory and surface elasticity theory. This new model is able to capture size-dependent behaviors and surface effects. The most noticeable difference of the proposed model from the existing plate models about microplates is that not only strain gradient and surface stress are taken into account, but also the surface-induced internal residual stresses are considered. Based on whether the plates having surface-induced internal residual stress or not, their governing equations have distinct differences. An extended Kantorovich method is employed to provide approximate closed-form solution for the rectangular microplate with simply supported boundary conditions. For the microplate with biaxial initial residual surface stress, the numerical results reflect that when the simply supported microplates do not have surface-induced internal residual stresses, internal length scale and biaxial surface residual stress have significant influence on the static bending of the microplates. However, when the simply supported microplates have nonzero surface-induced internal residual stresses, the effects of internal length scale and biaxial surface residual stress become very weak. It indicates that the effect of surface-induced internal residual stresses can counteract most of the effects of internal length scale and surface residual stress. This work provides a more general model for the analysis of microplate problems.
引用
收藏
页码:1301 / 1315
页数:14
相关论文
共 123 条
[1]  
Lee KK(2000)Effect of size and roughness on light transmission in a Si/SiO2 waveguide: experiments and model Appl. Phys. Lett. 77 1617-1067
[2]  
Lim RR(2005)Role of material microstructure in plate stiffness with relevance to microcantilever sensors J. Micromech. Microeng. 15 1060-1955
[3]  
Mcfarland AW(2008)Micro-bending tests: a comparison between three-dimensional discrete dislocation dynamics simulations and experiments Acta Mater. 56 1942-115
[4]  
Colton JS(2010)Influence of different dielectrics on the first layer grain sizes and its effect on the mobility of pentacene-based thin-film transistors Appl. Phys. Lett. 96 133311-1990
[5]  
Motz C(2009)Exploring the applicability of gradient elasticity to certain micro/nano reliability problems Microsyst. Technol. 15 109-2764
[6]  
Weygand D(2011)Gradient elasticity in statics and dynamics: an overview of formulations, length scale identification procedures, finite element implementations and new results Int. J. Solids Struct. 48 1962-235
[7]  
Senger J(2009)A new Kirchhoff plate model based on a modified couple stress theory Int. J. Solids Struct. 46 2757-309
[8]  
Gumbsch P(2011)A non-classical Mindlin plate model based on a modified couple stress theory Acta Mech. 220 217-73
[9]  
Hu YY(2012)Geometrically nonlinear micro-plate formulation based on the modified couple stress theory Int. J. Eng. Sci. 51 292-1670
[10]  
Qi Q(2015)Nolinear dynamics of microplates Int. J. Eng. Sci. 86 60-30