Nonlinear Transient Response of Functionally Graded Material Sandwich Doubly Curved Shallow Shell Using New Displacement Field

被引:0
作者
Z. N. Li
Y. X. Hao
W. Zhang
J. H. Zhang
机构
[1] Beijing Information Science and Technology University,College of Mechanical Engineering
[2] Beijing University of Technology,College of Mechanical Engineering
来源
Acta Mechanica Solida Sinica | 2018年 / 31卷
关键词
New displacement fields; Functionally graded materials; Sandwich doubly curved shell; Blast load; Nonlinear transient response;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, the nonlinear transient dynamic response of functionally graded material (FGM) sandwich doubly curved shell with homogenous isotropic material core and functionally graded face sheet is analyzed using a new displacement field on the basis of Reddy’s third-order shear theory for the first time. The equivalent material properties for the FGM face sheet are assumed to obey the rule of simple power law function in the thickness direction. Based on Reddy’s theory of higher shear deformation, a new displacement field is developed by introducing the secant function into transverse displacement. Four coupled nonlinear differential equations are obtained by applying Hamilton’s principle and Galerkin method. It is assumed that the FGM sandwich doubly curved shell is subjected to step loading, air-blast loading, triangular loading, and sinusoidal loading, respectively. On the basis of double-precision variable-coefficient ordinary differential equation solver, a new program code in FORTRAN software is developed to solve the nonlinear transient dynamics of the system. The influences of core thickness, volume fraction, core-to-face sheet thickness ratio, width-to-thickness ratio and blast type on the transient response of the shell are discussed in detail through numerical simulation.
引用
收藏
页码:108 / 126
页数:18
相关论文
共 86 条
[1]  
Pandey S(2015)Free vibration of functionally graded sandwich plates in thermal environment using a layer-wise theory Eur J Mech A/Solids 51 55-66
[2]  
Pradyumna S(2015)A layer-wise finite element formulation for free vibration analysis of functionally graded sandwich shells Compos Struct 133 438-450
[3]  
Pandey S(2005)A comprehensive analysis of functionally graded sandwich plates: part 2- buckling and free vibration Int J Solids Struct 42 5243-5258
[4]  
Pradyumna S(2008)Three-dimensional vibration analysis of functionally graded material sandwich plates J Sound Vib 311 498-515
[5]  
Zenkour AM(2011)A new hyperbolic shear deformation theory for buckling and vibration of functionally graded sandwich plate Int J Mech Sci 53 237-247
[6]  
Li Q(2011)A n-order shear deformation theory for free vibration of functionally graded and composite sandwich plates Compos Struct 93 2826-2832
[7]  
Iu VP(2012)Bending and vibration of functionally graded material sandwich plates using an accurate theory Finite Elem Anal Des 57 32-42
[8]  
Kou KP(2013)Natural frequencies of sandwich plates with FGM core via variable -kinematic 2-D Ritz models Compos Struct 96 561-568
[9]  
El Meiche N(2013)Static, free vibration and buckling analysis of isotropic and sandwich functionally graded plates using a quasi-3D higher-order shear deformation theory and a meshless technique Compos Part B Eng 44 657-674
[10]  
Tounsi A(2013)A unified formulation of PVD-based finite cylindrical layer methods for functionally graded material sandwich cylinders Appl Math Model 37 916-938