Thermomechanical Creep Analysis of FGM Thick Cylindrical Pressure Vessels with Variable Thickness

被引:28
作者
Kashkoli, Mosayeb Davoudi [1 ]
Tahan, Khosro Naderan [1 ]
Nejad, Mohammad Zamani [2 ]
机构
[1] Shahid Chamran Univ Ahvaz, Dept Mech Engn, Ahwaz, Iran
[2] Univ Yasuj, Dept Mech Engn, Yasuj, Iran
关键词
Creep; cylindrical pressure vessel; functionally graded material (FGM); first-order shear deformation theory (FSDT); multilayer method (MLM); variable thickness; FUNCTIONALLY GRADED MATERIALS; SHEAR DEFORMATION-THEORY; TRUNCATED CONICAL SHELLS; ELASTIC ANALYSIS; THERMOELASTIC ANALYSIS; VARYING PROPERTIES; LIFE ASSESSMENT; HEAT-FLUX; TEMPERATURE; REVOLUTION;
D O I
10.1142/S1758825118500084
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In the present study, a theoretical solution for thermomechanical creep analysis of functionally graded (FG) thick cylindrical pressure vessel with variable thickness based on the first-order shear deformation theory (FSDT) and multilayer method (MLM) is presented. To the best of the researchers' knowledge, in the literature, there is no study carried out into FSDT and MLM for creep response of cylindrical pressure vessels with variable thickness under thermal and mechanical loadings. The vessel is subjected to a temperature gradient and nonuniform internal pressure. All mechanical and thermal properties except Poisson's ratio are assumed to vary along the thickness direction based on a power-law function. The thermomechanical creep response of the material is described by Norton's law. The virtual work principle is applied to extract the nonhomogeneous differential equations system with variable coefficients. Using the MLM, this differential equations system is converted into a system of differential equations with constant coefficients. These set of differential equations are solved analytically by applying boundary and continuity conditions between the layers. In order to verify the results of this study, the finite element method (FEM) has been used and according to the results, good agreement has been achieved. It can be concluded that the temperature gradient has significant influence on the creep responses of FG thick cylindrical pressure vessel.
引用
收藏
页数:31
相关论文
共 45 条
[31]   A general disk form formulation for thermo-elastic analysis of functionally graded thick shells of revolution with arbitrary curvature and variable thickness [J].
Nejad, Mohammad Zamani ;
Jabbari, Mehdi ;
Ghannad, Mehdi .
ACTA MECHANICA, 2017, 228 (01) :215-231
[32]   Elastic analysis of axially functionally graded rotating thick cylinder with variable thickness under non-uniform arbitrarily pressure loading [J].
Nejad, Mohammad Zamani ;
Jabbari, Mehdi ;
Ghannad, Mehdi .
INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE, 2015, 89 :86-99
[33]   Elastic analysis of FGM rotating thick truncated conical shells with axially-varying properties under non-uniform pressure loading [J].
Nejad, Mohammad Zamani ;
Jabbari, Mehdi ;
Ghannad, Mehdi .
COMPOSITE STRUCTURES, 2015, 122 :561-569
[34]   Exact elasto-plastic analysis of rotating thick-walled cylindrical pressure vessels made of functionally graded materials [J].
Nejad, Mohammad Zamani ;
Fatehi, Parisa .
INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE, 2015, 86 :26-43
[35]   Time-dependent thermo-creep analysis of rotating FGM thick-walled cylindrical pressure vessels under heat flux [J].
Nejad, Mohammad Zamani ;
Kashkoli, Mosayeb Davoudi .
INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE, 2014, 82 :222-237
[36]   ELASTIC ANALYSIS OF FGM ROTATING CYLINDRICAL PRESSURE VESSELS [J].
Nejad, Mohammad Zamani ;
Rahimi, Gholam Hosein .
JOURNAL OF THE CHINESE INSTITUTE OF ENGINEERS, 2010, 33 (04) :525-530
[37]   INFLUENCE OF ANNEALING TEMPERATURE IN THE COURSE OF MECHANICAL-THERMAL TREATMENT UPON THE STEADY-STATE CREEP RATE OF METALS [J].
Rusinko, Andrew .
JOURNAL OF MECHANICS, 2013, 29 (03) :535-538
[38]  
Shariati M, 2015, J SOLID MECH, V7, P131
[40]   The nonlinear vibration of orthotropic functionally graded cylindrical shells surrounded by an elastic foundation within first order shear deformation theory [J].
Sofiyev, A. H. ;
Hui, D. ;
Haciyev, V. C. ;
Erdem, H. ;
Yuan, G. Q. ;
Schnack, E. ;
Guldal, V. .
COMPOSITES PART B-ENGINEERING, 2017, 116 :170-185