Nonlinear vibration effects on the fatigue life of fluid-conveying pipes composed of axially functionally graded materials

被引:0
作者
Ze-Qi Lu
Kai-Kai Zhang
Hu Ding
Li-Qun Chen
机构
[1] Shanghai University,Shanghai Institute of Applied Mathematics and Mechanics
[2] Shanghai University,Shanghai Key Laboratory of Mechanics in Energy Engineering
[3] Shanghai University,School of Mechanics and Engineering Science
来源
Nonlinear Dynamics | 2020年 / 100卷
关键词
Nonlinear vibration; Dynamical fatigue; Pipe conveying fluid; functionally graded pipe; Internal resonance;
D O I
暂无
中图分类号
学科分类号
摘要
Fatigue is inevitable in pipes conveying fluid due to unwanted vibration. Internal resonance occurs in such pipes due to pre-pressure. For the first time, the effects of vibration on the fatigue of fluid-conveying pipes are investigated in this paper. The influences of the internal resonance and the axially functionally graded materials on the fatigue of the pipes are analyzed, aiming at improving mechanical properties and increasing fatigue life. The Galerkin method and the direct multi-scale method are used to construct the solvability condition for the primary resonance and 1:3 internal resonance. Approximate analytical solutions are derived for presenting the nonlinear dynamics of the pipes. The tensile, bending, and resultant stress distribution of the axially functionally graded pipe in internal resonance is determined. The results of the fatigue analysis demonstrate that internal resonance can shorten the fatigue life of axially functionally graded pipes. Reducing the distribution coefficient of functionally graded pipe is beneficial for reducing the resonance response and maximum stress of the pipe conveying fluid. The numerical integration results support the analytical results.
引用
收藏
页码:1091 / 1104
页数:13
相关论文
共 50 条
  • [41] Vibration Characteristics of a Functionally Graded Viscoelastic Fluid-Conveying Pipe with Initial Geometric Defects under Thermal-Magnetic Coupling Fields
    Ma, Yao
    Wang, Zhong-Min
    MATHEMATICS, 2024, 12 (06)
  • [42] Vibration characteristics analysis of fluid-conveying pipes concurrently subjected to base excitation and pulsation excitation
    Guo, Xumin
    Gao, Peixin
    Ma, Hui
    Li, Hui
    Wang, Bo
    Han, Qingkai
    Wen, Bangchun
    MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2023, 189
  • [43] Nonlinear vibration control of a cantilevered fluid-conveying pipe using the idea of nonlinear energy sink
    K. Zhou
    F. R. Xiong
    N. B. Jiang
    H. L. Dai
    H. Yan
    L. Wang
    Q. Ni
    Nonlinear Dynamics, 2019, 95 : 1435 - 1456
  • [44] Nonlinear vibration control of a cantilevered fluid-conveying pipe using the idea of nonlinear energy sink
    Zhou, K.
    Xiong, F. R.
    Jiang, N. B.
    Dai, H. L.
    Yan, H.
    Wang, L.
    Ni, Q.
    NONLINEAR DYNAMICS, 2019, 95 (02) : 1435 - 1456
  • [45] Stress distribution and fatigue life of nonlinear vibration of an axially moving beam
    Hu Ding
    Ling-Lu Huang
    Earl Dowell
    Li-Qun Chen
    Science China Technological Sciences, 2019, 62 : 1123 - 1133
  • [46] Stress distribution and fatigue life of nonlinear vibration of an axially moving beam
    Ding, Hu
    Huang, Ling-Lu
    Dowell, Earl
    Chen, Li-Qun
    SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2019, 62 (07) : 1123 - 1133
  • [47] Stress distribution and fatigue life of nonlinear vibration of an axially moving beam
    DING Hu
    HUANG LingLu
    DOWELL Earl
    CHEN LiQun
    Science China(Technological Sciences), 2019, (07) : 1123 - 1133
  • [48] Vibration and enhanced stability properties of fluid-conveying pipes with two symmetric elbows fitted at downstream end
    Wang, L.
    Dai, H. L.
    ARCHIVE OF APPLIED MECHANICS, 2012, 82 (02) : 155 - 161
  • [49] Vibration and enhanced stability properties of fluid-conveying pipes with two symmetric elbows fitted at downstream end
    L. Wang
    H. L. Dai
    Archive of Applied Mechanics, 2012, 82 : 155 - 161
  • [50] Coupled Bi-Flexural-Torsional Vibration of Fluid-Conveying Pipes Spinning About an Eccentric Axis
    Liang, Feng
    Yang, Xiao-Dong
    Zhang, Wei
    Qian, Ying-Jing
    INTERNATIONAL JOURNAL OF STRUCTURAL STABILITY AND DYNAMICS, 2019, 19 (02)