Time-varying frequency characteristics of accelerated rotating functionally graded material beams under thermal shock

被引:0
|
作者
Jiang, Luping [1 ]
Wang, Yan Qing [1 ,2 ]
机构
[1] Northeastern Univ, Coll Sci, Key Lab Struct Dynam Liaoning Prov, Shenyang 110819, Peoples R China
[2] Northeastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
基金
中国国家自然科学基金;
关键词
TRANSIENT HEAT-CONDUCTION; FREE-VIBRATION; TIMOSHENKO BEAM; ENVIRONMENT; STABILITY; BLADE; PLATE; MODEL;
D O I
10.1007/s00707-024-04172-x
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In this paper, the time-varying frequency behavior of accelerated rotating functionally graded material (FGM) beams under thermal shock is investigated. The temperature and material properties are assumed to vary along the beam thickness direction. The transient temperature field of the rotating FGM beams under the convective heat transfer boundary condition is obtained through the one-dimensional transient heat conduction equation with temperature-dependent material properties. Based on the Timoshenko beam theory, the governing equation of the beams is obtained via Hamilton's principle. The assumed mode method is used to calculate the time-varying natural frequency of the beams with variable speed and temperature. The present results are verified by comparison with finite element results obtained by ANSYS. Results show that considering the temperature dependence of the elastic modulus is important in analyzing time-varying natural frequencies of accelerated rotating FGM beams under thermal shock. However, the temperature dependence of Poisson's ratio, thermal conductivity and specific heat capacity can be disregarded. Under thermal shock, temperature plays a dominant role in the natural frequencies of accelerated rotating FGM beams in the initial acceleration process, while rotational speed dominates the later acceleration process.
引用
收藏
页码:707 / 728
页数:22
相关论文
共 50 条
  • [1] Time-Varying Functionally Graded Material Thermal Modeling of Friction Stir Welding Joint of Dissimilar Metals
    Li, K.
    Aidun, D.
    Marzocca, P.
    TRENDS IN WELDING RESEARCH, 2009, : 731 - 735
  • [2] Natural frequency analysis of functionally graded material beams with axially varying stochastic properties
    Zhou, Yangjunjian
    Zhang, Xufang
    APPLIED MATHEMATICAL MODELLING, 2019, 67 : 85 - 100
  • [3] Instability of curved beams made of functionally graded material under thermal loading
    Rastgo A.
    Shafie H.
    Allahverdizadeh A.
    International Journal of Mechanics and Materials in Design, 2005, 2 (1-2) : 117 - 128
  • [4] Elastoplastic thermal buckling of functionally graded material beams
    Zhang, Jinghua
    Chen, Like
    Lv, Yali
    COMPOSITE STRUCTURES, 2019, 224
  • [5] Thermal buckling analysis of functionally graded material beams
    Kiani, Y.
    Eslami, M. R.
    INTERNATIONAL JOURNAL OF MECHANICS AND MATERIALS IN DESIGN, 2010, 6 (03) : 229 - 238
  • [6] THERMAL BUCKLING OF PIEZOELECTRIC FUNCTIONALLY GRADED MATERIAL BEAMS
    Kiani, Y.
    Taheri, S.
    Eslami, M. R.
    JOURNAL OF THERMAL STRESSES, 2011, 34 (08) : 835 - 850
  • [7] Thermal buckling analysis of functionally graded material beams
    Y. Kiani
    M. R. Eslami
    International Journal of Mechanics and Materials in Design, 2010, 6 : 229 - 238
  • [8] Crack propagation problem in a functionally graded material plate under thermal shock
    Noda, N
    Fujimoto, T
    Ishihara, M
    MECHANICS AND MATERIAL ENGINEERING FOR SCIENCE AND EXPERIMENTS, 2001, : 448 - 452
  • [9] The effect of thermal shock on the thermal conductivity of a functionally graded material
    Slifka, AJ
    Kumakawa, A
    Filla, BJ
    Phelps, JM
    Shimoda, N
    FUNCTIONALLY GRADED MATERIALS 1996, 1997, : 425 - 432
  • [10] An analytical method for thermal stresses of a functionally graded material cylindrical shell under a thermal shock
    Li-cheng Guo
    Naotake Noda
    Acta Mechanica, 2010, 214 : 71 - 78