Transient responses in a functionally graded cylindrical shell to a point load

被引:42
|
作者
Han, X
Xu, D
Liu, GR
机构
[1] Natl Univ Singapore, Dept Mech Engn, Ctr ACES, Singapore 119260, Singapore
[2] Nanyang Technol Univ, Sch Mech & Prod Engn, Mech Machines Labs, Singapore 639798, Singapore
关键词
D O I
10.1006/jsvi.2001.3997
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
A numerical method is proposed for analyzing transient waves in cylindrical shells of a functionally graded material (FGM) excited by impact point loads. In the present method, the FGM shell is divided into layer elements with three nodal lines along the wall thickness. The material property within each element is assumed to vary linearly in the thickness direction, which represents the spatial variation of material property of FGM. This can further reduce the number of elements to obtain more accurate results effectively. The Hamilton principle is used to develop approximate dynamic equilibrium equations. The displacement response is determined by employing the Fourier transformation and the modal analysis. As examples, the displacement responses of FGM shells excited by point loads are calculated, and the characteristics of waves in FGM shells are discussed. The computations have shown the efficiency of the present method. (C) 2002 Elsevier Science Ltd.
引用
收藏
页码:783 / 805
页数:23
相关论文
共 50 条
  • [21] The modified couple stress functionally graded cylindrical thin shell formulation
    Beni, Yaghoub Tadi
    Mehralian, Fahimeh
    Zeighampour, Hamid
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2016, 23 (07) : 791 - 801
  • [22] Springbackward Phenomenon of a Transversely Isotropic Functionally Graded Composite Cylindrical Shell
    Manthena, V. R.
    Lamba, N. K.
    Kedar, G. D.
    JOURNAL OF APPLIED AND COMPUTATIONAL MECHANICS, 2016, 2 (03): : 134 - 143
  • [23] Wave propagation and transient response of functionally graded material circular plates under a point impact load
    Sun, Dan
    Luo, Song-Nan
    COMPOSITES PART B-ENGINEERING, 2011, 42 (04) : 657 - 665
  • [24] Thermal buckling analysis of cylindrical shell with functionally graded material coating
    Han, Quanfeng
    Wang, Zewu
    Nash, David H.
    Liu, Peiqi
    COMPOSITE STRUCTURES, 2017, 181 : 171 - 182
  • [25] Functionally Graded Piezoelectric Energy Harvester Using Thin Cylindrical Shell
    Fan, Tao
    Shao, Xiaohua
    INTERNATIONAL JOURNAL OF STRUCTURAL STABILITY AND DYNAMICS, 2017, 17 (08)
  • [26] An efficient method to improve the stability of submerged functionally graded cylindrical shell
    Rong Li
    Linxia Liu
    Bin Liang
    Meng Yang
    Journal of Mechanical Science and Technology, 2019, 33 : 2527 - 2536
  • [27] Dispersion characteristics of functionally graded materials cylindrical shell with flow field
    Yao, Xiong-Liang
    Ye, Xi
    Ji, Fang
    Chuan Bo Li Xue/Journal of Ship Mechanics, 2014, 18 (10): : 1254 - 1261
  • [28] Vibration analysis of functionally graded cylindrical shell under thermal environment
    Shi X.-J.
    Zuo P.
    Zhendong Gongcheng Xuebao/Journal of Vibration Engineering, 2023, 36 (02): : 526 - 533
  • [29] An exact solution for functionally graded piezothermoelastic cylindrical shell as sensors or actuators
    Wu, XH
    Shen, YP
    Chen, CQ
    MATERIALS LETTERS, 2003, 57 (22-23) : 3532 - 3542
  • [30] Acoustic resonance scattering from a submerged functionally graded cylindrical shell
    Hasheminejad, Seyyed M.
    Rajabi, M.
    JOURNAL OF SOUND AND VIBRATION, 2007, 302 (1-2) : 208 - 228