Free Vibration of Thin-Walled Composite Shell Structures Reinforced with Uniform and Linear Carbon Nanotubes: Effect of the Elastic Foundation and Nonlinearity

被引:21
|
作者
Avey, Mahmure [1 ]
Tornabene, Francesco [2 ]
Dimitri, Rossana [2 ]
Kuruoglu, Nuri [3 ]
机构
[1] Usak Univ, Grad Sch Nat & Appl Sci, Div Math, TR-64200 Usak, Turkey
[2] Univ Salento, Dept Innovat Engn, I-73100 Lecce, Italy
[3] Istanbul Gelisim Univ, Fac Engn & Architecture, Dept Civil Engn, TR-34310 Istanbul, Turkey
关键词
CNT; elastic foundations; nonlinear free vibration; nonlinear frequency; shallow shell structures; CURVED SHALLOW SHELLS; PLATES; PANELS;
D O I
10.3390/nano11082090
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this work, we discuss the free vibration behavior of thin-walled composite shell structures reinforced with carbon nanotubes (CNTs) in a nonlinear setting and resting on a Winkler-Pasternak Foundation (WPF). The theoretical model and the differential equations associated with the problem account for different distributions of CNTs (with uniform or nonuniform linear patterns), together with the presence of an elastic foundation, and von-Karman type nonlinearities. The basic equations of the problem are solved by using the Galerkin and Grigolyuk methods, in order to determine the frequencies associated with linear and nonlinear free vibrations. The reliability of the proposed methodology is verified against further predictions from the literature. Then, we examine the model for the sensitivity of the vibration response to different input parameters, such as the mechanical properties of the soil, or the nonlinearities and distributions of the reinforcing CNT phase, as useful for design purposes and benchmark solutions for more complicated computational studies on the topic.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] Interaction of thin-walled prismatic shell with elastic foundation
    Leontiev, Andrey
    Efremov, Ilia
    XXI INTERNATIONAL SCIENTIFIC CONFERENCE ON ADVANCED IN CIVIL ENGINEERING CONSTRUCTION - THE FORMATION OF LIVING ENVIRONMENT (FORM 2018), 2018, 365
  • [2] Self-sustained oscillations of nanotubes reinforced composite thin-walled structures
    Avramov, K.
    Sakhno, N.
    Chernobryvko, M.
    Uspensky, B.
    Seitkazenova, K. K.
    Myrzaliyev, D.
    2020 IEEE KHPI WEEK ON ADVANCED TECHNOLOGY (KHPI WEEK), 2020, : 24 - 28
  • [3] Nonlinear analysis of elastic thin-walled shell structures
    Gavriushin, Sergei S.
    Communications in Nonlinear Science and Numerical Simulation, 2002, 7 (04) : 223 - 233
  • [4] Free vibration of thin-walled composite box beams
    Vo, Thuc Phuong
    Lee, Jaehong
    COMPOSITE STRUCTURES, 2008, 84 (01) : 11 - 20
  • [5] FREE-VIBRATION OF THIN-WALLED COMPOSITE BLADES
    RAND, O
    COMPOSITE STRUCTURES, 1994, 28 (02) : 169 - 180
  • [6] FREE-VIBRATION OF THIN-WALLED MULTICELL STRUCTURES
    SHANMUGAM, NE
    BALENDRA, T
    THIN-WALLED STRUCTURES, 1986, 4 (06) : 467 - 485
  • [7] Free vibration and stability of a rotating thin-walled composite shaft
    Ren, Yong-Sheng
    Dai, Qi-Yi
    Zhang, Xing-Qi
    Zhendong Gongcheng Xuebao/Journal of Vibration Engineering, 2015, 28 (01): : 59 - 66
  • [8] Free Vibration of Grid-Stiffened Composite Cylindrical Shell Reinforced with Carbon Nanotubes
    Azarafza, R.
    Davar, Al.
    Fayez, M. S.
    Jam, J. E.
    MECHANICS OF COMPOSITE MATERIALS, 2020, 56 (04) : 505 - 522
  • [9] Free Vibration of Grid-Stiffened Composite Cylindrical Shell Reinforced with Carbon Nanotubes
    R. Azarafza
    Al. Davar
    M. S. Fayez
    J. E. Jam
    Mechanics of Composite Materials, 2020, 56 : 505 - 522
  • [10] On the influence of geometric imperfections on the stability and vibration of thin-walled shell structures
    Heinen, AH
    Büllesbach, J
    INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, 2002, 37 (4-5) : 921 - 935