On an approach to numerical solution of stress-strain state problems for nonthin plates and shells

被引:0
|
作者
E. A. Gotsulyak
D. I. Chernopiskii
机构
[1] Kiev National University of Construction and Architecture,Timoshenko Institute of Mechanics
[2] National Academy of Sciences of Ukraine,undefined
来源
Strength of Materials | 2008年 / 40卷
关键词
nonthin plate and shell; constant and variable thickness; local recess; bending; axial compression; numerical solution;
D O I
暂无
中图分类号
学科分类号
摘要
Numerical solution of elastic equilibrium problems for nonthin plates and shells of constant and variable thickness is based on using a curvilinear-mesh method in combination with the Vekua method — reduction of three-dimensional elastic equations to a recurrent sequence of boundary problems in a two-dimensional region. Coefficients of the first and second quadratic forms for a conditional mediane surface are calculated by means of a metric of boundary faces without any derivatives with respect to their local bases. Specific examples of numerical solution of the test problems for a thick plate bending case, for which the exact and approximate solutions can be also found by other methods, have proven the proposed numerical approach to be efficient (in terms of a rapid convergence and accuracy). A numerical solution has been obtained for a problem of bending for a nonthin plate of constant and variable thickness made of an orthotropic material and for a shell with a circular recess under axial compression.
引用
收藏
页码:192 / 202
页数:10
相关论文
共 50 条
  • [31] Thermoelastoplastic Stress-Strain State of Rectangular Plates
    Yu. N. Shevchenko
    I. V. Prokhorenko
    International Applied Mechanics, 2005, 41 : 1130 - 1137
  • [32] Thermoelastoplastic stress-strain state of rectangular plates
    Shevchenko, YN
    Prokhorenko, IV
    INTERNATIONAL APPLIED MECHANICS, 2005, 41 (10) : 1130 - 1137
  • [33] THE STRESS-STRAIN STATE OF SCREEN PHOTOPOLYMER PLATES
    OGIRKO, IV
    ZAPOTOCHNYI, VI
    SOVIET MATERIALS SCIENCE, 1986, 22 (06): : 640 - 643
  • [34] Stress-strain state of microinhomogeneous cracked plates
    Delyavskyi, MV
    Korkuna, MD
    MATERIALS SCIENCE, 1995, 31 (02) : 200 - 206
  • [35] Numerical Simulation of the Stress-Strain State and Failure of Carbon Plates Under Heating
    P. A. Radchenko
    A. V. Radchenko
    V. N. Brendakov
    S. P. Batuev
    I. P. Radchenko
    Russian Physics Journal, 2022, 65 : 989 - 997
  • [36] NUMERICAL SIMULATION OF THE STRESS-STRAIN STATE AND FAILURE OF CARBON PLATES UNDER HEATING
    Radchenko, P. A.
    Radchenko, A., V
    Brendakov, V. N.
    Batuev, S. P.
    Radchenko, I. P.
    RUSSIAN PHYSICS JOURNAL, 2022, 65 (06) : 989 - 997
  • [37] Numerical Evaluation of Stress-Strain State of Bending Plates Based on Various Models
    Trushin, Sergey
    Goryachkin, Dmitry
    XXV POLISH - RUSSIAN - SLOVAK SEMINAR -THEORETICAL FOUNDATION OF CIVIL ENGINEERING, 2016, 153 : 781 - 784
  • [38] STRESS-STRAIN STATE OF PLATES WITH POINT FIXING
    KARPOV, NI
    KARPOVA, OA
    SOVIET APPLIED MECHANICS, 1989, 25 (07): : 701 - 705
  • [39] SOLUTION OF STRESS-STRAIN PROBLEMS FOR NONCIRCULAR CYLINDRICAL SHELLS BASED UPON DIFFERENT MODELS
    Grigorenko, Alexander
    Yaremchenko, Sergiy
    MODERN BUILDING MATERIALS, STRUCTURES AND TECHNIQUES, 10TH INTERNATIONAL CONFERENCE 2010, VOL II, 2010, : 885 - 889
  • [40] NUMERICAL STUDY OF THE STRESS-STRAIN STATE OF ONE-LAYER AND 3-LAYER PLATES AND SHELLS OF COMPLEX-GEOMETRY
    PAIMUSHIN, VN
    ANDREEV, SV
    SOVIET APPLIED MECHANICS, 1983, 19 (07): : 583 - 588