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New Approaches to the Calculation of Round and Annular Plate Bending, as Well as Estimation of Their Lowest Natural Frequencies

https://doi.org/10.26583/gns-2021-01-05

Abstract

The transverse movements of the plates of constant thickness are assumed to be small. In this case the plates are bent by moments applied at the edge with constant intensity. For the first time, a theory of the pure bending of round and annular plates by moments of constant intensity applied to their circular boundaries. Pure bending is understood as a stress-strain state in which shears in the plates are completely absent. Within the framework of the accepted hypotheses, the normal radial deformations of the plates are determined. Based on the continuity equation in the axisymmetric case, it was established that the normal radial and circumferential strains coincide. Using Hooke's law, the normal stresses acting in the plates are determined. Based on the equilibrium equations, the moments necessary for bending the plates to a given curvature are calculated. A differential equation is obtained for determining small lateral displacements of plates under the action of moments of constant intensity applied to the edge of the plate. The solution of this equation is obtained in elementary form for the case of articulating plates around the perimeter. To proceed for solving the problems of plate bending by a transverse normal load, a method for determining equivalent moments from the acting axisymmetric load, both for round and ring plates is proposed. To satisfy the equilibrium conditions for the plates under consideration of the action of a transverse load, it is assumed that the magnitude of the vertical reaction on the supports along the perimeter is uniformly distributed and equal to the integral value of the normal load divided by the length of the perimeter. As an example, the problems of bending plates under their own weight with articulated support are solved. Within the framework of the proposed theory, solutions to the problems of bending round and annular plates located on the Winkler base are demonstrated. For the first time, a technique has been proposed for determining the lowest natural frequency of both round and annular plates in the framework of the proposed theory of pure bending. A technique is also proposed for taking into account the influence of the Winkler base under the plates on the lower natural frequency.

About the Authors

A. S. Kravchuk
Polytechnic Research Institute, a branch of the Belarusian National Technical University
Russian Federation


S. A. Tomilin
Volgodonsk Engineering Technical Institute the branch of National Research Nuclear University «MEPhI»
Russian Federation


A. I. Kravchuk
Belarusian State University
Russian Federation


S. F. Godunov
Volgodonsk Engineering Technical Institute the branch of National Research Nuclear University «MEPhI»
Russian Federation


A. F. Smaliuk
Belarusian State University
Russian Federation


References

1. Godio M., Beyer K. Analytical model for the out-of-plane response of vertically spanning unreinforced masonry walls // Earthquake Engineering & Structural Dynamics, V. 46, 2017, N. 15, P. 2757-2776.

2. Tomassetti U., Graziotti F., Penna A., Magenes G. Modelling one-way out-of-plane response of single leaf and cavity walls // Engineering Structures, 167, 2018. P 241-255. DOI: 10.1016/j.engstruct.2018.05.055.

3. João Paulo Silva Lima, Marcelo Langhinrichs Cunha, Elizaldo Dominguesdos Santos, Luiz Alberto Oliveira Rocha, Mauro de Vasconcellos Real, Liércio André Isoldi. Constructal Design for the ultimate buckling stress improvement of stiffened plates submitted to uniaxial compressive load // Engineering Structures, V. 203, 2020, 109883 DOI: 10.1016/j.engstruct.2019.109883.

4. Садигов, И.Р. Исследование устойчивости многослойных круглых пластин переменной толщины из нелинейно-упругого материала / И.Р. Садигов // Международный научно-исследовательский журнал. - 2019. - № 7(85), Ч. 1. - С. 31-37. - DOI: 10.23670/IRJ.2019.85.7.006.

5. Soumen Shaw. Bending of a Thin Rectangular Isotropic Micropolar Plate // International Journal for Computational Methods in Engineering Science and Mechanics. V.20. 2019. Nо1. P.64-71. DOI: 10.1080/15502287.2019.1568616.

6. Ермоленко, А.В. Расчет круглых пластин по уточненным теориям / А.В. Ермоленко // Вестник Сыктывкарского университета. - 2006. - Сер. 1, Вып. 6. - С. 79-86.

7. Журавков, М.А. Механика сплошных сред. Теория упругости и пластичности / М.А. Журавков, Э.И. Старовойтов. - Минск : БГУ, 2011. - 543 с.

8. Тимошенко, С.П. Пластинки и оболочки / С.П. Тимошенко, С. Войновский-Кригер. - Москва : Наука, 1966. - 636 с.

9. Кравчук, А.С. Чистый изгиб наследственно вязкоупругопластических прямоугольных пластин / А.С. Кравчук, А.И. Кравчук, С.А. Томилин, С.Ф. Годунов // Инженерный вестник Дона. - 2019. - № 9. - URL : http://www.ivdon.ru/ru/magazine/archive/N9y2019/6170 (дата обращения: 02.03.2020).

10. Кравчук, А.С. Полное решение задачи Ляме для толстостенного в среднем изотропного цилиндра из нелинейно-деформируемых материалов / А.С. Кравчук, А.И. Кравчук, С.Н. Лопатин // Строительные материалы и изделия. - 2019. - Т. 2, № 4. - С. 64-72.

11. Дородов, П.В. О краевой задаче теории упругости в полярной системе координат / П.В. Дородов // Инженерный вестник Дона. - 2015. - № 1. - URL : http://www.ivdon.ru/ru/magazine/archive/n1y2015/2800 (дата обращения: 02.03.2020).

12. Кравчук, А.С. Оценка упругопластических прогибов круглых и кольцевых пластин под действием осесимметричных поперечных нагрузок / А.С. Кравчук, А.И. Кравчук // Вестник науки и образования Северо-Запада России. - 2019. - Т. 5, №3. - URL : http://vestnik-nauki.ru/wp-content/uploads/2019/10/2019-N3-Kravchuk.pdf (дата обращения: 10.10.19).


Review

For citations:


Kravchuk A.S., Tomilin S.A., Kravchuk A.I., Godunov S.F., Smaliuk A.F. New Approaches to the Calculation of Round and Annular Plate Bending, as Well as Estimation of Their Lowest Natural Frequencies. Nuclear Safety. 2021;(1):44-56. (In Russ.) https://doi.org/10.26583/gns-2021-01-05

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ISSN 2305-414X (Print)
ISSN 2499-9733 (Online)