Effective Three-Dimensional Shell Model for Layer-by-Layer Study of Stress–Strain State of Three-Layer Irregular Cylindrical Shells

IF 0.3 Q4 MECHANICS Moscow University Mechanics Bulletin Pub Date : 2024-09-22 DOI:10.3103/S0027133024700146
V. N. Bakulin
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引用次数: 0

Abstract

An approach to obtaining approximations and constructing a three-dimensional shell model of a filler layer based on the use of effective approximating functions used in two-dimensional models of bearing layers in the general case of irregular three-layer cylindrical shells, including those weakened by rectangular cutouts, is presented. The effective approximating functions of the displacements of the bearing layers are based on the initial approximation of deformations. As an example, studies of the influence of the angular dimension of rectangular cutouts on the stress and strain state of sandwich cylindrical shells are carried out for the first time.

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用于逐层研究三层不规则圆柱壳体应力应变状态的有效三维壳体模型
在不规则三层圆柱形壳体(包括被矩形切口削弱的壳体)的一般情况下,介绍了一种基于二维轴承层模型中使用的有效近似函数来获取近似值和构建填充层三维壳体模型的方法。轴承层位移的有效近似函数基于变形的初始近似值。例如,首次研究了矩形切口的角度尺寸对夹层圆柱壳应力和应变状态的影响。
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来源期刊
CiteScore
0.60
自引率
0.00%
发文量
9
期刊介绍: Moscow University Mechanics Bulletin  is the journal of scientific publications, reflecting the most important areas of mechanics at Lomonosov Moscow State University. The journal is dedicated to research in theoretical mechanics, applied mechanics and motion control, hydrodynamics, aeromechanics, gas and wave dynamics, theory of elasticity, theory of elasticity and mechanics of composites.
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