首页> 外文期刊>Механика композитных материалов: Науч.-теорет. журн. >BOUNDARY PROBLEMS OF THE THEORY OF THIN AND NONTHIN ORTHOTROPIC SHELLS WITH ACCOUNT OF NONLINEAR ELASTIC PROPERTIES AND LOW SHEAR RIGIDITY OF COMPOSITE MATERIALS
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BOUNDARY PROBLEMS OF THE THEORY OF THIN AND NONTHIN ORTHOTROPIC SHELLS WITH ACCOUNT OF NONLINEAR ELASTIC PROPERTIES AND LOW SHEAR RIGIDITY OF COMPOSITE MATERIALS

机译:考虑非线性弹性特性和低剪切刚度复合材料的薄而薄的正交异性壳理论的边界问题

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摘要

The basic geometric and physical relations and resolving equations of the theory of thin and nonthin orthotropic composite shells with account of nonlinear properties and low shear rigidity of their materials are presented. These are derived based on two theories, namely the theory of anisotropic shells, which employs the Timoshenko or Kirchhoff-Love hypotheses, and the nonlinear theory of elasticity and plasticity of anisotropic media and the Lagrangian variational principle. The procedure and algorithm for a numerical solution of the nonlinear (linear) problems are based on the successive approximation method, difference-variational method, and Lagrangian multiplier method. Calculations of the stress-strain state for a spherical shell with a circular hole loaded by internal pressure are presented. The effect of transverse shear strains and physical nonlinearity of the material on the distribution of maximum deflections and circumferential stresses in the shell, obtained according to two variants of the shell theories, is studied. A comparison of the results of the problem solution in linear and nonlinear statements with and without account of the shell shear strains is given. The numeric data obtained for the thin and nonthin (of average thickness) composite shells are analyzed.
机译:考虑到材料的非线性特性和低剪切刚度,提出了薄的和薄的正交异性复合壳理论的基本几何和物理关系以及解析方程。这些是基于两种理论推导出来的,即采用Timoshenko或Kirchhoff-Love假设的各向异性壳理论,各向异性介质的弹塑性和非线性理论以及拉格朗日变分原理。非线性(线性)问题数值解的过程和算法基于逐次逼近法,差分-变分法和拉格朗日乘子法。提出了具有内压加载的圆孔球壳的应力-应变状态的计算。研究了根据壳理论的两种变体获得的材料的横向剪切应变和物理非线性对壳中最大挠度和周向应力分布的影响。给出了在有和没有考虑壳剪应变的情况下,线性和非线性陈述中问题解决方案的结果的比较。分析从薄壳和薄壳(平均厚度)获得的数值数据。

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