首页> 外文期刊>Механика композитных материалов: Науч.-теорет. журн. >INVESTIGATION OF LOCALLY LOADED MULTILAYER SHELLS BY A MIXED FINITE-ELEMENT METHOD 2. GEOMETRICALLY NONLINEAR STATEMENT
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INVESTIGATION OF LOCALLY LOADED MULTILAYER SHELLS BY A MIXED FINITE-ELEMENT METHOD 2. GEOMETRICALLY NONLINEAR STATEMENT

机译:本地加载 多层 壳的 的一种混合 有限元法 2. 几何非线性 STATEMENT 调查

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摘要

Based on mixed finite-element approximations, a numerical algorithm is developed for solving linear static problems of prestressed multilayer composite shells subjected to large displacements and arbitrarily large rotations. As the sought-for functions, six displacements and eleven strains of the shell faces are chosen, which allows us to use nonlinear deformation relationships exactly representing arbitrarily large displacements of the shell as a rigid body. The stiffness matrix of a shell element has a proper rank and is calculated based on exact analytical integration. The bilinear element developed does not allow false rigid displacements and is not subjected to the membrane, shear, or Poisson locking phenomenon. The results of solving the well-known test problem on a nonsymmetrically fixed circular arch subjected to a concentrated load and the problem on a locally loaded toroidal multilayer rubber-cord shell are presented.
机译:基于混合有限元近似,开发了一种数值算法,用于求解经受大型位移的预应力多层复合壳的线性静态问题,以及任意大的旋转。 作为寻求的功能,选择六个位移和壳面的11个位移,这使我们能够使用非线性变形关系,该关系精确地表示壳体的任意大的位移作为刚体。 壳元件的刚度矩阵具有适当的等级,并基于精确的分析集成计算。 开发的双线性元件不允许假刚性位移,并且不受膜,剪切或泊松锁定现象。 介绍了在对浓度的非对称固定圆形拱上进行众所周知的测试问题的结果,并提出了局部装载环形多层橡胶帘壳上的问题。

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