首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >RELATIONSHIPS OF THE TIMOSHENKO-TYPE THEORY OF THIN SHELLS WITH ARBITRARY DISPLACEMENTS AND STRAINS
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RELATIONSHIPS OF THE TIMOSHENKO-TYPE THEORY OF THIN SHELLS WITH ARBITRARY DISPLACEMENTS AND STRAINS

机译:薄壳的蒂莫申科型理论与任意位移和应变的关系

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摘要

A new modified version of the Timoshenko theory of thin shells is proposed to describe the process of deformation of thin shells with arbitrary displacements and strains. The new version is based on introducing an unknown function in the form of a rotation vector whose components in the basis fitted to the deformed mid-surface of the shell are the components of the transverse shear vector and the extensibility in the transverse direction according to Chernykh. For the case with the shell mid-surface fitted to an arbitrary non-orthogonal system of curvilinear coordinates, relationships based on the use of true stresses and true strains in accordance with Novozhilov are obtained for internal forces and moments. Based on these relationships, a problem of static instability of an isotropic spherical shell experiencing internal pressure is solved. The shell is considered to be made either of a linear elastic material or of an elastomer (rubber), which is described by Chernykh's relationships.
机译:提出了Timoshenko薄壳理论的新改进版本,以描述具有任意位移和应变的薄壳变形的过程。新版本以旋转矢量的形式引入未知函数为基础,根据Chernykh的说法,该矢量在拟合到变形的壳中表面的基础上是横向剪切矢量的分量和在横向上的可扩展性。 。对于将壳体中表面安装到任意非正交曲线坐标系的情况,对于内力和力矩,获得了基于使用真实应力和真实应变的关系(根据Novozhilov)的关系。基于这些关系,解决了具有内部压力的各向同性球形壳的静态不稳定性问题。壳体被认为是由线性弹性材料或弹性体(橡胶)制成的,这由车尔尼克(Chernykh)的关系描述。

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