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Cylindrical shell bending theory for orthotropic shells under general axisymmetric pressure distributions

机译:一般轴对称压力分布下正交各向异性壳的圆柱壳弯曲理论

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The axisymmetric linear bending theory of shells is treated for thin-walled orthotropic cylindrical shells under any smooth axial distribution of normal and shear pressures. The equations are developed, solved and explored in this paper. The derivation is presented in terms of a generalised Hooke's Law with coupling between the axial membrane stress resultant and axial bending moment. This formulation permits the shell to be alternatively treated as a composite isotropic cylinder with axial stiffeners, rendering it useful for many practical problems. A linear kinematic relationship is assumed between the generalised strains and displacements. Expressions for the linear axial bending half-wavelength are presented for special cases of the stiffness matrix. The equations developed here are simple enough to be applied to the analysis of anisotropic thin-walled cylindrical shells using basic spreadsheet tools, removing the need to perform an onerous finite element analysis. Engineering applications potentially include corrugated metal, axially-stiffened or reinforced concrete silos under granular solid pressures, tanks under hydrostatic pressures, tubular piles under earth pressures, gas-filled cisterns and chimneys.
机译:薄壁正交异性圆柱壳的轴对称线性弯曲理论在法向压力和剪切压力的任何平滑轴向分布下都得到了处理。本文对方程进行了开发,求解和探索。该推导是根据广义胡克定律表示的,其中轴向轴向应力合力与轴向弯曲力矩之间存在耦合。这种配方允许将壳体作为具有轴向加强筋的复合各向同性圆柱体进行处理,从而使其可用于许多实际问题。假定广义应变与位移之间存在线性运动关系。针对刚度矩阵的特殊情况,给出了线性轴向弯曲半波长的表达式。这里开发的方程非常简单,可以使用基本的电子表格工具应用于各向异性薄壁圆柱壳的分析,而无需进行繁琐的有限元分析。工程应用可能包括波纹状金属,颗粒状固体压力下的轴向加筋或钢筋混凝土筒仓,静水压力下的储罐,土压力下的管状桩,充气水箱和烟囱。

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