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Displacement governing equations of moderately thick cylindrical shallow shells by transverse shearing deformation and the general solution

机译:横向剪切变形和一般溶液中适度厚圆柱浅壳的位移控制方程

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Displacement fundamental equations of the moderately thick cylindrical shallow shells concerning five independent variables, i.e. five middle surface displacements are established based on the displacement fundamental equations of the moderately thick shells by transverse shearing deformation and basic hypothesis on shallow shells. Three assistant displacement functions are introduced to solve the equations, which are tenth-order differential equations with variable coefficient;;and then five second-order differential equations are converted into a second-order differential equation and two fourth-order transition differential equations using the Cauchy-Riemann condition, afterwards another assistant displacement function is introduced to build its decoupled governing differential equations, finally five displacement components through four assistant displacement functions are obtained.
机译:关于五个独立变量的中等厚圆柱浅壳的位移基本方程,即,通过横壳剪切变形和浅壳体上的基本假设基于中等厚壳的位移基本方程来建立五个中间表面位移。引入了三个助手位移功能以解决具有变量系数的第十级微分方程的等式;然后使用五个二阶微分方程被转换为二阶微分方程和使用的两个四阶转换差分方程Cauchy-riemann条件,之后引入了另一个助理位移功能以构建其解耦控制微分方程,最后获得了通过四个辅助位移功能的五个位移分量。

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