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Elastic buckling of Cassini ovaloidal shells under external pressure - theoretical study

机译:卡西尼椭圆壳在外部压力下的弹性屈曲-理论研究。

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THE PAPER IS DEVOTED TO SHELLS of revolution with positive and negative Gaussian curvature. The meridian of shells is a plane curve in the Cassini oval form. Geometrical properties of the middle surface of the shell of revolution based on this curve are presented. The membrane state of stress of a family of shells, with constant capacity and mass under uniform pressure is described analytically and numerically with the use of the FEM (the ANSYS system). The critical pressure, buckling modes and equilibrium paths of analysed shells are calculated numerically. The advantages of a pressure vessel made in the form of Cassini ovaloidal shell, such as the lack of edge effect and a stable post-buckling behaviour, are pointed out. The results of the analytical and numerical investigations are compared and presented in tables and figures.
机译:该纸专为具有正和负高斯曲率的旋转外壳而设计。贝壳的子午线是卡西尼椭圆形的平面曲线。给出了基于该曲线的旋转壳体中间表面的几何特性。使用FEM(ANSYS系统)以解析方式和数值方式描述了在恒定压力下具有恒定容量和质量的一系列壳体的应力膜状态。数值计算了被分析壳体的临界压力,屈曲模式和平衡路径。指出了以卡西尼椭圆形壳形式制成的压力容器的优点,例如,没有边缘效应和稳定的后屈曲性能。分析和数值研究的结果进行了比较,并以表格和数字形式显示。

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