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Static/Dynamic Buckling of Axially Compressed Thin-Walled Cylindrical Shells Using Simple Models

机译:使用简单模型的轴向压缩薄壁圆柱壳的静态/动态屈曲

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The postbuckling response of elastic thin-walled circular cylindrical shells under axial compression is discussed using equivalent 1 and 2 degrees-of-freedom imperfect models characterized by a nonlinear spring component simulating the analogous restraining membrane force in the shell. The initial geometric shell imperfections are related to the out of straightness of shell generators. Very recently, Bodner and Rubin ("Modeling the Buckling of Axially Compressed Elastic Cylindrical Shells," AIAA Journal, Vol. 43, No. 1, 2005, pp. 103-110) proposed a 1 degree-of-freedom mechanical model, whose buckling mechanism can be viewed as a local event governed by a shallow archlike behavior depending on the shell geometry, which they related to an empirical formula based on experimentally measured shell buckling loads. This formula, relating the critical load to the ratio thickness-to-radius of the shell, was used for determining the aforementioned nonlinear spring component, necessary for the subsequent analysis of the model. In the present analysis, a new, more reliable 2 degree-of-freedom model for both axis) mme trie and asymmetric buckling mechanisms of axially compressed circular cylindrical shells is proposed which can include antisymmetric imperfections and mode coupling. Another advantage of the proposed models is their ready extension to the dynamic buckling. Moreover, a semi-empirical formula is proposed which generalizes Koiter's formula to include the effect of the ratio thickness-to-the shell radius. Numerical examples illustrate the simplicity and efficiency of the analysis for establishing static and dynamic buckling estimates, quite satisfactory for structural design purposes.
机译:使用等效的1自由度和2自由度不完善模型,讨论了弹性薄壁圆柱壳在轴向压缩下的后屈曲响应,其特征在于非线性弹簧分量模拟了壳中类似的约束膜片力。最初的几何外壳缺陷与外壳生成器的不平直度有关。最近,Bodner和Rubin(“模拟轴向压缩弹性圆柱壳的屈曲”,AIAA杂志,第43卷,第1期,2005年,第103-110页)提出了一种1自由度的机械模型,其模型屈曲机制可以看作是局部事件,取决于壳的几何形状,受浅拱形行为支配,它们与基于实验测得的壳屈曲载荷的经验公式有关。该公式将临界载荷与壳体的厚度与半径之比相关联,用于确定上述非线性弹簧分量,这对于模型的后续分析是必需的。在目前的分析中,提出了一种新的,更可靠的两自由度模型,用于轴向压缩的圆柱壳的两个轴心和不对称屈曲机制,该模型可以包含反对称缺陷和模式耦合。提出的模型的另一个优点是它们可以随时扩展到动态屈曲。此外,提出了一个半经验公式,该公式将Koiter公式推广为包括厚度与壳半径之比的影响。数值示例说明了建立静态和动态屈曲估计的分析的简单性和效率,对于结构设计而言,这是令人满意的。

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