A New Design Method for Axially Loaded Thin-Walled Cylindrical Shells Based on Elasto-Plastic Buckling Analysis

P. Jiao, Zhiping Chen, He Ma
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引用次数: 4

Abstract

In engineering, thin-walled cylindrical shells subjected to axial compression load are very sensitive to geometric imperfections and are prone to buckling. However, how to reasonably take into account the influence of geometric imperfections on the load carrying capacity of thin-walled cylindrical shells is always the bottleneck of light-weight design of these structures. In this paper, four perturbation load approach (4PLA) is adopted to consider the influence of geometric imperfections. By judging the potential buckling status of cylindrical shells, a new improved design method based on 4PLA for thin-walled cylindrical shells is proposed, in which the influence of radius-to-thickness ratio, length-to-radius ratio, Young’s modulus and material yield strength are systematically considered. Correspondingly, the buckling tests for two steel cylindrical shells with the same geometric and material parameters are conducted. Compared with the experimental results and other test results in open literatures, the superiority and safety of proposed method for the preliminary design of thin-walled cylindrical shells are validated.
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基于弹塑性屈曲分析的轴向载荷薄壁圆柱壳设计新方法
在工程中,受轴向压缩载荷作用的薄壁圆柱壳对几何缺陷非常敏感,容易发生屈曲。然而,如何合理考虑几何缺陷对薄壁圆柱壳承载能力的影响一直是薄壁圆柱壳轻量化设计的瓶颈。本文采用四摄动载荷法(4PLA)来考虑几何缺陷的影响。通过对圆柱壳潜在屈曲状态的判断,提出了一种基于4PLA的薄壁圆柱壳改进设计方法,该方法系统地考虑了半径比、长半径比、杨氏模量和材料屈服强度的影响。相应地,对具有相同几何参数和材料参数的两个钢圆柱壳进行了屈曲试验。通过与试验结果和公开文献的试验结果对比,验证了所提方法对薄壁圆柱壳初步设计的优越性和安全性。
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