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Lateral confinement as a means for enhancing load bearing and energy absorption in axially compressed tubes

机译:横向封闭是增强轴向压缩管中的承载和能量吸收的一种手段

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摘要

The energy absorption and load-bearing capacity of single and concentric multilayer tubes under axial compression are studied with an eye toward optimization per structural mass or volume available for deformation. The specimens are laterally confined on their inner and outer surfaces by rigid walls to stabilize the deformation, but the effect of confinement diminishes as the number of layers is increased. The diameter of the tubes and the tightness of the confinement or relative density ρ are systematically varied. The confinement tends to reduce the wavelength of the characteristic buckle, which leads to additional energy dissipation modes over the classical tube, notably axial compression and friction. Simple analytic relations are developed to assess the mechanical performance as a function of ρ and other system parameters. When considering mean stress, crush energy and stroke or densification strain on the basis of minimizing mass and volume simultaneously, ρ ≈ 0.5 seem to be a viable choice, resulting in considerable enhancement of the performance over common cellular structures, for which ρ is typically < 0.1.
机译:研究单轴和同心多层管在轴向压缩下的能量吸收和承载能力,着眼于针对可变形的每个结构质量或体积进行优化。样品通过刚性壁横向限制在其内表面和外表面上,以稳定变形,但是随着层数的增加,限制作用减弱。管的直径和密闭性或相对密度ρ是系统地变化的。该限制趋于减小特征弯曲的波长,这导致传统管上的附加能量耗散模式,特别是轴向压缩和摩擦。开发了简单的解析关系,以评估机械性能作为ρ和其他系统参数的函数。在同时最小化质量和体积的基础上考虑平均应力,压碎能量和冲程或致密化应变时,ρ≈0.5似乎是一个可行的选择,从而导致性能明显优于普通细胞结构,而ρ通常小于0.1。

著录项

  • 来源
    《Thin-Walled Structures》 |2008年第1期|p.54-64|共11页
  • 作者

    Herzl Chai;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑结构;
  • 关键词

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