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Steel square hollow sections subjected to transverse blast loads

机译:承受横向爆炸载荷的方形钢空心型材

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摘要

Thin-walled steel hollow sections are used extensively in the construction, offshore, mining and security industries. Such members subjected to blast loads are of interest due to increased security demands and the occurrence of accidental or intentional explosive events. This paper reports an experimental and analytical investigation of steel square hollow sections subjected to transverse blast load, applied with explosive uniformly distributed along the length of the member. Three different section sizes were tested over three different lengths, and the members were fully clamped at their ends. The explosive loads were sufficient in magnitude to cause plastic deformation of the cross-section (local deformation), plastic flexural deformation of the overall member (global deformation), and tensile tearing at the supports. The energy dissipated in the local deformation is determined using rigid-plastic analysis and yield line mechanisms of the deformed cross-sections. The total input energy minus the energy dissipated in local deformation is assumed to be expended in flexural deformation. Analytical solutions using the energy consumed in flexural deformation are shown to produce bounded solutions of the transverse plastic deformation of the members. Finally, a semi-empirical solution is suggested that can be used to aid in design.
机译:薄壁钢制空心型材广泛用于建筑,海上,采矿和安全行业。由于增加的安全性要求以及意外或故意爆炸事件的发生,受到爆炸载荷的这种构件是令人关注的。本文报告了承受横向爆炸载荷的方形钢空心截面的实验和分析研究,爆炸截面沿构件的长度均匀分布。在三种不同的长度上测试了三种不同的截面尺寸,并且将构件完全固定在其端部。爆炸载荷的大小足以引起横截面的塑性变形(局部变形),整个构件的塑性挠曲变形(整体变形)和支撑处的拉伸撕裂。使用刚塑性分析和变形截面的屈服线机制确定在局部变形中耗散的能量。假定总输入能量减去在局部变形中耗散的能量在弯曲变形中消耗。示出了使用在弯曲变形中消耗的能量的解析解可以产生构件的横向塑性变形的有限解。最后,提出了一种半经验的解决方案,可用于辅助设计。

著录项

  • 来源
    《Thin-Walled Structures》 |2012年第2012期|p.109-122|共14页
  • 作者单位

    Department of Civil Engineering, Monash University, VIC 3800, Australia;

    Blast Impact and Survivability Research Unit (B1SRU), Department of Mechanical Engineering, University of Cape Town, Private Bag Rondebosch 7701, South Africa;

    TARS, Faculty of Science, University of New South Wales, Old Main Building (K15), Sydney, NSW 2052, Australia;

    TARS, Faculty of Science, University of New South Wales, Old Main Building (K15), Sydney, NSW 2052, Australia;

    Department of Civil Engineering, Monash University, VIC 3800, Australia;

  • 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
  • 关键词

    steel tubular sections; blast load; explosive load; rigid-plastic theory; impulse;

    机译:钢管型材;爆炸载荷爆炸负荷刚塑性理论冲动;

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