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Hollow and concrete filled steel hollow sections under transverse impact loads

机译:空心和混凝土空心空心截面承受横向冲击载荷

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Steel hollow sections are used extensively in the construction, offshore, mining and security industries. In many applications these sections are concrete filled in order to gain strength advantages under axial compression loads. These sections may be subjected to transverse impact loads from accidental or intentional impacts or explosive events. This paper reports an experimental and analytical investigation of hollow and concrete filled steel square hollow (SHS) section beams subjected to low velocity, large mass transverse impacts at the beam mid-span. Three different section sizes were tested as fully clamped beams, where the impact energy was sufficiently large so as to cause complete failure of the beam by tensile tearing. It is shown that non-compact hollow sections undergo local deformations beneath the impactor, and when concrete filled these sections can sustain greater transverse impact loads as the local deformations are restricted from forming. The effect is shown to be less pronounced for compact sections. An elastic-plastic theoretical method is developed to establish the force-displacement and energy absorption relationships for hollow and concrete filled sections, and is shown to compare well with the experimental results. The local reduction of the section at the point of load application is explicitly included. A design procedure is developed whereby the analyst may use a deflection, force or energy limit to design hollow and concrete filled steel SHS members for transverse impact loads.
机译:钢制空心型材广泛用于建筑,海上,采矿和安全行业。在许多应用中,这些部分都是混凝土填充的,以便在轴向压缩载荷下获得强度优势。这些部分可能会因意外或故意撞击或爆炸事件而承受横向冲击载荷。本文报告了空心和混凝土填充方型空心(SHS)型钢梁在中跨处受到低速,大质量横向冲击的试验和分析研究。测试了三种不同的截面尺寸作为完全夹紧的梁,其冲击能量足够大,以至于由于拉伸撕裂而导致梁完全失效。结果表明,非紧凑空心部分在冲击器下方发生局部变形,并且当混凝土填充时,由于局部变形受到限制,这些部分可以承受更大的横向冲击载荷。对于紧凑型截面,该效果显示得不太明显。提出了一种弹塑性理论方法来建立空心和混凝土填充截面的力-位移和能量吸收关系,并与实验结果进行了比较。明确包括了在负载应用时该部分的局部缩减。开发了一种设计程序,分析人员可以使用挠度,力或能量限制来设计空心和混凝土填充的SHS钢构件以承受横向冲击载荷。

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