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Simulation performance of low damage base connection on Abaqus

机译:Abaqus上低损伤基础连接的仿真性能

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摘要

Current design codes can provide life safety performance level based on observations from recent earthquakes. However, buildings experience some damage that could be very costly to recover. Low damage control systems have been developed in recent years to minimize damage in severe earthquakes. The aim of this study is to improve the understanding of the performance of low damage steel structures especially in regard to column base connections and the friction connection with Grade 8.8 bolts. The study involves numerical analysis to assess the stress distribution, displacement, deformation and reaction forces by simulation on Abaqus Finite Element software. Outcomes include an increased understanding for low damage base connection. To reach this objective the base connection with low damage mechanism simulated using Abaqus software is compared with the results from welded base connection. It was observed that on low damage base connections, the stress distribution and yielding on main elements of structure (such as column) changed completely. This mechanism prevents any failure on column on connection with base plate and failure transferred to bolts and connection’s plates. Thus, bolts and connection’s plates can be replaced after damage.
机译:当前的设计规范可以基于最近地震的观察结果提供生命安全绩效水平。但是,建筑物会遭受一些损坏,而这些损坏的修复成本可能很高。近年来,已经开发了低破坏控制系统,以最大程度地减少严重地震中的破坏。这项研究的目的是增进对低损伤钢结构性能的理解,尤其是在圆柱基础连接和8.8级螺栓的摩擦连接方面。该研究涉及数值分析,以通过Abaqus有限元软件进行仿真来评估应力分布,位移,变形和反作用力。结果包括对低损伤基础连接的更多了解。为了达到这个目的,将使用Abaqus软件模拟的低损坏机制的基础连接与焊接基础连接的结果进行了比较。观察到,在低损伤的基础连接上,结构主要元素(例如圆柱)的应力分布和屈服完全改变。这种机制可以防止与底板连接的立柱发生任何故障,也可以防止故障转移到螺栓和连接板上。因此,损坏后可以更换螺栓和连接板。

著录项

  • 作者

    Hatami Mahdi;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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