首页> 外文期刊>Thin-Walled Structures >Post-earthquake fire performance of flange-welded/web-bolted steel I-beam to hollow column tubular connections
【24h】

Post-earthquake fire performance of flange-welded/web-bolted steel I-beam to hollow column tubular connections

机译:法兰焊接/腹板螺栓钢工字梁与空心柱管状连接的地震后防火性能

获取原文
获取原文并翻译 | 示例

摘要

Natural extreme events such as earthquake and fire are destructive for building structures. Earthquake is not only a destructive extreme event but also can trigger other extreme events such as fire. The possible post earthquake fire (PEF) can be a more destructive scenario for building structures. For safety reasons, it is necessary to capture the behaviour of structural components under PEF scenario. This study aims to investigate the behaviour of flange-welded/web-bolted steel I-beam to box column connections subjected to PEF scenario. Experimental tests were carried out on two groups of steel connections under ISO fire. In each group, four connections were fabricated with the same specifications in which one connection was tested under fire only while the other three connections were tested under cyclic loading and subsequent fire. During the fire stage, the connections were subjected to constant static load equivalent to 30% of their ultimate monotonic loading strength. The furnace temperature, temperature distribution of connection and the beam deflection of connection were measured during the fire tests. It was found that the load-carrying capacity of the flange-welded/web-bolted connections decreases significantly with the increase of pre-damage level induced by cyclic loading. Additionally, in order to study the temperature distribution of the connections under fire, preliminary finite element modelling was carried out for a heat transfer analysis on the basis of uniform fire exposure.
机译:地震和火灾等自然极端事件对建筑结构具有破坏性。地震不仅是破坏性的极端事件,而且还可以引发其他极端事件,例如火灾。地震后可能发生的火灾(PEF)对于建筑结构而言可能是更具破坏性的情况。出于安全原因,有必要捕获PEF情况下结构部件的行为。这项研究的目的是研究在PEF情况下法兰焊接/腹板锚固工字钢与箱形柱连接的性能。在ISO火焰下对两组钢连接进行了实验测试。在每组中,以相同的规格制造了四个连接,其中一个连接仅在着火下进行测试,而其他三个连接在循环载荷和随后着火下进行测试。在燃烧阶段,连接处承受的恒定静载荷等于其最终单调载荷强度的30%。在燃烧测试中,测量了炉温,连接处的温度分布和连接处的光束偏转。结果发现,法兰焊接/腹板螺栓连接的承载能力随着循环载荷引起的预破坏水平的增加而显着降低。此外,为了研究火灾下连接的温度分布,在均匀火源的基础上进行了初步的有限元建模,以进行传热分析。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号