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Web-post buckling of fully and partially protected cellular steel beams at elevated temperatures in a fire

机译:火灾中高温下完全保护和部分保护的蜂窝状钢梁的网柱屈曲

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摘要

Web-post buckling behaviors of fully and partially protected cellular steel beams at elevated temperatures in a fire were investigated through verified finite element models. The partially protected cellular steel beam represented a protected cellular steel beam with the hole edge left unprotected. The temperature distribution in the web-post was non-uniform, even for the unprotected CSB and the fully protected CSB. The fire resistance time of a CSB increased linearly with the increase in fire coating thickness. However, for the partially protected cellular steel beam, the temperature gradient in the web-post becomes greater with the increase in the fire protection thickness. And with the increase in the fire protection thickness, the increment in the fire resistance time decreased. Additional thermal stress occurred due to the non-uniform thermal strain in the web-post When web-post buckled, the principle compression stress in the web-post decreased suddenly. The stress at the center of the web-post could change from compression to tension due to the membrane action caused by the large buckling deformation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过验证的有限元模型,研究了完全和部分保护的蜂窝状钢梁在高温下在火灾中的网柱屈曲行为。部分受保护的蜂窝状钢梁代表孔边缘未受保护的受保护的蜂窝状钢梁。即使对于未保护的CSB和完全保护的CSB,腹板柱中的温度分布也不均匀。 CSB的耐火时间随防火涂层厚度的增加而线性增加。但是,对于部分保护的蜂窝状钢梁,随着防火厚度的增加,腹板柱中的温度梯度会变大。并且随着防火厚度的增加,耐火时间的增加减少。由于腹板立柱中不均匀的热应变而产生了额外的热应力。当腹板立柱弯曲时,腹板立柱中的主要压缩应力突然减小。由于大屈曲变形引起的膜作用,腹板支柱中心的应力可能会从压缩状态变为张紧状态。 (C)2015 Elsevier Ltd.保留所有权利。

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