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Storey-based stability of unbraced steel frames under piece-linear temperature distributions

机译:分段线性温度分布下无支撑钢框架的基于层的稳定性

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There are many cases where the elastic modulus of a structural member will vary longitudinally, such as when a steel column is heated by fire. In such a case, the fire can compromise the integrity of the structural frame. It is therefore necessary in stability analysis to accurately analyze members with longitudinally varying elastic modulus. A new analytical method is derived to evaluate the stability of an unbraced steel frame containing members that each consist of up to three segments of differing elastic modulus. The method is presented in the form of a lateral stiffness equation, which characterises the loss of stability in a frame when its lateral stiffness diminishes to zero. The proposed method is also demonstrated via a numerical example by analyzing the case of a post-blast explosion fire whereby the insulation along a segment of any member is damaged. A scenario analysis was also conducted to identify the most vulnerable location in a frame, whereby the damage to insulation resulting from a blast causes the greatest reduction to the fire resistance. From a design standpoint, the most vulnerable locations can be identified and further protected to improve safety. The proposed method provides more accurate assessments of frame stability in cases where elastic modulus vary longitudinally in members, and is validated via finite element analysis.
机译:在许多情况下,例如当用火加热钢柱时,结构构件的弹性模量会沿纵向变化。在这种情况下,火灾可能会损害结构框架的完整性。因此,在稳定性分析中必须精确地分析具有纵向变化的弹性模量的构件。推导了一种新的分析方法来评估无支撑钢框架的稳定性,该框架的每个构件最多由三个具有不同弹性模量的部分组成。该方法以侧向刚度方程的形式表示,该方程表征了框架的侧向刚度减小到零时稳定性的损失。还通过数值示例通过分析爆炸后爆炸火灾的情况来说明所提出的方法,从而破坏了沿任何部件的绝缘层。还进行了情景分析,以识别框架中最易损坏的位置,从而爆炸带来的对绝缘的损坏会最大程度地降低耐火性。从设计的角度来看,可以确定最脆弱的位置并进一步加以保护以提高安全性。所提出的方法可以在构件的弹性模量纵向变化的情况下提供更准确的框架稳定性评估,并通过有限元分析进行了验证。

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