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The flexibility of steel hollow tubular sections subjected to thermal and mechanical loads

机译:经受热电和机械负载的钢中空管状部分的灵活性

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Numerical analysis of hollow tubular sections is used as a starting tool to establish the reliability assessment of these elements when mechanically or thermally loaded. To quantify the material deformation behaviour of these elements resulting from ground motion, crack propagation, effects from high temperatures, theoretical and experiments analyses can be used for testing a service reliable guarantee. Structural hollow sections have excellent static properties, not only with regard to buckling and torsion, but also in the overall design of members. They can offer economic advantages compared to open sections. It is possible to change the strength by varying the wall thickness or filling the section with other material without changing the external geometry. Flexibility is an important parameter in hollow tubular systems when subjected to thermal or mechanical loads. This work presents a numerical analysis technique based on the finite element method for thermal and mechanical non-linear behaviour. Temperature field will be calculated according to non-steady conditions when submitted to standard ISO834 and non-linear material properties foreseen in Eurocode standards (EC1 and EC3). This work will present a complete study of the flexibility analysis for a wide range of pipe dimensions, and the obtained results are then compared with design rules.
机译:中空管状部分的数值分析用作起始工具,以在机械或热负载时建立这些元素的可靠性评估。为了量化由地面运动产生的这些元件的材料变形行为,裂纹传播,高温效果,理论和实验分析可用于测试服务可靠保证。结构中空部分具有优异的静态特性,不仅关于弯曲和扭转,而且在成员的整体设计中。与开放部分相比,它们可以提供经济优势。通过改变壁厚或用其他材料填充部分而不改变外部几何形状,可以改变强度。灵活性是在经受热或机械载荷时中空管状系统的重要参数。该工作提出了一种基于用于热和机械非线性行为的有限元方法的数值分析技术。当提交给标准ISO834和EUROCODE标准的标准ISO834和非线性材料特性(EC1和EC3)之前,将根据非稳定条件计算温度场。这项工作将对各种管道尺寸的灵活性分析进行完整的研究,然后将获得的结果与设计规则进行比较。

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