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Structural performance of steel beams and frames with slant end-plate connections at elevated temperature

机译:倾斜端板连接的钢梁和框架在高温下的结构性能

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Thermal expansion remains as one of the most hazardous conditions a restrained steel beam could experience throughout its service life. In this regard, the design of connections plays an important role in dissipating the thermal axial force resulted from such deformation. In this paper, the finite element method (FEM) has been employed to investigate the thermal performance of the steel beam with slant connections under gravity and thermal loads. The numerical outcomes agree very well with the analytical and experimental approaches, thus demonstrating a good reliability of the model to assess the thermal performance of the steel frames with slant end-plate connections. In addition, the proposed and conventional end-plate connections are modelled separately in two 7-storey steel frames to examine their comparative thermal performance. The numerical results conclude that the thermal behaviour of steel frame with the slant end-plate connection is superior to that using conventional since it is capable to dissipate considerably the experienced additional thermal axial forces.
机译:受限制的钢梁在其整个使用寿命中都可能经历最危险的情况之一,即热膨胀。在这方面,连接的设计在消除由这种变形引起的热轴向力方面起着重要作用。本文采用有限元方法(FEM)来研究重力和热载荷作用下倾斜连接的钢梁的热性能。数值结果与分析和实验方法非常吻合,从而证明了该模型具有良好的可靠性,可以评估带有倾斜端板连接的钢框架的热性能。此外,在两个7层高的钢框架中分别对建议的端板连接和传统的端板连接进行建模,以检查它们的比较热性能。数值结果表明,倾斜端板连接的钢框架的热性能优于传统的钢框架,因为它能够有效地消除所承受的额外热轴向力。

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