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Thermal performance of axially restrained steel beams with slant end-plate connections

机译:倾斜的端板连接的轴向约束钢梁的热性能

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摘要

Steel beams restrained at their ends exhibit lower structural performance when subjected to thermally induce axial expansion. In this regard, the design of the connection plays an utmost essential role in restrained beams in order to dissipate the thermal force. Most existing studies on the thermal behaviour of connections have so far focused only on conventionally vertical end-plate type. This research describes mechanical behaviour of axially restrained steel beams with slant end-plate connection under thermal increase and gravity loads (symmetric and non-symmetric). The analytical, numerical and experimental approaches were used in this study. The analytical method was designed to simplify and simulate the proposed slant end-plate connections based on force equilibrium at the connection. The numerical approach was employed to expand the analytical simplified models by direct stiffness method and 3D finite element computer program (ABAQUS). As a verification, three specimens with different sizes and slanting angles were tested in the laboratory as well as studied using analytical and finite element models. The results of the analytical and numerical approaches as well as experimental tests proved that the slant end-plate connection can successfully reduce the extra thermal axial forces through small upward sliding at the end of the beam on the inclined end-plates. The results demonstrated that the steel beam with slant end-plate connections can reduce the thermal axial stress from 80% to 90% in comparison to the vertical end-plate connections. For the influence of pattern of loading it was concluded that the axial load-bearing of a steel beam under symmetric gravity load is higher than similar case under non-symmetric load at room temperature but, these values are the same at elevated temperature conditions. Based on the good agreement between theoretical and experimental methods, a series of design curves were developed as a safe practical range for the slant end-plate connections which depends on the geometrical and mechanical conditions of the connection.
机译:受热约束轴向膨胀时,受其约束的钢梁表现出较低的结构性能。在这方面,连接的设计在约束梁中起着至关重要的作用,以消散热力。迄今为止,有关连接器热行为的大多数现有研究仅集中于常规的垂直端板类型。这项研究描述了在热增加和重力载荷(对称和非对称)下具有倾斜端板连接的轴向约束钢梁的力学行为。在这项研究中使用了分析,数值和实验方法。分析方法旨在简化和模拟基于连接处的力平衡的拟议倾斜端板连接。通过直接刚度法和3D有限元计算机程序(ABAQUS),采用数值方法来扩展解析简化模型。作为验证,在实验室中测试了三个具有不同大小和倾斜角度的标本,并使用分析和有限元模型进行了研究。分析和数值方法以及实验测试的结果证明,倾斜的端板连接可以通过梁末端在倾斜端板上的较小向上滑动而成功减小额外的热轴向力。结果表明,与垂直端板连接相比,带有倾斜端板连接的钢梁可以将轴向热应力从80%降低到90%。对于载荷模式的影响,可以得出结论,在对称重力载荷下,钢梁的轴向承载力比在室温下非对称载荷下的相似情况要高,但是在高温条件下,这些值是相同的。基于理论方法和实验方法之间的良好一致性,开发了一系列设计曲线,将其作为斜端板连接的安全实用范围,这取决于连接的几何和机械条件。

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    Zahmatkesh Farshad;

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  • 年度 2015
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