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Analysis of restrained steel beams subjected to heating and cooling Part I: Theory

机译:受约束的钢梁受热和受冷分析第一部分:理论

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Observations from experiments and real fire indicate that restrained steel beams have better fire-resistant capability than isolated beams. Due to the effects of restraints, a steel beam in fire condition can undergo very large deflections and the run away damage may be avoided. In addition, axial forces will be induced with temperature increasing and play an important role on the behaviour of the restrained beam. The factors influencing the behavior of a restrained beam subjected to fire include the stiffness of axial and rotational restraints, the load type on the beam and the distribution of temperature in the cross-section of the beam, etc. In this paper, a simplified model is proposed to analyze the performance of restrained steel beams in fire condition. Based on an assumption of the deflection curve of the beam, the axial force, together with the strain and stress distributions in the beam, can be determined. By integrating the stress, the combined moment and force in the cross-section of the beam can be obtained. Then, through substituting the moment and axial force into the equilibrium equation, the behavior of the restrained beam in fire condition can be worked out. Furthermore, for the safety evaluation and repair After a fire, the behaviour of restrained beams during cooling should be understood. For a restrained beam experiencing very high temperatures, the strength of the steel will recover when temperature decreases, but the contraction force, which is produced by thermal contraction, will aggravate the tensile stresses in the beam. In this paper, the behaviour of the restrained beam in cooling phase is analyzed, and the effect of the contraction force is discussed.
机译:从实验和实际火灾中观察到的结果表明,受约束的钢梁比隔离梁具有更好的耐火性能。由于约束的作用,处于火灾状态的钢梁可能会发生很大的挠曲,并且可以避免失控损坏。此外,轴向力会随着温度的升高而产生,并在约束梁的行为中起重要作用。影响约束梁受火行为的因素包括轴向约束和旋转约束的刚度,梁上的载荷类型以及梁横截面的温度分布等。本文采用简化模型建议分析受约束钢梁在火灾条件下的性能。基于梁的挠曲曲线的假设,可以确定轴向力以及梁中的应变和应力分布。通过积分应力,可以获得梁横截面中的组合力矩和力。然后,通过将力矩和轴向力代入平衡方程,可以计算出束缚梁在火场中的行为。此外,为了进行安全评估和维修,火灾后应了解冷却过程中束流的行为。对于受约束的梁,其温度会很高,当温度降低时,钢的强度会恢复,但是由热收缩产生的收缩力会加剧梁中的拉应力。本文分析了约束梁在冷却阶段的行为,并讨论了收缩力的影响。

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