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The Influence of Heating-up and Rapid Cooling on an Axially Restrained Steel Column in Fire

机译:加热和快速冷却在轴向束缚钢柱中的影响

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Heating-up and rapid cooling by spray water had a large impact on the mechanics and deformation behavior for an axially restrained steel column. During heating, the axial force of the restrained steel columns increased in linearly. During rapid cooling, its axial force rapidly decreased until zero, and then it increased until the peak, and the max axial force was about 16% larger than that produced at heating, and its max bending moment was about 20% lager than that produced at heating. Axially restrained stiffness had a negative affection for its bearing capacity. When the axial stiffness ratio was less than 0.05, the buckling and failure temperature was relatively close, but when it was more than 0.05, there was a significant difference between them. Rotationally restrained stiffness played a beneficial role in its stable bearing capacity in fire. When its rotational stiffness ratio was less than 0.4, the rotational restrained stiffness had a large beneficial effect on its stability, but when the rotational stiffness ratio was more than 0.4, this beneficial effect was relatively small.
机译:喷水加热和快速冷却对轴向束缚的钢柱的力学和变形行为产生了很大的影响。在加热期间,抑制钢柱的轴向力线性增加。在快速冷却过程中,其轴向力快速降低至零,然后其增加至峰值,并且最大轴向力比在加热时产生的大约16%,其最大弯曲力矩约为20%的液体比在加热。轴向抑制的刚度对其承载力具有负面影响。当轴向刚度比小于0.05时,屈曲和失效温度相对接近,但是当它大于0.05时,它们之间存在显着差异。旋转克制的刚度在其稳定的承载能力中起着有益的作用。当其旋转刚度比小于0.4时,旋转抑制的刚度对其稳定性具有大的有益效果,但是当旋转刚度比大于0.4时,这种有益效果相对较小。

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