火灾对钢筋混凝土梁混凝土构件及性能的影响

Xin Gongfeng, Wang Baoqun, Zhang Huiqin, Xing Dejin
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摘要

本文采用实验方法对火灾发生后的钢筋混凝土桥梁混凝土板的组成和微观结构进行了研究,结果表明火灾发生后混凝土板的组成和微观结构会发生显著变化。具体而言,RC梁在低温(低于400℃)下受火后,由于混凝土中水泥石料结构相对致密,火产物由致密水化硅酸钙转变为岛状硅酸钙,导致结构松动。RC梁在高温(高于400℃)下受火后,混凝土内部晶体的分解使结构内部产生大量裂缝和空洞,导致混凝土微观损伤,强度下降。通过试验研究,初步揭示了RC桥梁火灾后的损伤机理。为桥梁性能劣化问题的研究奠定了理论基础。
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Influence of Fire on the Component and Performance for the Concrete of Reinforced Concrete Beams
This paper adopts experimental methods to investigate the component and microstructure of the concrete slab in reinforced concrete (RC) bridges after fire hazards, and the obtained results show that the com ponent and microstructure of concrete slabs will change significantly after fire hazards. Specifically, after the RC beams undergo a fire in low temperature (lower than 400°C), since the structure of cement stone in concrete is relatively compact, the fire product transforms from compact hydrated calcium silicate to island-like calcium silicate, leading the structure to become loose. After the RC beams undergo a fire in high temperature (higher than 400°C), the decomposition of the crystal inside the concrete causes large number of cracks and voids inside the structure, leading to the microscopic damage and decrease in strength of concrete. This paper preliminarily reveals the damage mechanism of RC bridges after fire hazards through the experimental study. It lays a theoretical foundation for the research of bridges’ performance deterioration.
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