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Influence of Cooling Methods on the Residual Mechanical Behavior of Fire-Exposed Concrete: An Experimental Study

机译:冷却方式对火烧混凝土残余力学性能的影响:实验研究

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摘要

This work reports the main conclusions of a study on the mechanical behavior of concrete under ISO 834 fire with different cooling methods. The aim of this research was to provide reliable data for the analysis of structures damaged by fire. The experimental program used cylindrical concrete test specimens subjected to ISO 834 heating in a furnace up to maximum gas temperatures of 400, 500, 600, 700, and 800 °C. The compressive strength was measured in three situations: (a) at the different temperature levels reached in the furnace; (b) after a natural cooling process; and (c) after aspersion with water at ambient temperature. The results indicate that the concrete residual compressive strength is fairly dependent on the maximum temperature reached in the furnace and revealed that concrete of a lower strength preserved relatively higher levels of strength. The cooling method significantly influenced the strength, albeit at a lower intensity. In all cases, the residual strength remained in the range of 38% to 67% of the strength at ambient temperature. The statistical analysis showed that the data obtained by the experimental program are significant and confirmed the influence of the conditions imposed on the residual strength.
机译:这项工作报告了在采用不同冷却方法的ISO 834火灾下混凝土力学性能研究的主要结论。这项研究的目的是为火灾损坏的结构分析提供可靠的数据。该实验程序使用的圆柱形混凝土试样在炉中经过ISO 834加热,最高气体温度为400、500、600、700和800°C。在三种情况下测量了抗压强度:(a)在炉中达到的不同温度水平下; (b)在自然冷却过程之后; (c)在环境温度下用水洒后。结果表明,混凝土的残余抗压强度相当依赖于炉内达到的最高温度,并表明强度较低的混凝土保持相对较高的强度。冷却方法对强度的影响很大,尽管强度较低。在所有情况下,残余强度都保持在环境温度下强度的38%至67%的范围内。统计分析表明,通过实验程序获得的数据是有意义的,并证实了施加条件对残余强度的影响。

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