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A meso-level investigation into the explosive spalling mechanism of high-performance concrete under fire exposure

机译:火灾下高性能混凝土爆炸剥落机理的中观研究

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摘要

High-performance concrete (HPC) is prone to spalling under fire conditions. However, few quantitative theoretical studies on the spalling mechanism are available in the literature and the spalling mechanism has not been well interpreted. In this paper, the spalling behavior of cubic specimens is numerically modeled and the spalling mechanism is investigated at a meso-level. In modeling, the temperature field, the thermal decomposition of cement paste, the build-up vapor pressure, the moisture transport, and the distribution and evolution of thermal stresses in concrete are analyzed in a quantitative manner. Based on the numerical results, the spalling mechanism is interpreted from different angles. It is concluded that the explosive spalling of HPC specimens under fire exposure is mainly attributed to the temperature gradient-induced thermal stress.
机译:高性能混凝土(HPC)在着火条件下易于剥落。但是,文献中很少有关于剥落机制的定量理论研究,剥落机制还没有得到很好的解释。本文对立方试样的剥落行为进行了数值模拟,并在细观水平上研究了剥落机理。在建模中,定量分析了温度场,水泥浆的热分解,累积的蒸汽压,水分输送以及混凝土中热应力的分布和演变。基于数值结果,从不同角度解释了剥落机理。结论是,HPC试样在火中爆炸性剥落主要归因于温度梯度引起的热应力。

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