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Residual behavior of steel rebars and R/C sections after a fire

机译:火灾后钢筋和R / C型材的残留行为

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The mechanical properties of various steel bars exposed to high temperature ("residual" properties) are experimentally investigated up to 850 ℃, with reference to a number of steel and bar types (carbon and stainless steel; quenched and self-tempered bars; hot-rolled and cold-worked bars; smooth and deformed bars). The aim is to clarify to what extent the thermal sensitivity of the different bars affects the ultimate capacity of a typical R/C section subjected to an eccentric axial force, past a fire ("residual" capacity). As usual in the design of R/C sections under combined bending and axial loading, the ultimate behavior is represented through the "M-N envelopes", where the materials strength decay due to high temperature is taken into account. The results show that quenched and self-tempered bars (QST), very popular in Europe, are more temperature-sensitive above 600 ℃ than the carbon-steel bars extensively used in the States and nowadays rarely used in Europe. Furthermore, the best response is exhibited by the stainless-steel bars, provided that they are hot rolled, as it is generally the case for medium- and large-diameter bars. Similar conclusions can be drawn for the sections reinforced with the different bar types.
机译:根据多种钢和棒材类型(碳和不锈钢;淬火和自回火棒材;热态),对高达850℃的各种暴露于高温的钢筋的机械性能(“残余”性能)进行了实验研究。轧制和冷加工的钢筋;光滑且变形的钢筋)。目的是弄清不同棒材的热敏性在多大程度上影响着典型的R / C截面承受偏心轴向力而着火的极限容量(“剩余”容量)。像在弯曲和轴向载荷共同作用下的R / C截面设计中一样,最终性能通过“ M-N包络线”表示,其中考虑了由于高温导致的材料强度衰减。结果表明,在欧洲非常流行的淬火和自回火钢筋(QST)在600℃以上比在美国广泛使用的碳钢钢筋对温度敏感,如今在欧洲很少使用。此外,如果不锈钢棒是热轧的,则表现出最好的响应,这通常是中直径和大直径棒的情况。对于用不同钢筋类型增强的截面,可以得出类似的结论。

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