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Prediction of mechanical properties of light gauge steels at elevated temperatures

机译:轻型钢在高温下的机械性能预测

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The deterioration of the mechanical properties of yield strength and modulus of elasticity is considered as the primary element affecting the performance of steel structures under fire. However, the variation of mechanical properties for light gauge and high strength steels at elevated temperatures is not known. Steels with thicknesses less than 1 mm and yield strengths greater than 500 MPa are commonly used in Australia. Therefore, an extensive experimental study into the deterioration of mechanical properties for both low and high strength light gauge steels under elevated temperatures was conducted to derive accurate reduction factors for mechanical properties in fire safety design. This study included light gauge cold-formed steels with three steel grades and six thicknesses from 0.4 to 1.2 mm. This paper presents the details of the experimental study, the results, the empirical equations for the reduction factors and a stress-strain model at elevated temperatures.
机译:屈服强度和弹性模量的机械性能下降被认为是影响着火钢结构性能的主要因素。但是,轻量级钢和高强度钢在高温下的机械性能变化是未知的。在澳大利亚,通常使用厚度小于1毫米且屈服强度大于500 MPa的钢。因此,对低强度和高强度轻规格钢在高温下的机械性能劣化进行了广泛的实验研究,以得出防火设计中机械性能的准确降低因子。这项研究包括轻型冷弯型钢,具有三种钢种和六种厚度,从0.4到1.2 mm。本文介绍了实验研究的细节,结果,折减系数的经验方程式和高温下的应力应变模型。

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