Method of Identification of Mechanical Characteristics of Concrete of Reinforced Concrete Crossbars according to the Results of Fire Tests

S. Pozdieiev, O. Nekora, S. Fedchenko, T. Shnal
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Abstract

The article substantiates the method of identifying the mechanical characteristics of concrete of reinforced concrete beams based on the results of fire tests. The idea of the work is to improve the calculation approach to assessing the fire resistance of reinforced concrete beams by clarifying the mechanical characteristics of concrete during its heating under the conditions of exposure to the standard fire temperature regime. The proposed method of identifying the mechanical characteristics of concrete is based on the reproduction of temperature distributions in the cross-sections of reinforced concrete beams based on the results of point temperature measurements during fire tests and the application of equilibrium equations compiled using the deformation mathematical model of the stress-strain state. As a result of the obtained experimental data, the temperature distributions were reproduced using the proposed interpolation method. According to the obtained temperature distributions and the proposed mathematical apparatus, the coefficient of reduction in the concrete strength of reinforced concrete beams during fire tests was identified, the maximum deflection of two sample reinforced concrete beams was determined, and using a deformation model based on the use of equilibrium systems of internal layers in the cross section of reinforced concrete beams, the coefficient of reduction of strength of concrete under the condition of exposure to the standard fire temperature regime was specified.. The presented curves of the value of the coefficient of reduction of concrete strength according to the proposed method and according to the recommendations of Eurocode 2 indicate the presence of a deviation between these indicators. Therefore, the refined dependence of the coefficient of reduction of concrete strength for reinforced concrete crossbars will allow to significantly increase the accuracy of the calculation method of fire resistance assessment for structural elements of this type.
基于火灾试验结果的钢筋混凝土横梁混凝土力学特性鉴定方法
本文提出了基于火灾试验结果识别钢筋混凝土梁混凝土力学特性的方法。这项工作的想法是通过澄清混凝土在暴露于标准火灾温度条件下加热时的力学特性来改进评估钢筋混凝土梁耐火性的计算方法。本文提出的识别混凝土力学特性的方法是基于火灾试验中点温度测量结果再现钢筋混凝土梁截面的温度分布,并应用应力-应变状态变形数学模型编制的平衡方程。根据所获得的实验数据,利用所提出的插值方法再现了温度分布。根据得到的温度分布和提出的数学装置,确定了火灾试验中钢筋混凝土梁的混凝土强度折减系数,确定了两个样品钢筋混凝土梁的最大挠度,并采用了基于钢筋混凝土梁截面内层平衡体系的变形模型。给出了混凝土在标准火灾温度条件下的强度折减系数。根据所提出的方法和根据欧洲规范2的建议所提出的混凝土强度折减系数值曲线表明这些指标之间存在偏差。因此,对钢筋混凝土横梁的混凝土强度折减系数的细化依赖将大大提高这类结构构件耐火评估计算方法的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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