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Probabilistic assessment of torsion in concrete beams externally strengthened with CFRP composites

机译:CFRP复合材料体外加固混凝土梁的扭转概率评估

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This paper illustrates an analytical probabilistic study of concrete beams subjected to torsion that are strengthened with carbon fiber reinforced polymer (CFRP). Hii and Al-Mahaidi's method is one of the best analytical models for evaluating the torsional capacity of CFRP strengthened reinforced concrete beams. The first-order reliability method is carried out to probabilistically assess the capacity of CFRP-strengthened beams. For this aim, the statistical characteristics of design variables and model errors have been considered, followed by the determination of the average reliability indexes of the strengthened beams. The effect of each design variable on the average reliability is also determined. The assessment shows that the Hii and Al-Mahaidi's analytical model is unconservative. In order to correct the situation, a more relaxed set of resistance factors for use in a load and resistance factor design format are needed. These are then determined for two target reliability levels of β_T = 3.0 and β_T = 3.5. It is found that factors of 0.9200 and 0.8225 are needed for target reliability levels, β_T = 3.0 and β_T = 3.5, respectively. Values of 0.9 and 0.8 are suggested for use in real practice depending on the target reliability sought.
机译:本文说明了用碳纤维增强聚合物(CFRP)加固的受扭混凝土梁的分析概率研究。 Hii和Al-Mahaidi的方法是评估CFRP增强钢筋混凝土梁抗扭性能的最佳分析模型之一。进行一级可靠性方法以概率评估CFRP加固梁的能力。为此,考虑了设计变量和模型误差的统计特性,然后确定了加固梁的平均可靠性指标。还确定每个设计变量对平均可靠性的影响。评估显示,Hii和Al-Mahaidi的分析模型不保守。为了纠正这种情况,需要在负载和电阻系数设计格式中使用更为宽松的电阻系数集。然后针对两个目标可靠性水平β_T= 3.0和β_T= 3.5确定这些值。发现目标可靠性水平分别需要0.9200和0.8225的系数,β_T= 3.0和β_T= 3.5。建议在实际实践中使用0.9和0.8的值,具体取决于寻求的目标可靠性。

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