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首页> 外文期刊>Journal of structural engineering >Uncertainly Analysis of Flexural Overstrength for Capacity Design of RC Beams
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Uncertainly Analysis of Flexural Overstrength for Capacity Design of RC Beams

机译:RC梁承载力设计的抗弯超强度不确定分析

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To ensure an overall ductile structural behavior, the reinforcing steel used in the seismic design of reinforced concrete (RC) structures is governed by certain specific requirements given in many international codes, such as the Eurocodes and the recently released Italian Building Code (IBC). This study's primary focus is the statistical analysis of reinforcing steel properties, based on data from over 600 material tests. The data sets considered include a wide range of reinforcing steel bars (from 12 to 26 mm) provided by different Italian industries and used for a large structure built in Naples (Southern Italy). The test results are analyzed to determine the appropriate cumulative distribution function for yield and ultimate strengths, as well as the ultimate deformation, and other statistical parameters of interest as defined in the codes. The comparison with previous tests confirms an improvement in the quality of materials, as reflected in reduced variability and increased bias factors, consistent with other investigators' recent findings. Finally, this study investigates the flexural overstrength of RC beams designed according to the current IBC-consistent with Eurocodes-and the accuracy of code requirements in light of realistic material models both for concrete and reinforcing steel and of uncertainties associated with mechanical models, structural members geometry, and material properties (as obtained in this study for reinforcing steel). The obtained results show that code provisions do not seem conservative and provide a basis for an improved calibration of future editions of seismic design codes for buildings.
机译:为了确保整体的延性结构性能,钢筋混凝土(RC)结构的抗震设计中使用的钢筋受许多国际法规(例如,欧洲法规和最近发布的意大利建筑法规(IBC))中的某些特定要求约束。这项研究的主要重点是基于来自600多种材料测试的数据对钢筋性能进行统计分析。考虑的数据集包括意大利不同行业提供的各种钢筋(12至26 mm),用于那不勒斯(意大利南部)建造的大型结构。分析测试结果,以确定屈服强度和极限强度以及极限变形和规范中定义的其他统计参数的适当累积分布函数。与先前测试的比较证实了材料质量的改善,这反映在可变性降低和偏倚因素增加上,这与其他研究人员的最新发现一致。最后,本研究调查了根据当前IBC设计与欧洲规范一致的RC梁的抗弯强度,以及根据混凝土和钢筋的实际材料模型以及与机械模型,结构构件相关的不确定性而确定的规范要求的准确性几何形状和材料特性(如本研究中的钢筋)。获得的结果表明,规范规定似乎并不保守,并为改进对建筑物抗震设计规范未来版本的校准提供了基础。

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