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无抗剪钢筋的纤维增强塑料(FRP)增强混凝土板的冲切抗剪强度:可靠性评估

Punching Shear Strength of FRP-Reinforced Concrete Slabs without Shear Reinforcements: A Reliability Assessment.

作者信息

Alkhatib Soliman, Deifalla Ahmed

机构信息

Basic Sciences Department, Faculty of Engineering and Technology, Future University in Egypt, New Cairo 11835, Egypt.

Structural Engineering and Construction Management Department, Faculty of Engineering and Technology, Future University in Egypt, New Cairo 11835, Egypt.

出版信息

Polymers (Basel). 2022 Apr 25;14(9):1743. doi: 10.3390/polym14091743.

Abstract

The recent failure of buildings because of punching shear has alerted researchers to assess the reliability of the punching shear design models. However, most of the current research studies focus on model uncertainty compared to experimentally measured strength, while very limited studies consider the variability of the basic variables included in the model and the experimental measurements. This paper discusses the reliability of FRP-reinforced concrete slabs' existing punching shear models. First, more than 180 specimens were gathered. Second, available design codes and simplified models were selected and used in the calculation. Third, several reliability methods were conducted; therefore, three methods were implemented, including the mean-value first-order second moment (MVFOSM) method, the first-order second moment (FOSM) method, and the second-order reliability method (SORM). A comparison between the three methods showed that the reliability index calculated using the FOSM is quite similar to that using SORM. However, FOSM is simpler than SORM. Finally, the reliability and sensitivity of the existing strength models were assessed. At the same design point, the reliability index varied significantly. For example, the most reliable was the JSCE, with a reliability index value of 4.78, while the Elgendy-a was the least reliable, with a reliability index of 1.03. The model accuracy is the most significant parameter compared to other parameters, where the sensitivity factor varied between 67% and 80%. On the other hand, the column dimension and flexure reinforcement are the least significant parameters compared to other parameters where the sensitivity factor was 0.4% and 0.3%, respectively.

摘要

近期建筑物因冲切破坏而引发的问题,促使研究人员对冲切设计模型的可靠性进行评估。然而,目前大多数研究集中在模型不确定性与试验实测强度的比较上,而考虑模型及试验测量中基本变量变异性的研究非常有限。本文讨论了纤维增强复合材料(FRP)加固混凝土板现有冲切模型的可靠性。首先,收集了180多个试件。其次,选择现有的设计规范和简化模型并用于计算。第三,采用了几种可靠性方法,实施了三种方法,包括均值一次二阶矩(MVFOSM)法、一次二阶矩(FOSM)法和二阶可靠性方法(SORM)。三种方法的比较表明,用FOSM计算的可靠性指标与用SORM计算的非常相似。然而,FOSM比SORM更简单。最后,评估了现有强度模型的可靠性和敏感性。在相同设计点,可靠性指标差异显著。例如,最可靠的是日本土木学会(JSCE)模型,可靠性指标值为4.78,而埃尔根迪-a模型最不可靠,可靠性指标为1.03。与其他参数相比,模型精度是最重要的参数,其敏感系数在67%至80%之间变化。另一方面,与其他参数相比,柱尺寸和抗弯钢筋是最不重要的参数,其敏感系数分别为0.4%和0.3%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ddb/9105794/51ac5234fbc8/polymers-14-01743-g001.jpg

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