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A safety-based evaluation of strut-and-tie methods for shear design of RC deep beams in accordance with international concrete codes

机译:根据国际具体规范,基于安全和系带剪切设计的剪切方法评价

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On the basis of strut-and-tie models (STMs) in accordance with international concrete codes such as ACI 318-14, AASHTO LRFD, CSA A23.3, Eurocode2 and fib MC 2010, a safety-based evaluation of shear design methods for RC deep beams was performed and is reported in this paper. The variability in load actions and member resistances consisting of uncertainty in material characteristics, fabrication tolerances and modeling uncertainties were taken into account as random variables. Using Rackwitch-Fiessler’s procedure with typical ranges for normal and high strength concrete and an extensive range of live-to-dead load ratios, the reliability or safety indices used to measure the safety level were investigated. It was found that the deep beams made from normal strength concrete and designed using STMs following the international concrete codes considered here provided a satisfactory safety level. Finally, for each of the STMs for design of deep beams, probability-based reduction factors are suggested to fulfill the target reliability index by greater than 3.5.
机译:根据诸如ACI 318-14,AASHTO LRFD,CSA A23.3,EURODODE2和FIB MC 2010等国际具体代码的Strut-and-Tie模型(STMS)的基础,是一种基于安全的剪切设计方法评估在本文中进行了RC深梁。作为随机变量考虑了材料特征,制造公差和建模不确定性的不确定度组成的负载动作和成员电阻的可变性。使用Rackwitch-Fiessler的程序具有典型的正常和高强度混凝土的范围,并研究了用于测量安全水平的可靠性或安全指标。发现,由正常强度混凝土制成的深梁,并在这里考虑的国际具体码之后使用STMS提供了令人满意的安全水平。最后,对于用于设计深光束的设计的每个STM,建议基于概率的降低因子来满足目标可靠性指数大于3.5。

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