Daugevičius Mykolas, Valivonis Juozas, Skuturna Tomas
Department of Reinforced Concrete Structures and Geotechnics, Vilnius Gediminas Technical University, LT-10223 Vilnius, Lithuania.
Materials (Basel). 2019 Apr 26;12(9):1367. doi: 10.3390/ma12091367.
The article analyses the calculation of the deflection of reinforced concrete beams strengthened with fiber reinforced polymer. This paper specifically focuses on estimating deflection when the yielding of reinforcement is reached. The article proposes a simple method for calculating deflection that was compared with the experimentally predicted deflection. The carried out comparison has showed that the proposed method is suitable not only for the strengthened beams but also for the reinforced concrete beams with a varying reinforcement ratio. The suggested calculation method is based on the effective moment of inertia, such as the one introduced in the ACI Committee 318 Building Code Requirement for Structural Concrete (ACI318). The development of deflection was divided into three stages, and equations for the effective moment of inertia were proposed considering separate stages. In addition, the put forward equations were modified attaching additional relative coefficients evaluating a change in the depth of the neutral axis.
本文分析了纤维增强聚合物加固钢筋混凝土梁的挠度计算。本文特别关注钢筋达到屈服时的挠度估算。文章提出了一种计算挠度的简单方法,并与实验预测挠度进行了比较。所进行的比较表明,该方法不仅适用于加固梁,也适用于配筋率不同的钢筋混凝土梁。建议的计算方法基于有效惯性矩,如美国混凝土学会(ACI)318委员会《结构混凝土建筑规范要求》(ACI318)中引入的有效惯性矩。挠度的发展分为三个阶段,并针对不同阶段提出了有效惯性矩的方程。此外,通过附加评估中性轴深度变化的相对系数对提出的方程进行了修正。