Khaleel Ibrahim Sarah, Movahedi Rad Majid
Department of Structural and Geotechnical Engineering, Széchenyi István University, 9026 Gyor, Hungary.
Polymers (Basel). 2023 Jan 22;15(3):569. doi: 10.3390/polym15030569.
The plastic behavior of strengthened haunched beams utilizing carbon fiber-reinforced polymers (CFRP) was investigated using a probabilistic design that took into account random concrete properties, CFRP properties, and complementary strain energy values, with the reliability index serving as a limiting index, as the proposed method considers a novel method that deals with probabilistic parameters for models with limited plastic behavior designed based on the reliability index. The data used in this research were gathered and evaluated in a recent study on simply supported haunched beams reinforced with carbon fiber-reinforced polymers. The purpose of this research was to use the reliability limitation index for simulated strengthened haunched beams by taking into account randomness in concrete and CFRP properties and the complementary strain energy value, which is considered a plastic behavior controller that provides an illustration of the damage amount within the reinforcement steel bars. The results indicate how randomness affects the behavior of the presented models, which are chosen to have different numbers of CFRP strips. The variable randomness affects load and deflection values where the reliability index value increases as the corresponding load value decrease, reflecting the increased probability of failure in models subjected to higher loading conditions, while tension concrete damage percentages are reflected in the damage pattern presented in the results, showing that as the produced load increases, so does the damage intensity. It is also obvious that the reliability index served as a limitation index while taking concrete characteristics and complementary strain energy as random variables.
利用概率设计方法研究了采用碳纤维增强聚合物(CFRP)加固的加腋梁的塑性行为,该方法考虑了混凝土性能、CFRP性能和互补应变能值的随机性,并将可靠指标作为极限指标,因为所提出的方法考虑了一种处理基于可靠指标设计的有限塑性行为模型概率参数的新方法。本研究中使用的数据是在最近一项关于用碳纤维增强聚合物加固的简支加腋梁的研究中收集和评估的。本研究的目的是通过考虑混凝土和CFRP性能的随机性以及互补应变能值(其被视为塑性行为控制器,可说明钢筋内的损伤量),将可靠极限指标用于模拟加固加腋梁。结果表明随机性如何影响所提出模型的行为,这些模型被选择具有不同数量的CFRP条带。可变随机性影响荷载和挠度值,其中可靠指标值随着相应荷载值的降低而增加,这反映了在较高荷载条件下模型失效概率的增加,而受拉混凝土损伤百分比反映在结果中呈现的损伤模式中,表明随着产生的荷载增加,损伤强度也增加。同样明显的是,在将混凝土特性和互补应变能作为随机变量时,可靠指标作为极限指标。