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Modified Steel Bar Model Incorporating Bond-Slip for Seismic Assessment of Concrete Structures

机译:结合粘结滑移的修正钢筋模型用于混凝土结构抗震评估

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摘要

This paper presents a simplified model for describing the response of a longitudinal bar embedded in concrete, taking into account the bond-slip phenomenon. The model is developed by assuming a linear bond-slip field along the bar anchorage length and provides a simplified stress-strain relationship to assign to the longitudinal reinforcement. The analytical approach adopted makes the proposed model very convenient from a computational standpoint because, unlike many other refined models, it does not require a multilevel iterative process. Moreover, the assumptions made are particularly appropriate for modeling bond-slip of smooth bars generally used in older reinforced concrete buildings. The implementation strategy of the proposed bond-slip model in general-purpose nonlinear structural analysis software and comparisons with experimental results are discussed in a companion paper.
机译:本文提出了一种简化模型,用于描述嵌在混凝土中的纵向钢筋的响应,并考虑了粘结滑移现象。通过假设沿钢筋锚固长度的线性粘结滑移场来开发模型,并提供简化的应力-应变关系以分配给纵向钢筋。从计算的角度来看,采用的分析方法使所提出的模型非常方便,因为与许多其他改进的模型不同,它不需要多级迭代过程。此外,所做的假设特别适合于建模通常用于较旧的钢筋混凝土建筑的光滑钢筋的粘结滑移。随附的论文讨论了通用非线性结构分析软件中提出的滑移模型的实现策略以及与实验结果的比较。

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