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Influence of steel-concrete bond damage on the dynamic stiffness of cracked reinforced concrete beams

机译:钢筋混凝土粘结损伤对开裂钢筋混凝土梁动力刚度的影响

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摘要

In this article, experiments focusing at the influence of steel–concrete bond damage on the dynamic stiffness of cracked reinforced concrete beams are reported. In these experiments, the bond between concrete and reinforcing bar was damaged using appreciate flexural loads. The static stiffness of cracked reinforced concrete beam was assessed using the measured load–deflection response under cycles of loading and unloading, and the dynamic stiffness was analyzed using the measured natural frequencies with and without sustained loading. Average moment of inertia model (Castel et al. model) for cracked reinforced beams by taking into account the respective effect of bending cracks (primary cracks) and the steel–concrete bond damage (interfacial microcracks) was adopted to calculate the static load–deflection response and the natural frequencies of the tested beams. The experimental results and the comparison between measured and calculated natural frequencies show that localized steel–concrete bond damage does not influence remarkably the dynamic stiffness and the natural frequencies both with and without sustained loading applied. Castel et al. model can be used to calculate the dynamic stiffness of cracked reinforced concrete beam by neglecting the effect of interfacial microcracks.
机译:在本文中,报告了针对钢筋混凝土粘结破坏对开裂钢筋混凝土梁的动力刚度的影响的实验。在这些实验中,混凝土与钢筋之间的粘结力受到弯曲载荷的破坏。使用在加载和卸载循环下测得的载荷-挠度响应来评估开裂的钢筋混凝土梁的静态刚度,并使用测量的自然频率在有或没有持续载荷的情况下分析动刚度。考虑到弯曲裂纹(主要裂纹)和钢-混凝土粘结破坏(界面微裂纹)各自的影响,采用开裂钢筋梁的平均惯性矩模型(Castel等人的模型)来计算静载荷-挠度响应和被测光束的固有频率。实验结果以及所测得的固有频率和计算出的固有频率之间的比较表明,在施加和不施加持续载荷的情况下,局部钢-混凝土粘结破坏不会显着影响动态刚度和固有频率。 Castel等。忽略界面微裂纹的影响,该模型可用于计算开裂钢筋混凝土梁的动力刚度。

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