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Experimental Study on the Structural Performance Degradation of Corrosion-Damaged Reinforced Concrete Beams

机译:耐腐蚀钢筋混凝土梁结构性能降解的实验研究

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It is very important to investigate the effects of the seismic performance of corrosion-damaged reinforced concrete (RC) members, in terms of their strength and lateral deformability, on the seismic performance of entire building systems. Such investigation allows accurate evaluation of the seismic performance of RC structures with corroded members, including beams and columns. However, current techniques for evaluating the seismic performance of existing RC structures do not take the effects of deterioration (including the corrosion of reinforcing bars) on the performance of RC members into account. The main objective of this research is to propose a practical methodology for evaluating the seismic performance of RC buildings with corrosion-damaged members. We extrapolate a structural performance degradation factor from the strength-deformation capability of corroded members to allow direct quantitative evaluation of their seismic performance. In this study, as a first step toward achieving this goal, we experimentally investigated the effect of reinforcing bar corrosion on the behavior of RC beams and the structural performance degradation factor. Our analysis was based on the strength-deformation capabilities of corrosion-damaged beams. We also propose a relationship between the half-cell potential of corroded reinforcing bars and the structural performance degradation behavior of RC beams. Our results indicate that there is a relatively strong correlation between the performance degradation factor and the average potential difference, with coefficients of determination (R2) of the flexural and shear beams of 0.78 and 0.91, respectively. The potential difference, which was measured using the half-cell measurement method, can serve as one of the indicators of relative structural degradation, but we must ensure that the environmental measurement conditions are held constant.
机译:在整个建筑系统的地震性能方面,探讨腐蚀损坏的钢筋混凝土(RC)成员的抗震性能的抗震性能的影响非常重要。这种研究允许准确评估RC结构的抗腐蚀构件的地震性能,包括横梁和柱。然而,用于评估现有RC结构的地震性能的目前的技术不会采取劣化(包括增强条的腐蚀)对RC成员的表现的影响。本研究的主要目的是提出一种实用的方法,用于评估RC建筑物的地震性能与腐蚀损坏的成员。我们从腐蚀构件的强度变形能力外推外推出结构性能降解因子,以允许直接定量评估其地震性能。在这项研究中,作为实现这一目标的第一步,我们通过实验研究了加强棒腐蚀对RC梁的行为的影响和结构性能降解因子。我们的分析基于腐蚀损坏梁的强度变形能力。我们还提出了腐蚀加强条的半电池电位与RC梁的结构性能降解行为之间的关系。我们的结果表明,性能下降因子和平均电位差之间存在相对强烈的相关性,其中弯曲和剪切梁的弯曲和剪切梁的系数分别为0.78和0.91。使用半电池测量方法测量的电位差可以作为相对结构降解的指标之一,但我们必须确保环境测量条件保持恒定。

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