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Influence of matrix cracking and hybrid fiber reinforcement on the corrosion initiation and propagation behaviors of reinforced concrete

机译:基体开裂和混杂纤维增强对钢筋混凝土腐蚀萌生和扩展行为的影响

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摘要

While fiber-reinforced concrete has been proposed for corrosion damage control of reinforced concrete, long-term behavior of these composites remains largely uninvestigated. In this study, reinforced concrete and reinforced hybrid fiber-reinforced concrete (HyFRC) were subjected to a chloride environment for 2.2 years. Samples were mechanically loaded prior to chloride exposure to induce varied matrix cracking characteristics. When precracked, the time to corrosion initiation is correlated to flexural stiffness degradation. After corrosion initiation, fiber reinforcement restricts corrosion-induced cracking, causes more extensive diffusion of corrosion products into the cementitious matrix, and lowers overall mass loss of steel reinforcing bars. The mechanical responses of corroded samples are also reported.
机译:虽然已经提出了纤维增强混凝土来控制钢筋混凝土的腐蚀损伤,但是这些复合材料的长期性能仍未得到充分研究。在这项研究中,钢筋混凝土和混杂混杂纤维增强混凝土(HyFRC)经受了2.2年的氯化物环境。在暴露于氯化物之前对样品进行机械加载,以诱导变化的基体开裂特性。预开裂后,腐蚀开始的时间与弯曲刚度的下降有关。腐蚀开始后,纤维增强材料会限制腐蚀引起的开裂,使腐蚀产物更广泛地扩散到水泥基体中,并降低钢筋的整体质量损失。还报告了腐蚀样品的机械响应。

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