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The corrosion pattern of reinforcement and its influence on serviceability of reinforced concrete members in chloride environment

机译:氯化物环境下钢筋的腐蚀模式及其对钢筋混凝土构件使用寿命的影响

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摘要

This paper deals with two corroded reinforcement concrete beams, which have been stored under sustained load in a chloride environment for 14 and 23 years respectively. The evolution of corrosion pattern of reinforcement and its influence on serviceability are studied. In chloride-induced corrosion process, corrosion cracking affects significantly the corrosion pattern. During the corrosion cracking initiation period, only local pitting corrosion occurs. At early stage of cracking propagation, localized pitting corrosion is still predominant as cracks widths are very small and cracks are not interconnected, but a general corrosion slowly develops as the cracks widen. At late cracking stage, interconnected cracking with wide width develops along large parts of the beam leading to a general corrosion pattern. Macrocells and microcells concepts are used for the interpretation of the results. Mechanical experiments and corrosion simulation tests are performed to clarify the influence of this corrosion pattern evolution on the serviceability of the beams (deflection increase). Experimental results show that, when the corrosion is localized (early cracking stage), the steel-concrete bond loss is the main factor affecting the beams serviceability. The local cross-section loss resulting from pitting attack does not significantly influence the deflection of the beam. When corrosion is generalized (late cracking stage), as the steel-concrete bond is already lost, the generalized steel cross-section reduction becomes the main factor affecting the beams serviceability. But, at this stage, the deflection increase is slower due to the low general corrosion rate.
机译:本文研究了两条锈蚀的钢筋混凝土梁,它们在持续的荷载下在氯化物环境中分别存储了14年和23年。研究了钢筋腐蚀模式的演变及其对使用寿命的影响。在氯化物诱导的腐蚀过程中,腐蚀开裂会严重影响腐蚀方式。在腐蚀开裂开始期间,仅发生局部点蚀。在裂纹扩展的早期阶段,由于裂纹宽度很小且裂纹没有相互连接,局部点蚀仍占主导地位,但随着裂纹扩展,一般腐蚀缓慢发展。在开裂后期,沿梁的大部分会出现宽宽度的互连开裂,从而导致整体腐蚀。宏小区和微小区的概念用于解释结果。进行了机械实验和腐蚀模拟测试,以弄清这种腐蚀方式演变对梁的使用寿命(挠度增加)的影响。实验结果表明,在局部腐蚀(开裂早期)时,钢与混凝土的粘结损失是影响梁使用寿命的主要因素。由点蚀引起的局部横截面损耗不会显着影响光束的偏转。当腐蚀普遍存在时(后期开裂阶段),由于钢与混凝土的结合已经消失,因此普遍的钢截面减小成为影响梁使用寿命的主要因素。但是,在此阶段,由于较低的总腐蚀速率,挠度的增加较慢。

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