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Numerical assessment of non-uniform corrosion scenarios of rebar in concrete exposed to natural chloride environment

机译:天然氯化物环境下混凝土中钢筋非均匀腐蚀情形的数值评估

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Corrosion of embedded rebars is a classical deterioration mechanism that remains as one of the most significant problems limiting the service life of concrete structures exposed to chloride-laden environments. The primary objective of this study is to propose and verify a numerical framework that can efficiently quantify non-uniform corrosion penetration depth along the perimeter of the rebar in concrete exposed to chloride environment. This framework investigates the corrosion process during both the corrosion initiation and propagation phases by exploring the effects of not only the rebar existence but also its sizes and locations. The corrosion initiation phase is examined through a comprehensive chloride ingress model that identifies the most important parameters that influence the intrusion of chlorides into RC. The corrosion propagation phase is studied based on a decisive parameter, namely, the corrosion rate. In addition, the framework evaluates the non-uniform corrosion states that correspond to two scenarios of corrosion penetration depth: corrosion of segment of the rebar and uneven corrosion along the rebar perimeter. Numerical solution shows that, in general, chloride build-up along the perimeter of the corner bar is not only faster but also higher than that of the middle bar. Moreover, for the given values of cover thickness and water-to-binder ratio, time-to-corrosion initiation for the corner bar is faster than that for the middle bar. Furthermore, the larger the rebar, in general, the bigger the obstruction, and therefore, the higher the chloride build-up. Qualitative comparisons of the evaluated non-uniform corrosion scenarios with the variety of available laboratory and field data show good agreement.
机译:埋入式钢筋的腐蚀是一种经典的劣化机理,仍然是限制暴露于氯化物环境的混凝土结构使用寿命的最重要问题之一。这项研究的主要目的是提出和验证一个数值框架,该数值框架可以有效地量化暴露于氯化物环境的混凝土中沿钢筋周界的不均匀腐蚀渗透深度。该框架通过探索不仅钢筋存在的影响,而且探索其尺寸和位置的影响,研究了腐蚀发生和扩展阶段的腐蚀过程。通过全面的氯化物进入模型检查腐蚀开始阶段,该模型确定了影响氯化物侵入RC的最重要参数。基于决定性参数,即腐蚀速率,研究腐蚀扩展阶段。此外,该框架还评估与腐蚀渗透深度的两种情况相对应的非均匀腐蚀状态:钢筋段的腐蚀和沿钢筋周界的不均匀腐蚀。数值解表明,一般而言,沿着角杆周边的氯化物堆积不仅比中间杆更快,而且更高。此外,对于给定的覆盖层厚度和水与粘结剂的比值,角钢的腐蚀开始时间要快于中间金属条。此外,钢筋通常越大,阻塞越大,因此氯化物积聚就越大。对评估的非均匀腐蚀情况与各种可用的实验室和现场数据的定性比较显示出很好的一致性。

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