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Meso-scale mixed-mode fracture modelling of reinforced concrete structures subjected to non-uniform corrosion

机译:钢筋混凝土结构对非均匀腐蚀的钢筋混凝土结构骨折模型

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Corrosion-induced concrete cracking is a significant problem affecting the durability of reinforced concrete structures. Considerable research has been carried out in addressing this problem but few have considered the cracking process of concrete as a mixed-mode fracture and the concrete as a multi-phase material. This paper develops a meso-scale mixed-mode fracture model for the cracking of concrete structures under non-uniform corrosion of reinforcement. Concrete is treated as a three-phase heterogeneous material, consisting of aggregates, mortar and interfaces. An example is worked out to demonstrate the application of the derived model and is then partially verified against previously published experimental results. In agreement with experimental results, the new model reproduces the observation that microcracks tend to form first at the interfaces before they connect to generate a discrete crack. Toughening mechanisms, e.g., microcrack shielding, crack deflection, aggregate bridging and crack overlap, have been captured in the model. Further, effects of aggregate randomness on the crack width development of concrete structures, differences between uniform and non-uniform corrosion and a comprehensive parametric study have been investigated and presented.
机译:腐蚀引起的混凝土裂缝是影响钢筋混凝土结构耐久性的重要问题。在解决这个问题时已经进行了相当大的研究,但很少有人认为混凝土的裂缝过程作为混合模式骨折和混凝土作为多相材料。本文开发了一种中小型混合模式裂缝模型,用于在钢筋不均匀腐蚀下混凝土结构破裂。混凝土被视为三相异质材料,由聚集体,砂浆和界面组成。研究了一个例子以证明衍生模型的应用,然后部分验证先前公布的实验结果。在与实验结果的一致中,新模型再现观察,即在连接到产生离散裂缝之前,微裂纹倾向于先形成的微裂纹。在模型中捕获增韧机制,例如微裂纹屏蔽,裂缝偏转,串联桥接和裂缝重叠。此外,研究并呈现了均匀随机性对混凝土结构裂纹宽度发展的影响,并提出了均匀和不均匀腐蚀与综合参数研究的差异。

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