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Analytical Model For Corrosion Penetration Depth At Cover Cracking In Rc Structures

机译:钢筋混凝土结构覆盖裂缝开裂深度的解析模型

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摘要

Corrosion products which occupy much greater volume accumulate, and generate expansive pressures on the surrounding concrete. The pressure builds up and eventually leads to the cover cracking of the structures. The cracking accelerates further corrosion and leads to the loss of the bond strength and the load carrying capacity. Corrosion cracking would reveal the reducing of the residual service life of the corrosion-affected structures. In this paper, an analytical model is proposed to predict the critical corrosion penetration at cover cracking in RC structures based on the crack process. An attempt has been made to develop the model by considering material properties of the surrounding concrete and expansive corrosion products. The problem is established as a boundary-value problem and the governing equations are expressed in terms of the radial displacement. The analytical predictions of the proposed model have also been in agreement with the available experimental data.
机译:占据更大体积的腐蚀产物会积聚,并在周围的混凝土上产生膨胀压力。压力累积并最终导致结构的覆盖层破裂。裂纹加速了进一步的腐蚀,并导致粘结强度和承载能力的损失。腐蚀开裂将揭示受腐蚀结构的剩余使用寿命的减少。本文提出了一种基于裂纹过程来预测钢筋混凝土结构覆盖层开裂时的临界腐蚀渗透率的分析模型。已经尝试通过考虑周围混凝土和膨胀腐蚀产物的材料特性来开发模型。该问题被确定为边值问题,并且控制方程式以径向位移表示。所提出模型的分析预测也与现有的实验数据一致。

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