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Concrete cover tensile capacity of corroded reinforced concrete

机译:锈蚀钢筋混凝土的混凝土覆盖层抗拉能力

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In this paper, the concrete cover tensile (CCT) capacity of cracked concrete caused by reinforcement corrosion is investigated. A newly developed double-cylinder model with the consideration of concrete confinement effects is used to evaluate the critical expansive pressure of the corrosion products necessary to cause unstable cover crack propagation in corroded reinforced concrete. After considering the critical pressures associated with wide ranges of tensile capacities of concrete, reinforcement diameters and cover thicknesses, an empirical critical expansion pressure function is determined by the least squares method. The CCT capacity of cracked concrete is obtained by considering the equilibrium of expansive pressure and concrete resistant tensile force at the limiting stage. A generic relationship between CCT capacity and concrete cover in a bilinear form, which is suitable for the design, analysis and modeling of the problems related to reinforcement bar corrosion induced and other internal expansion-caused cover cracking, is proposed for the first time. Parametric studies are conducted to investigate the effects of the tensile strength of concrete and cover thickness on the critical expansive pressure and CCT capacity. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了由钢筋腐蚀引起的开裂混凝土的混凝土盖层抗拉强度(CCT)。考虑混凝土约束效应的新开发的双缸模型用于评估腐蚀产物的临界膨胀压力,该腐蚀产物是导致腐蚀的钢筋混凝土中不稳定的覆盖层裂纹扩展所必需的。在考虑了与广泛范围的混凝土抗拉能力,钢筋直径和覆盖层厚度相关的临界压力后,通过最小二乘法确定了经验临界膨胀压力函数。通过在极限阶段考虑膨胀压力与混凝土抗拉力的平衡来获得开裂混凝土的CCT能力。首次提出了双线性形式的CCT承载力与混凝土保护层之间的一般关系,该关系适合于设计,分析和建模与钢筋腐蚀引起的以及其他内部膨胀引起的保护层开裂有关的问题。进行了参数研究,以研究混凝土的抗拉强度和覆盖层厚度对临界膨胀压力和CCT容量的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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