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Simplified methodology to evaluate the external sulfate attack in concrete structures

机译:评估混凝土结构中外部硫酸盐侵蚀的简化方法

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摘要

The external sulfate attack is a degradation process that causes expansion and cracking in concrete structures. Due to the absence of simplified methodologies to predict the potential damage, codes specify that sulfate resistant cement should be used whenever the surrounding sulfate concentration surpasses a predefined limit. This may lead to penalizing measures as the size of the element or the mechanical properties of the concrete used are not considered. In the present work, an alternative approach is proposed. A simplified chemo-mechanical methodology is deducted to assess the potential damage in concrete elements exposed to sulfate rich environments. Equations to estimate the penetration of sulfates are derived froma numericalmodel taking into account sulfate consumption, acceleration of the penetration induced by cracking and decrease in diffusivity caused by pore filling. Failure modes associated to this phenomenon are analyzed and a set of equations to assess the risk of failure are deducted. Finally, a parametric studywith different geometries of elements and surrounding sulfate contents is performed. The results show that the criterion included in codesmight be modified depending on the characteristics of the structure.
机译:外部硫酸盐侵蚀是一种降解过程,导致混凝土结构膨胀和开裂。由于缺乏用于预测潜在损害的简化方法,因此规范规定,只要周围的硫酸盐浓度超过预定限值,就应使用抗硫酸盐水泥。由于未考虑元素的尺寸或所用混凝土的机械性能,因此可能导致惩罚措施。在本工作中,提出了一种替代方法。推导了一种简化的化学机械方法,以评估暴露于富硫酸盐环境的混凝土构件中的潜在损坏。估算硫酸盐渗透率的方程式是从一个数值模型得出的,该模型考虑了硫酸盐的消耗,开裂引起的渗透加速以及孔隙填充引起的扩散率降低。分析与该现象相关的失效模式,并推导出一组评估失效风险的方程式。最后,进行了具有不同几何形状的元素和周围硫酸盐含量的参数研究。结果表明,可能会根据结构的特性修改代码中包含的准则。

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