首页> 外文期刊>Journal of materials in civil engineering >Modeling of Damage in Cement-Based Materials Subjected to External Sulfate Attack. Ⅰ: Formulation
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Modeling of Damage in Cement-Based Materials Subjected to External Sulfate Attack. Ⅰ: Formulation

机译:遭受外部硫酸盐侵蚀的水泥基材料的损伤建模。 Ⅰ:配方

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摘要

A chemomechanical mathematical model is presented to simulate the response of concrete exposed to external sulfate solutions. The model is based on the diffusion-reaction approach, and several mechanisms for the reaction of calcium aluminates with sulfates to form expansive ettringite are considered. Fick's second law is assumed for diffusion of the sulfate ions. A second-order chemical reaction between reacting calcium aluminates and ingressing sulfates depletes the sulfate concentration. The products of the second-order reaction between the aluminates and sulfates are chosen among several competing mechanisms, and a rule-of-mixtures approach is used to relate the expansive nature of the products with the prescribed specific gravity of the compounds. It is furthermore assumed that the crystallization pressure of products of reaction results in a bulk expansion of the solid. The constitutive response of the matrix and the expansive stresses are calculated from the imposed volumetric strain. Microcracks are initiated when the strength of the matrix is reached, leading to changes in the diffusivity and a reduction in the elastic properties of the matrix. The variation of diffusivity is linked to the scalar damage parameter due to cracking of the matrix. Due to the changes in the diffusivity, the problem is treated as a moving boundary problem, and a methodology is proposed to adapt the solution of the 1D case to the 2D problem of a prismatic specimen. Theoretical expansion-time responses are obtained and compared with a variety of data available in the literature.
机译:提出了一个化学力学数学模型来模拟混凝土暴露于外部硫酸盐溶液的响应。该模型基于扩散反应方法,并考虑了铝酸钙与硫酸盐反应生成膨胀钙矾石的几种机理。假定菲克第二定律是硫酸根离子的扩散。铝酸钙反应和进入的硫酸盐之间的二级化学反应消耗了硫酸盐的浓度。铝酸盐和硫酸盐之间的二级反应产物是在几种竞争机理中选择的,并且使用混合规则方法将产物的膨胀性质与化合物的规定比重相关联。此外,假定反应产物的结晶压力导致固体的大量膨胀。根据施加的体积应变计算矩阵的本构响应和膨胀应力。当达到基体的强度时,会引发微裂纹,从而导致扩散率的变化并降低基体的弹性。由于矩阵破裂,扩散率的变化与标量损伤参数有关。由于扩散率的变化,该问题被视为移动边界问题,并提出了一种方法来使一维问题的解决方案适应于棱镜样品的二维问题。获得理论上的扩展时间响应,并将其与文献中的各种数据进行比较。

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