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Macro-microscopically numerical analysis on expansion response of hardened cement paste under external sulfate attack

机译:外部硫酸盐侵蚀下硬化水泥浆膨胀响应的宏观微观数值分析

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A macro-microscopically chemo-mechanical model has been proposed to numerically investigate the expansion response of hardened cement paste (HCP) under external sulfate attack (ESA). In this model, a saturated HCP specimen and a representative volume element (RVE) are regarded as macro- and microscopic objects. At the macroscale, the sulfate diffusion and expansion response in HCP are described by using Fick's law and continuum mechanics. At the microscale, the growth of sulfate products and its induced mechanical response in RVE are characterized by using reaction kinetics and microporomechanics. Meanwhile, the macro-micro transition of relevant parameters, such as sulfate concentration, mechanical property, and expansive eigenstrain, is constructed to bridge the relationship between the macro and micro scales. Numerical simulation on expansion response of a HCP cylinder immersed in Na2SO4 solution is performed. Results show that, there exist some differences in the macro- and microscopic expansion responses induced by the growth of sulfate products in the pore, and the microscopic hoop tensile stress is responsible for the initiation and propagation of microcracks in the cement paste. (C) 2019 Elsevier Ltd. All rights reserved.
机译:提出了一种宏观-微观化学-机械模型,以数值研究硬化水泥浆(HCP)在外部硫酸盐侵蚀(ESA)下的膨胀响应。在此模型中,饱和的HCP样品和代表性的体积元素(RVE)被视为宏观和微观对象。在宏观上,使用菲克定律和连续力学描述了HCP中硫酸盐的扩散和膨胀反应。在微观上,通过使用反应动力学和微孔力学来表征RVE中硫酸盐产物的生长及其诱导的机械响应。同时,构造了相关参数的宏观-微观过渡,例如硫酸盐浓度,力学性能和膨胀本征应变,以弥合宏观与微观尺度之间的关系。进行了HCP圆柱体在Na2SO4溶液中的膨胀响应的数值模拟。结果表明,孔中硫酸盐产物的生长引起的宏观和微观膨胀响应存在一些差异,微观环向拉应力是水泥浆中微裂纹的产生和扩展的原因。 (C)2019 Elsevier Ltd.保留所有权利。

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