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首页> 外文期刊>Cement and Concrete Research >Identification of viscoelastic C-S-H behavior in mature cement paste by FFT-based homogenization method
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Identification of viscoelastic C-S-H behavior in mature cement paste by FFT-based homogenization method

机译:基于FFT的均质方法识别成熟水泥浆体的粘弹性C-S-H行为。

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摘要

A powerful and robust numerical homogenization method based on fast Fourier transform (FFT) is formulated to identify the viscoelastic behavior of calcium silicate hydrates (C-S-H) in hardened cement paste from its heterogeneous composition. The identification is contingent upon the linearity of the creep law. To characterize cement paste microstructure, the model developed by Bentz at the National Institute of Standards and Technology, which has the resolution of 1 um, is adopted. Model B3 for concrete creep is adapted to characterize the creep of C-S-H in cement paste. It is found that the adaptation requires increasing the exponent of power law asymptote of creep compliance. This modification means that the rate of attenuation of creep with time is lower in C-S-H than in cement paste, and is explained by differences in stress redistribution. In cement paste, the stress is gradually transferred from the creeping C-S-H to the noncreeping components. The viscoelastic properties of C-S-H at the resolution of 1 um were identified from creep experiments on cement pastes 2 and 30 years old, having the water-cement ratio of 0.5. The irreversible part of C-S-H creep, obtained from these old specimens at almost saturated state, is found to be negligible unless the specimens undergo drying and resaturation prior to the creep test.
机译:制定了一种基于快速傅里叶变换(FFT)的强大而强大的数值均化方法,以从硬化水泥浆中的异质成分识别硅酸钙水合物(C-S-H)的粘弹性行为。识别取决于蠕变定律的线性。为了表征水泥浆的微观结构,采用了Bentz在美国国家标准技术研究院开发的模型,其分辨率为1 um。适用于混凝土蠕变的B3模型适用于表征水泥浆中C-S-H的蠕变。发现适应需要增加蠕变柔量的幂律渐近线的指数。这种修改意味着C-S-H中蠕变随时间的衰减率低于水泥浆中的蠕变衰减率,这可以通过应力重新分布的差异来解释。在水泥浆中,应力逐渐从蠕变的C-S-H传递到非蠕变组分。通过对2和30岁水泥浆的蠕变实验确定了C-S-H在1 um分辨率下的粘弹性,水灰比为0.5。从这些几乎处于饱和状态的旧样本获得的C-S-H蠕变的不可逆部分被发现可以忽略不计,除非样本在蠕变测试之前经过干燥和重新饱和。

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