首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Nanoscale investigation of the influence of water on the elastic properties of C-S-H gel by molecular simulation
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Nanoscale investigation of the influence of water on the elastic properties of C-S-H gel by molecular simulation

机译:纳米模拟研究水对C-S-H凝胶弹性的影响

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Calcium silicate hydrate (C-S-H) gel contains almost 50% to 70% of cement paste, which has a significant effect on the cement paste properties. An attempt is made to assess the atomistic structure of calcium silicate hydrate and the impact of water on it through molecular dynamics simulation. The most similar compositions (tobermorite 14 angstrom, tobermorite 11 angstrom, and jennite) are chosen and the effect of water thereof is studied. This study is presented in two phases: (1) water removal from the structure and simulating difference of water-to-calcium ratios through grand canonical Monte Carlo method. Next, the effect of water on the mechanical properties of C-S-H gel is examined through molecular dynamics method. (2) Defects in the existing molecular structures were introduced, which lead to newer Ca-Si proportions followed by the examination of the effect of water on the new structures. The obtained results revealed that as W/Ca ratio increases, the Young's modulus decreases. An increase in the Ca/Si ratio, owing to the defects in the structure, leads to the reduction in the Young's modulus.
机译:水合硅酸钙(C-S-H)凝胶包含将近50%至70%的水泥浆,这对水泥浆的性能有重大影响。试图通过分子动力学模拟评估水合硅酸钙的原子结构以及水对其的影响。选择最相似的组成(钙铁矿14埃,钙铁矿11埃和软陶矿),并研究其水的作用。这项研究分两个阶段进行:(1)从结构中除水,并通过经典的蒙特卡洛方法模拟水钙比的差异。接下来,通过分子动力学方法研究水对C-S-H凝胶力学性能的影响。 (2)引入了现有分子结构中的缺陷,导致了新的Ca-Si比例,随后研究了水对新结构的影响。所得结果表明,随着W / Ca比的增加,杨氏模量降低。由于结构中的缺陷,Ca / Si比的增加导致杨氏模量的降低。

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