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A molecular dynamics study of the role of molecular water on the structure and mechanics of amorphous geopolymer binders

机译:分子动力学研究分子水对无定形地缘聚合物粘合剂结构和力学的作用

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In this paper, molecular dynamics simulations are used to study the effect of molecular water and composition (Si/Al ratio) on the structure and mechanical properties of fully polymerized amorphous sodium aluminosilicate geopolymer binders. The X-ray pair distribution function for the simulated geopolymer binder phase showed good agreement with the experimentally determined structure in terms of bond lengths of the various atomic pairs. The elastic constants and ultimate tensile strength of the geopolymer binders were calculated as a function of water content and Si/Al ratio; while increasing the Si/Al ratio from one to three led to an increase in the respective values of the elastic stiffness and tensile strength, for a given Si/Al ratio, increasing the water content decreased the stiffness and strength of the binder phase. An atomic-scale analysis showed a direct correlation between water content and diffusion of alkali ions, resulting in the weakening of the AlO4 tetrahedral structure due to the migration of charge balancing alkali ions away from the tetrahedra, ultimately leading to failure. In the presence of water molecules, the diffusion behavior of alkali cations was found to be particularly anomalous, showing dynamic heterogeneity. This paper, for the first time, proves the efficacy of atomistic simulations for understanding the effect of water in geopolymer binders and can thus serve as a useful design tool for optimizing composition of geopolymers with improved mechanical properties. Published by AIP Publishing.
机译:本文采用分子动力学模拟来研究分子水和组合物(Si / Al比)对全聚合的无定形硅铝酸钠粘合剂的结构和力学性能的影响。模拟地质聚合物粘合剂相的X射线对分布函数与各种原子对的键长度的实验确定的结构表现出良好的一致性。地质聚合物粘合剂的弹性常数和极限拉伸强度计算为的水含量和Si / Al比的函数;在将Si / Al的比例增加到一到三个导致的Si / Al比率的同时,对于给定的Si / Al比,在弹性刚度和拉伸强度的各自值的增加,增加水含量降低了粘合剂相的刚度和强度。原子标度分析显示碱性含水量与碱离子的扩散之间的直接相关,导致ALO4四面体结构的削弱,由于电荷平衡碱离子远离四面体,最终导致失败。在水分子存在下,发现碱阳离子的扩散行为特别异常,显示出动态的异质性。本文首次证明了原子模拟以了解水中水中的影响,因此可以用作优化具有改善的机械性能的地质聚合物组合物的有用设计工具。通过AIP发布发布。

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