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The role of the crystallo-chemical factor in the evaluation and improvement of the nanomodification efficiency of mortar and concrete

机译:晶体化学因素在砂浆和混凝土纳米透析效率评价中的作用

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The article presents a new approach to the control of the processes of structure formation of binder systems,taking into account the achievements of nanotechnologies.The possibilities of managing the structure of the material at the nanoscale and the micro-level by introducing primary nanoscale additives or forming nanoscale objects in the bulk of the material are considered.The peculiarities of contact zone formation and microstructure of artificial stone based on nanomodified Portland cement and alkaline binder systems are investigated.The role of the crystallo-chemical factor and its influence on the strength formation of all levels of concrete structure are shown.It is proved that when using micro silica modifying additives,their efficiency at the micro level is higher than at the meso-and macro-levels.At the same time,the modification of the binding systems by artificial zeolites provides a more pronounced effect in concrete at the macro-level-due to the crystallo-chemical similarity of additives,products of hydration and minerals of the aggregate.Taking into account the crystal-chemical similarity of the new formation opens new possibilities for the choice of nano additives,considering not only the principle and nature of their action at the level of nanoscale and microstructure,but also the influence on the peculiarities of the formation of the contact zone at the meso-and macro-levels,which will have a decisive influence not only on the strength,but also on the special properties of concrete.
机译:本文介绍了控制粘合剂系统结构形成过程的新方法,考虑到纳米技术的成就。通过引入原发性纳米尺度添加剂或通过引入纳米级和微水平管理材料结构的可能性考虑了在大量材料中形成纳米级目的。研究了基于纳米胺透过的波特兰水泥和碱性粘合剂系统的人造石的接触区形成和微观结构的特性。结晶 - 化学因素的作用及其对强度形成的影响显示各级的混凝土结构。证明,当使用微二氧化硅改性添加剂时,它们在微水位的效率高于中间型和宏观的效率。同时,绑定系统的修改由于晶体化学相似,人工沸石在宏观水平的混凝土中提供了更明显的效果添加剂的Ity,产品的水合和矿物质的矿物质。考虑到新成形的晶体化学相似性为纳米添加剂的选择开辟了新的可能性,不仅考虑了他们在纳米级水平上行动的原理和性质和微观结构,也是对甲型和宏观水平形成接触区形成的特性的影响,这将不仅对强度产生了决定性的影响,而且对混凝土的特殊性能具有决定性的影响。

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