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Structure Formation Features of Non-Autoclaved Gas Concrete Matrix on the Basis of Composite Binders with Various Mineral Additives

机译:基于多种矿物添加剂的复合粘合剂的非高压灭菌气体混凝土基质的结构形成特征

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摘要

One of the effective ways to reduce the material consumption of structures, to save all types of resources due to this, is the transition to porous constructional materials instead of traditional dense materials. In this regard, non-autoclaved gas concrete is of great interest. This material has a high manufacturability and has a good potential for improving the strength properties due to the replacement of traditional portland cement by special composite binders. Available publications confirm the effectiveness and prospects of this direction. An important disadvantage of such works is the fact that the binder indicators and the final cellular concrete characteristics are considered mainly independently. In our opinion, it is more correct to consider at least two structure-forming processes proceeding in parallel and sequentially at different scale levels. Micro level is a stone structure formation based on the composite binder; macro-level is a gas porization of cellular mass concrete. These processes have a great mutual influence on each other, and therefore this article attempts to observe the gassing products effect on the stone hardening based on composite binders, as well as the composite binder makeup on the viscosity change of the molding compound, as an important condition for the formation of high-quality less defective pore structure of cellular concrete.
机译:降低结构材料消耗的有效方法之一,以节省所有类型的资源,是对多孔结构材料的过渡而不是传统的致密材料。在这方面,非高压灭菌的气体混凝土具有很大的兴趣。该材料具有很高的可制造性,并且由于特殊复合粘合剂更换传统的波特兰水泥而提高强度特性,具有良好的潜力。可用的出版物确认了这个方向的有效性和前景。这种作品的重要缺点是粘合剂指示剂和最终的细胞混凝土特征主要被认为是独立的。在我们看来,考虑至少两个以不同的比例水平进行并行和顺序进行的至少两个结构形成过程更为正确。微水位是基于复合粘合剂的石结构形成;宏观水平是细胞质量混凝土的气体浮雕。这些过程对彼此具有很大的相互影响,因此本文试图根据复合粘合剂观察对石材硬化的气化产品,以及复合粘合剂构成模塑化合物的粘度变化,如重要的细胞混凝土高质量缺陷孔隙结构形成的条件。

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