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Development of sustainable compositions and study of the properties of porous aggregates from the waste of a mining and processing plants

机译:可持续组合物的发展与多孔聚集体的性质从垃圾和加工厂的浪费研究

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In connection with the growing need for saving natural resources used in aggregates for concrete, the importance of lightweight structural aggregates obtained from production waste is continuously increasing. Lightweight structural concretes on porous aggregates can significantly reduce own weight of structures, make it possible to manufacture larger structures, reduce transport costs, and improve the thermal insulation and acoustic properties of enclosing structures. The use of waste from the mining and metallurgical industry to produce construction materials significantly reduces environmental pollution. The article is devoted to studying the possibility of using wastes from the mining and processing industry of enterprises of the Kryvyi Rih iron ore basin to produce lightweight porous aggregate. The paper presents the results of studies of the effect of the charge's granulometric composition, the quantitative content of the raw mix components, and the temperature of heat treatment on aggregate quality. The most suitable raw material mixture for artificial aggregate has been determined. The results of X-ray diffraction thermographic analysis of raw granules are presented. The influence of technological factors on the aggregate density and strength has been studied using mathematical modeling. The obtained equations made it possible to reveal the regularities of the raw mixture's components and temperature for the optimal aggregate density and strength. The results of studying the structure and porosity of the developed aggregate are presented. The results of X-ray thermographic analysis of the aggregate explain the mechanism of pore formation in the pellets. The basic physical and mechanical properties of the obtained aggregate are investigated, particularly attention pairing to the study of the aggregate’s contact zone with the cement stone.
机译:关于节产用于节省混凝土中使用聚集体的天然资源的需求,从生产废物中获得的轻质结构聚集体的重要性不断增加。多孔聚集体上的轻质结构混凝土可以显着减少自身的结构重量,使得可以制造较大的结构,降低运输成本,提高封闭结构的绝热性和声学性质。采用采矿和冶金行业的废物生产建筑材料明显降低了环境污染。本文致力于研究利用Kryvyi Rih Ire盆地企业矿业和加工行业使用废物的可能性,以产生轻质多孔骨料。本文提出了对电荷粒度组成,原料混合组分的定量含量的研究结果,以及对聚集体质量的热处理的温度。已经确定了用于人工骨料的最合适的原料混合物。提出了原料颗粒的X射线衍射热分析分析的结果。使用数学建模研究了技术因素对骨料密度和强度的影响。所获得的方程使得可以揭示原料混合物的组分和温度的规律,以获得最佳的聚集密度和强度。提出了研究显影骨料结构和孔隙率的结果。聚集体X射线热敏分析结果解释了颗粒中孔形成的机制。研究了所得骨料的基本物理和力学性质,特别是与水泥石的骨料接触区的研究相配合。

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