对泡沫混凝土材料生产中使用的当地原材料进行了研究

A. Niyazbekova, T. Shakirov, A. Murzagaliyeva
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摘要

本文论述了在新技术的基础上,经济、优质、易获取的保温材料对建筑行业的重要性。人们相信,在哈萨克斯坦共和国所有地区都发现的粘土和硅岩可以作为改性成分的原料,为建筑工业的发展创造有利条件。研究的原料是西哈萨克斯坦地区“Belaya Gorka”矿床的沙子。采用XRD、SEM等理化方法对原料的化学成分进行了研究。无杂质泡沫混凝土的x射线物相分析由以下相组成:硅酸三钙(alite - C3S) - d/n = 1.5;2.50;2.67;2.83;熟石灰(Ca (OH) 2) - d/n = 1.91;2.62;4.90, 9;熟料含量(%):C3S - 40-68, - d/n = 1.83;2.40;2.80;3.07。根据泡沫混凝土烧结的机理,石英在溶液中形成H3SiO4-和H2ЅiO42-离子,它们与Ca2 +离子相互作用,形成钙水解产物,在石英表面富含石灰。结果在结晶介质中形成连续的氢硅酸钙晶体,体积增大。CSH (I)相的形成受氧化钙的形成和砂的细磨的影响。粘结剂C3S (III)相的形成主要决定其强度。根据室内研究结果,实验证明,具有不同大小孔隙的隔热材料是在砂的基础上形成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of the local raw materials for usingin the production of the foam concrete materials
The article discusses the importance of affordable, high-quality, easily accessible thermal insulation materials for the construction industry, based on the new technologies. It is believed that clay and silicon rocks, which are found in all regions of the Republic of Kazakhstan, can be used as the raw materials for a modified composition, and create favorable conditions for the development of the construction industry. The raw material for the research has been the sand of the “Belaya Gorka” depositof the West Kazakhstan region. The chemical composition of the raw material has been studied by the physicochemical methods of XRD and SEM. The X-ray phase analysis of the foam concrete without impurities consists of the following phases: tricalcium silicate (alite - C3S) - d/n = 1.5; 2.50; 2.67; 2.83 Å; slaked lime (Ca (OH) 2) - d/n = 1.91; 2.62; 4.90,9; Clinker content (%): C3S - 40-68, - d/n = 1.83; 2.40; 2.80; 3.07 Å. According to the mechanism of the foam concrete sintering, in the solution, quartz forms H3SiO4- and H2ЅiO42- ions, the interaction of which with the Ca2 + ions leads to the formation of calcium hydrolyzate, rich in lime on the surface of quartz. As a result, the crystals of successive calcium hydrosilicates are formed in the crystallization medium, and their volume increases. The formation of the CSH (I) phase is influenced by the formation of calcium oxide and the fine grinding of the sand. The formation of the C3S (III) phase of the binder mainly determines its strength. According to the results of the laboratory studies, it has been experimentally proven that the heat-insulating materials with pores of various sizes are formed on the basis of sand.
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