Dynamics of physical-chemical transformations at Eastern Donbass siltstones firing

K. Yavruyan, V. Kotlyar, E. S. Gayshun, A. Okhotnaya, G. O. Budagyants, E. Dementyeva
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Abstract

The article presents the results of studies on the dynamics of phase transformations occurring during firing of processing screenings of Eastern Donbass spoil tips, represented by siltstones, and which are promising raw materials for the production of various types of building ceramics – ordinary, face and clinker bricks, high-performance ceramic stones, ceramic tiles and siding. It is established that the screenings are raw material of low-temperature sintering. Depending on the degree of grinding, raw material can belong to the group of medium-or high-sintering raw materials. The screenings have a rather narrow sintering range – no more than 50 °C, which, as it seems to us, can be expanded by increasing the content of fine fractions in the preparation of screenings. Main mineral phases at the firing temperature of 1000-1100 °C are quartz, feldspars, ferrous silicates and aluminium silicates (fayalite, hypersthene, etc.), hematite. Features of dynamic phase and mineralogical transformations allow us to recommend firing products based on screenings at temperatures of 1000 °C and above, namely: in the production of ordinary bricks and stones based on screenings, it is necessary to focus on the temperature of 1000-1050 °C, in the production of clinker bricks and tiles at temperatures of 1050-1100 °C. When choosing corrective additives for screenings, it is necessary to pay attention to complex additives that increase the connectivity and plasticity of molding compositions, as well as expand the sintering range.The article presents the results of studies on the dynamics of phase transformations occurring during firing of processing screenings of Eastern Donbass spoil tips, represented by siltstones, and which are promising raw materials for the production of various types of building ceramics – ordinary, face and clinker bricks, high-performance ceramic stones, ceramic tiles and siding. It is established that the screenings are raw material of low-temperature sintering. Depending on the degree of grinding, raw material can belong to the group of medium-or high-sintering raw materials. The screenings have a rather narrow sintering range – no more than 50 °C, which, as it seems to us, can be expanded by increasing the content of fine fractions in the preparation of screenings. Main mineral phases at the firing temperature of 1000-1100 °C are quartz, feldspars, ferrous silicates and aluminium silicates (fayalite, hypersthene, etc.), hematite. Features of dynamic phase and mineralogical transformations allow us to r...
东顿巴斯粉砂岩燃烧的物理化学变化动力学
本文介绍了东顿巴斯(Donbass)以粉砂岩为代表的矸石尖在加工筛分烧制过程中发生相变动力学的研究结果,粉砂岩是生产各种类型建筑陶瓷的有前途的原料——普通砖、面砖和熟料砖、高性能陶瓷石、瓷砖和壁板。确定了筛分是低温烧结的原料。根据研磨程度的不同,原料可分为中烧结或高烧结原料组。筛分有一个相当窄的烧结范围-不超过50°C,在我们看来,可以通过增加筛分制备中细组分的含量来扩大。在1000 ~ 1100℃烧成温度下,主要矿物相为石英、长石、硅酸亚铁和硅酸铝(铁长石、超长石等)、赤铁矿。动态相和矿物转变的特点使我们能够推荐在1000℃及以上温度下基于筛分的烧制产品,即:在基于筛分的普通砖和石头的生产中,需要关注1000-1050℃的温度,在生产熟料砖和瓦时,需要关注1050-1100℃的温度。在选择筛分矫正添加剂时,要注意复合添加剂,增加成型成分的连通性和可塑性,扩大烧结范围。本文介绍了东顿巴斯(Donbass)以粉砂岩为代表的矸石尖在加工筛分烧制过程中发生相变动力学的研究结果,粉砂岩是生产各种类型建筑陶瓷的有前途的原料——普通砖、面砖和熟料砖、高性能陶瓷石、瓷砖和壁板。确定了筛分是低温烧结的原料。根据研磨程度的不同,原料可分为中烧结或高烧结原料组。筛分有一个相当窄的烧结范围-不超过50°C,在我们看来,可以通过增加筛分制备中细组分的含量来扩大。在1000 ~ 1100℃烧成温度下,主要矿物相为石英、长石、硅酸亚铁和硅酸铝(铁长石、超长石等)、赤铁矿。动态相和矿物学转变的特征使我们能够…
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