Technology and Peculiarities of Production of Large-format Ceramic Stones Based on Opoka-like Rocks

V. Kotlyar, Y. Terekhina, K. Lapunova
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Abstract

Introduction. One of the urgent tasks of the wall ceramics industry at present is the production of large-format ceramic stones with compressive strength of 10–15 MPa and thermal conductivity less than 0.12 W/(m·оС), while the market cost per 1 m3 should be competitive with gas-concrete blocks and be in the range of 5–6 thousand rubles per 1 m3. This problem can be solved by developing modern energy-efficient production technology and using opoko-like rocks and coal processing wastes as the main raw material as fuel and burnout additive.Materials and Methods. The opoka-like rocks — opokas from the deposits of southern Russia — Nagolnovskoye, Bakanskoye, Shakhtinskoye, Avilo-Fyodorovskoye, and coal cake produced by Pyramida LLC were used for research. The study of chemical and mineral composition was carried out by standard methods on prepared samples. The study of ceramic and technological properties (plasticity, molding moisture, degree of crushing, air and fire shrinkage, compressive strength, water absorption) of raw materials was carried out according to generally accepted methods on samples precrushed to a certain grain composition, since opokas, depending on the type, do not soak or slowly soak in water.Results. Pre-firing technological properties of opokas and their differences from traditional clay raw materials soaked in water were confirmed: increased molding moisture, small air shrinkage, low sensitivity to drying. The dependence of density and strength of samples on the degree of pulverization of opoka, firing temperature and the amount of carbon cake in the raw material mixture has been established. The influence of coal preparation wastes and their optimal amount on physical and mechanical properties of fired samples has been determined. The introduction of carbon cake allows to exclude the use of gas for firing or minimize its introduction. On the basis of the obtained results a simplified technological scheme for the production of large-format stones with minimum production cost has been developed.Discussion and Conclusion. The proposed technological scheme consists of two units of the main mass preparation equipment, molding of products is carried out by semi-rigid extrusion, drying of products is carried out directly on kiln cars, and for firing coal cake is used, which is introduced into the raw mix. These factors and technological methods allow to obtain products with low thermal conductivity, but with strength 3–5 times higher than that of aerated concrete blocks of similar density. The prime cost of ceramic stones will amount to 3–3.5 thousand rubles per 1 m3 of products. Rostov region, possessing opoka-like rocks and unclaimed reserves of technogenic coal raw materials, can become a center of production of large-format ceramic stones with low cost and provide the south and central part of the country with highquality wall materials.
基于奥波卡类岩的大规格陶瓷石生产技术和特殊性
导言。目前,墙体陶瓷工业的紧迫任务之一是生产抗压强度为 10-15 兆帕,导热系数小于 0.12 W/(m-оС)的大规格陶瓷石材,而每立方米的市场成本应与加气混凝土砌块相当,在每立方米 5-6 千卢布之间。这个问题可以通过开发现代节能生产技术和使用蛋白岩和煤炭加工废料作为燃料和燃烧添加剂的主要原料来解决。研究使用了俄罗斯南部矿床(纳戈尔诺夫斯科耶、巴坎斯科耶、沙赫廷斯科耶、阿维洛-费奥多罗夫斯科耶)中的蛋白石--蛋白岩,以及 Pyramida LLC 生产的煤饼。化学成分和矿物成分研究是通过标准方法对制备的样品进行的。原材料的陶瓷和工艺性能(可塑性、成型湿度、粉碎度、空气收缩率和火收缩率、抗压强度、吸水性)研究是根据公认的方法,在预先粉碎到一定颗粒成分的样品上进行的,因为鸦片(根据不同类型)不会浸泡在水中或在水中缓慢浸泡。结果证实了罂粟花的预烧技术特性及其与浸泡在水中的传统粘土原料的区别:成型水分增加、空气收缩小、对干燥的敏感性低。样品的密度和强度与阿波卡的粉碎程度、焙烧温度和原料混合物中的碳饼含量有关。还确定了煤制备废料及其最佳用量对烧制样品物理和机械性能的影响。引入碳饼可以避免使用煤气进行焙烧或尽量减少煤气的引入。在所得结果的基础上,制定了以最低生产成本生产大规格石料的简化技术方案。所提出的技术方案由两套主要质量制备设备组成,产品的成型采用半刚性挤压成型,产品的干燥直接在窑车上进行,烧制时使用煤饼,并将其引入生料混合物中。通过这些因素和技术方法,可以获得导热系数较低的产品,但其强度比同等密度的加气混凝土砌块高出 3-5 倍。陶石的主要成本为每 1 立方米产品 3-3.5 万卢布。罗斯托夫州拥有类似奥波卡的岩石和未开采的技术煤原料储量,可以成为低成本大规格陶瓷石材的生产中心,为国家南部和中部地区提供高质量的墙体材料。
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