Sokolar Radomir, Nguyen Martin
Faculty of Civil Engineering, Institute of Technology of Building Materials and Components, Brno University of Technology, Veveri 331/95, 60200 Brno, Czech Republic.
Materials (Basel). 2021 May 23;14(11):2761. doi: 10.3390/ma14112761.
The main aim of the presented article is to describe the behavior of class C fly ash-kaolin plastic doughs during the ageing process. Class C fly ash (CCFA) from the fluidized technology of fuel combustion in a thermal power plant was used as a non-plastic admixture to modify the plasticity in a kaolin-quartz sand mixture (for example, the base of a porcelain mixture). The ageing of plastic ceramic dough determined the effect of the CCFA admixture (0-10-20 wt. %) on the initial water content, plasticity (according to the Pfefferkorn test) and bulk density of a dried green body. The main feature of the CCFA admixture in the kaolin-quartz sand mixture is a solidifying effect. Fly ash increases the initial (mixing) water for the preparation of ceramic dough with constant plasticity (30 mm height of deformed cone Hf, according to the Pfefferkorn test), and Hf increases as the dough ages (the dough solidifies faster and loses its plasticity) with the addition of class C fly ash. The effect of CCFA addition on the plasticity and ageing of kaolin-quartz sand dough is documented on Bigot curves: higher content of fly ash decreases the drying shrinkage of the plastic dough, especially when drying samples that have been aged for 24 h in a plastic wrap (without the possibility of drying). The plastic dough's ageing increases the porosity of the dried green body with increased content of CCFA in the raw materials mixture and increased ageing time.
本文的主要目的是描述C类粉煤灰-高岭土塑性面团在老化过程中的行为。来自热电厂燃料燃烧流化技术的C类粉煤灰(CCFA)被用作非塑性外加剂,以改变高岭土-石英砂混合物(例如瓷料混合物的基础)的可塑性。塑性陶瓷面团的老化确定了CCFA外加剂(0-10-20重量%)对干燥生坯的初始含水量、可塑性(根据普费弗科恩试验)和堆积密度的影响。CCFA外加剂在高岭土-石英砂混合物中的主要特性是固化作用。粉煤灰增加了制备具有恒定可塑性(根据普费弗科恩试验,变形锥体高度Hf为30毫米)的陶瓷面团所需的初始(混合)水量,并且随着面团老化(添加C类粉煤灰后面团固化更快并失去可塑性),Hf增加。添加CCFA对高岭土-石英砂面团可塑性和老化的影响记录在比戈曲线中:粉煤灰含量越高,塑性面团的干燥收缩率越低,特别是在干燥用保鲜膜包裹老化24小时(无干燥可能性)的样品时。随着原料混合物中CCFA含量的增加和老化时间的延长,塑性面团的老化会增加干燥生坯的孔隙率。