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活化高岭土在较低烧结温度下增韧瓷体的机理

The Mechanism of Porcelain Toughened by Activated Kaolinite in a Lower Sintering Temperature.

作者信息

Lin Shaomin, Yu Yaling, Tan Yue, Yang Huan, Zhong Mingfeng, Zhang Chenyang, Zhang Zhijie, Wu Yunying

机构信息

School of Materials Science and Engineering, Hanshan Normal University, Chaozhou 521041, China.

Chaozhou Branch of Chemistry and Chemical Engineering Guangdong Laboratory, Chaozhou 521041, China.

出版信息

Materials (Basel). 2022 May 28;15(11):3867. doi: 10.3390/ma15113867.

Abstract

A high sintering temperature is usually required to acquire excellent performance in the ceramic industry, but it results in high fuel consumption and high pollution. To reduce the sintering temperature and to toughen the porcelain, a self-produced sintering additive of citric acid activated kaolinite was added to the raw material; X-ray powder diffraction (XRD), transmission electron microscope (TEM), scanning electron microscope (SEM), and thermal gravity analysis and differential scanning calorimetry (TG-DSC) were used to characterize the samples, and the toughening mechanism was discussed. The citric acid activated kaolinite obtained high activity and a large specific surface area. After introducing the activated kaolinite, the bending strength of porcelain at 1270 °C increased from 100.08 MPa to 124.04 Mpa, which was 11.45% higher than that of porcelain without activated kaolinite at 1350 °C. The results of XRD revealed that the content of mullite increased and the quartz decreased at 1270 °C, and the well-distributed needle-like mullite was observed in the images of SEM with the addition of citric acid activated kaolinite. The TG-DSC results indicated adding activated kaolinite to porcelain raw materials reduced the formation of mullite to 994.6 °C. The formation of mullite in a lower temperature served as mullite seeds in a green body during firing, and it enhanced the growth of mullite. These contributed to the appropriate phase composition and the excellent microstructure of porcelain. Thus, the distinguished mechanical performance of porcelain was obtained. Moreover, the sintering additive had no adverse effect on the porcelain body as citric acid-activated kaolinite was one of the main components of the porcelain raw material.

摘要

在陶瓷工业中,通常需要较高的烧结温度才能获得优异的性能,但这会导致高燃料消耗和高污染。为了降低烧结温度并使瓷器增韧,将自制的柠檬酸活化高岭土烧结添加剂添加到原料中;采用X射线粉末衍射(XRD)、透射电子显微镜(TEM)、扫描电子显微镜(SEM)以及热重分析和差示扫描量热法(TG-DSC)对样品进行表征,并探讨增韧机理。柠檬酸活化高岭土具有高活性和大比表面积。引入活化高岭土后,1270℃时瓷器的抗弯强度从100.08MPa提高到124.04MPa,比未添加活化高岭土的瓷器在1350℃时的抗弯强度高11.45%。XRD结果表明,1270℃时莫来石含量增加而石英含量减少,添加柠檬酸活化高岭土后,在SEM图像中观察到分布均匀的针状莫来石。TG-DSC结果表明,向瓷器原料中添加活化高岭土使莫来石的形成温度降低到994.6℃。在较低温度下形成的莫来石在烧制过程中作为坯体中的莫来石晶种,促进了莫来石的生长。这些有助于形成合适的相组成和优异的瓷器微观结构。因此,获得了瓷器卓越的力学性能。此外,由于柠檬酸活化高岭土是瓷器原料的主要成分之一,该烧结添加剂对瓷体没有不利影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6fd/9181766/165919beebdb/materials-15-03867-g001.jpg

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