Influence of zinc-containing compounds on the properties of ceramic materials based on the Li2O–MgO–Al2O3–SiO2 system

Q4 Chemistry
R. Popov, E. О. Bogdan, O. A. Sergievich, E. Dyatlova
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引用次数: 0

Abstract

The results of a study the influence of magnesium oxide substitution with zinc oxide in the Li2O–MgO– Al2O3–SiO2 system, as well as the introduction of pre-synthesized ganite ZnAl2O4, on sintering, phase formation and thermal expansion of synthesized materials are presented. It was found that after substitution of 4 % magnesium oxide MgO with zinc oxide ZnO, the ceramic material synthesized at a temperature of 1 150 °C was characterized by higher values of apparent density (not less than 1 835 kg/m3), mechanical compressive strength (300 MPa), and heat resistance (more than 80 thermal cycles), as well as low values of LTEC (–0,25 ∙ 10–6 K–1), which is due to the formation of crystalline phases of spodumene, spinel, forsterite, corundum, ganite and quartz.
含锌化合物对基于 Li2O-MgO-Al2O3-SiO2 体系的陶瓷材料性能的影响
研究结果介绍了在 Li2O-MgO- Al2O3-SiO2 体系中用氧化锌替代氧化镁以及引入预合成甘宁石 ZnAl2O4 对合成材料的烧结、相形成和热膨胀的影响。研究发现,用氧化锌 ZnO 替代 4% 的氧化镁 MgO 后,在 1 150 °C 温度下合成的陶瓷材料表观密度值更高(不低于 1 835 kg/m3)、机械抗压强度(300 兆帕)和耐热性(超过 80 次热循环),以及低温蚀刻系数(-0.25 ∙ 10-6 K-1)较低。
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CiteScore
0.30
自引率
0.00%
发文量
38
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