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Crystallization behavior and mechanical properties of high strength mica-containing glass-ceramics from granite wastes

材料科学 透辉石 结晶 复合材料 陶瓷 镁橄榄石 抗弯强度 微观结构 硅灰石 霞石 玻璃化转变 云母 矿物学 化学工程 聚合物 原材料 有机化学 化学 工程类
作者
Xiaokun Tian,Anjian Li,Sheng Li,Xingtao Wang,Ya Qu,Fengyang Zhao,Yanchao Xu,Yunlong Yue,Junfeng Kang
出处
期刊:Ceramics International [Elsevier BV]
卷期号:48 (16): 23119-23126 被引量:11
标识
DOI:10.1016/j.ceramint.2022.04.292
摘要

The high-strength mica-containing glass-ceramics were prepared from granite wastes by bulk crystallization. The influences of SiO2/Al2O3 molar ratio (S/A = 7.72, 9.62, 12.58, 17.82 and 29.67) on the crystallization behavior, microstructure, mechanical properties and machinability of glass-ceramics were investigated. The results demonstrated that the polymerization degree of the glass network decreased with the S/A ratio increasing, which further caused the decrease in glass transition temperature and crystallization temperatures. The increase in the S/A ratio promoted the precipitation of diopside, hectorite, kalsilite and tainiolite in glass-ceramics when the samples were heated at 750 °C, while inhibiting the precipitation of forsterite. For the glass-ceramics crystallized at 800 and 900 °C, the main crystalline phases transformed from diopside, forsterite, and nepheline to diopside, kalsilite, and tainiolite, with the S/A ratio increasing. As the SiO2 gradually replaced Al2O3, the morphology of crystals changed from lamellar to granular, while the mean size of crystals reduced. The Vickers-Hardness values of glass-ceramics crystallized at 800 and 900 °C ascended with S/A ratio rising, and the values were above 6.30 GPa. The bending strength of most glass-ceramics is stable between 90 and 140 MPa, among which the maximum bending strength is 133.28 ± 14.81 MPa. The fracture toughness of the glass-ceramic crystallized at 800 and 900 °C declined, while that at 700 °C increased with a larger S/A ratio. Glass-ceramics after heat-treated at 900 °C with S/A ratio of 9.62 had the largest fracture toughness of 3.28 ± 0.15 MPa m1/2. In preliminary tests of machinability, glass-ceramic after heat-treated at 900 °C with S/A ratio of 9.62 showed better results.
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