析晶動(dòng)力學(xué)和顯微組織
(中南大學(xué) 材料科學(xué)與工程學(xué)院,長(zhǎng)沙 410083)
摘 要: 采用傳統(tǒng)熔體冷卻法制備了摻鐿NaF-CaF2-Al2O3-SiO2體系玻璃,并通過(guò)優(yōu)化熱處理工藝獲得了透明氟氧化物微晶玻璃。通過(guò)DSC、XRD和TEM等方法研究了引入堿金屬氧化物和堿土金屬氧化物對(duì)玻璃形成能力的影響,采用動(dòng)力學(xué)方法分析了NaF-CaF2-Al2O3-SiO2系統(tǒng)玻璃的析晶機(jī)制,探討了熱處理制度、玻璃析晶行為和顯微結(jié)構(gòu)的關(guān)系。研究表明:堿金屬氧化物的引入降低了該系統(tǒng)玻璃的形成能力,而堿土金屬氧化物的添加提高了玻璃的析晶穩(wěn)定性;該系統(tǒng)玻璃的析晶過(guò)程主要受擴(kuò)散控制,其主晶相為CaF2,析晶活化能為345.8 kJ/mol,晶粒尺寸隨晶化溫度升高逐漸增大,晶粒數(shù)量隨保溫時(shí)間延長(zhǎng)逐漸增多。通過(guò)優(yōu)化熱處理制度,獲得了晶粒尺寸小于50 nm、結(jié)晶度約為30%的透明微晶玻璃。
關(guān)鍵字: 氟氧化物玻璃;析晶行為;熱處理工藝;顯微組織;透明微晶玻璃
(School of Materials Science and Engineering, Central South University, Changsha 410083, China)
Abstract: The Yb3+-doped transparent oxyfluoride glass in NaF-CaF2-Al2O3-SiO2 system was prepared by conventional melt-quenching method and the transparent oxyfluoride glass-ceramics was obtained by optimized heat treating. The influences of introducing alkali metals oxides and alkaline earth oxides on glass-forming ability were investigated by differential thermal analysis (DTA), X-ray diffraction (XRD) analysis and transmission electron microscopy (TEM). The crystallization mechanism of NaF-CaF2-Al2O3-SiO2 system glass was analyzed by kinetics method, and the influences of heat treating conditions on the crystallization behavior and the microstructures of this system glass-ceramic were studied. The results show that the glass-forming ability is weakened with introducing alkali metals oxides, while the crystallization stability is improved by introducing alkaline earth oxides. In addition, the main crystal phase of the glass-ceramics is CaF2 and its crystallization activation energy is 345.8 kJ/mol. The size of CaF2 grains increases with increasing crystallization temperature and the amount of crystals increases with increasing holding time. A novel transparent Yb3+-doped glass-ceramics is obtained by optimizing heat treating, in which the grain size is less than 50 nm and the crystallization degree is about 30%.
Key words: oxyfluoride glass; crystallization behavior; heat treating process; microstructure; transparent glass-ceramics


