材料科学
热等静压
微观结构
粒度
透明陶瓷
陶瓷
透射率
兴奋剂
连续波
晶粒生长
边坡效率
激光器
烧结
复合材料
光电子学
冶金
光学
光纤激光器
物理
纤维
作者
R.N. Maksimov,В. А. Шитов,В. В. Платонов,А. S. Yurovskikh,Guido Toci,Barbara Patrizi,Matteo Vannini,Angela Pirri
标识
DOI:10.1016/j.ceramint.2020.10.094
摘要
Yb3+-doped Lu2O3 nanoparticles produced by laser ablation were used to fabricate transparent ceramics by a combination of pressureless sintering in vacuum (PS) followed by a hot isostatic pressing (HIPing). The samples were subjected to various PS and HIPing conditions and the microstructure evolution and its correlation with the transmittance were investigated. Relative densities of over 97% were achieved after PS at the temperatures of 1250–1700 °C. Rapid grain growth occurred within PS and HIPing temperatures above 1500 °C leading to formation of intragranular porosity which is deleterious for optical quality. Higher transmittance (81.7% at λ = 1080 nm) and ultrafine microstructure with an average grain size of 0.35 μm were obtained by PS at 1250 °C followed by HIPing at 1400 °C for 5 h under 207 MPa. Output power of 2.02 W with a slope efficiency of 46.5% was obtained under a quasi-continuous wave end pumping at 929.4 nm.
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