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Powder-in-Tube Reactive Molten-Core Fabrication of Glass-Clad BaO-TiO2-SiO2 Glass–Ceramic Fibers

机译:包覆玻璃的BaO-TiO2-SiO2微晶玻璃纤维的粉管反应活性熔核制备

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摘要

In this paper we report the fabrication of glass-clad BaO-TiO -SiO (BTS) glass–ceramic fibers by powder-in-tube reactive molten-core drawing and successive isothermal heat treatment. Upon drawing, the inserted raw powder materials in the fused silica tubing melt and react with the fused silica tubing (housing tubing) via dissolution and diffusion interactions. During the drawing process, the fused silica tubing not only serves as a reactive crucible, but also as a fiber cladding layer. The formation of the BTS glass–ceramic structure in the core was verified by micro-Raman spectroscopy after the successive isothermal heat treatment. Second-harmonic generation and blue-white photoluminescence were observed in the fiber using 1064 nm and 266 nm picosecond laser irradiation, respectively. Therefore, the BTS glass–ceramic fiber is a promising candidate for all fiber based second-order nonlinear and photoluminescence applications. Moreover, the powder-in-tube reactive molten core method offers a more efficient and intrinsic contamination-free approach to fabricate glass–ceramic fibers.
机译:在本文中,我们报告了通过管内粉末反应性熔融芯拉伸和连续等温热处理制备玻璃包覆的BaO-TiO -SiO(BTS)玻璃陶瓷纤维。拉伸后,熔融石英管中插入的原料粉末材料熔化,并通过溶解和扩散相互作用与熔融石英管(外壳管道)反应。在拉伸过程中,熔融石英管不仅用作反应性坩埚,而且还用作纤维包层。连续等温热处理后,通过显微拉曼光谱法验证了核中BTS玻璃-陶瓷结构的形成。在光纤中分别使用1064 nm和266 nm皮秒激光辐射观察到二次谐波产生和蓝白色光致发光。因此,BTS玻璃陶瓷纤维是所有基于纤维的二阶非线性和光致发光应用的有希望的候选者。此外,管中粉末反应熔融芯法提供了一种更有效和固有的无污染方法来制造玻璃陶瓷纤维。

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