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首页> 外文期刊>Journal of Materials Science >Understanding the role of gravity in the crystallization suppression of ZBLAN glass
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Understanding the role of gravity in the crystallization suppression of ZBLAN glass

机译:了解重力在ZBLAN玻璃结晶抑制中的作用

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摘要

ZBLAN (ZrF_4-BaF_2-LaF_3-AlF_3-NaF) glass fibers are excellent materials for the use in many applications, such as fiber optics, fiber amplifiers, and lasers for cutting, drilling, and surgery. The main advantage of ZBLAN glasses over other glasses, such as silica, is its superior infrared transmissibility. The theoretical optical transmission spectrum for a ZBLAN fiber is from 0.3 lm in the UV to 7 lm in the IR region. The main obstacle with ZBLAN glass is the extrinsic losses from impurities, which includes crystallites formed during the manufacturing process. Due to ZBLAN's narrow working range, crystallites easily form during the drawing process, which inhibits the materials transmissibility. Microgravity (μ-g) processing has been proven to suppress crystallization in ZBLAN glass, thus allowing the material to reach its theoretical loss coefficient. Past researchers have shown that this phenomenon exists, but the mechanism of crystallization suppression in a microgravity environment is not well understood. This research endeavors to understand the role that gravity plays on the crystallization suppression of ZBLAN glass. The outcome of this study will impact the production of superior mid-IR fiber optics and could lead to a more feasible manufacturing technique. The main conclusion developed from this study is that the process is heavily dependent upon mass transfer kinetics such as diffusion and buoyancy-driven convection. Thus, suppressing buoyancy-driven convection, at relevant drawing temperatures, suppresses crystallization growth in ZBLAN glass. This theory was proven through microgravity experimentation, analytical, and computational modeling.
机译:ZBLAN(ZrF_4-BaF_2-LaF_3-AlF_3-NaF)玻璃纤维是用于许多应用的出色材料,例如光纤,光纤放大器以及用于切割,钻孔和手术的激光器。与其他玻璃(例如二氧化硅)相比,ZBLAN玻璃的主要优势在于其出色的红外透射率。 ZBLAN光纤的理论光透射光谱在UV区域为0.3 lm,在IR区域为7 lm。 ZBLAN玻璃的主要障碍是杂质带来的外部损失,杂质包括在制造过程中形成的微晶。由于ZBLAN的工作范围狭窄,因此在拉拔过程中容易形成微晶,从而限制了材料的透光性。事实证明,微重力(​​μ-g)处理可抑制ZBLAN玻璃中的结晶,从而使材料达到其理论损耗系数。过去的研究人员已经表明存在这种现象,但是对于在微重力环境下抑制结晶的机理尚不十分了解。本研究致力于了解重力对ZBLAN玻璃结晶抑制的作用。这项研究的结果将影响优质的中红外光纤的生产,并可能导致更可行的制造技术。这项研究得出的主要结论是,该过程在很大程度上取决于传质动力学,例如扩散和浮力驱动的对流。因此,在相关的拉伸温度下抑制浮力驱动的对流可抑制ZBLAN玻璃中的结晶生长。通过微重力实验,分析和计算模型证明了该理论。

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