微重力条件下ZrF4-BaF2-LaF3-AlF3-NaF玻璃可加工性增强

A. Torres, J. Ganley, A. Maji, D. Tucker, D. Starodubov
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引用次数: 3

摘要

氟锆酸盐玻璃,如ZBLAN (ZrF4-BaF2-LaF3-AlF3-NaF),具有从0.3 μm紫外到7 μm红外区的光传输潜力。然而,在纤维拉伸过程中形成的晶体使这种玻璃无法达到预期的透射范围。玻璃被拉入纤维的温度称为工作范围,定义为(Tx - Tg),以玻璃化转变温度(Tg)和结晶温度(Tx)为界。与硅玻璃相比,ZBLAN玻璃的工作温度范围非常窄。多个ZBLAN样品在抛物线飞行器上的加热和淬火试验装置上,在受控的0-g和超g环境下进行试验,并与1-g地面试验进行比较。零重力公司抛物线飞行器的微重力持续时间约为20秒,超重力间隔约为56秒。光学显微镜检查表明,当在微重力环境下加工时,ZBLAN中的晶体生长受到抑制。因此,晶体形成的结晶温度Tx增加,显著拓宽了ZBLAN的工作温度范围。
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Enhanced processability of ZrF4-BaF2-LaF3-AlF3-NaF glass in microgravity
Fluorozirconate glasses, such as ZBLAN (ZrF4-BaF2-LaF3-AlF3-NaF), have the potential for optical transmission from 0.3 μm in the UV to 7 μm in the IR region. However, crystallites formed during the fiber drawing process prevent this glass from achieving its desired transmission range. The temperature at which the glass can be drawn into a fiber is known as the working range, defined as (Tx - Tg), bounded by the glass transition temperature (Tg) and the crystallization temperature (Tx). In contrast to silica glasses, the working temperature range for ZBLAN glass is extremely narrow. Multiple ZBLAN samples were subject to a heating and quenching test apparatus on the parabolic aircraft, under a controlled 0-g and hyper-g environment and compared with 1-g ground tests. The microgravity duration on board Zero-G Corporation parabolic aircraft is approximately 20 seconds and the hyper-g intervals are approximately 56 seconds. Optical microscopy examination elucidates crystal growth in ZBLAN is suppressed when processed in a microgravity environment. The crystallization temperature, Tx, at which crystals form increased, therefore, significantly broadening the working temperature range for ZBLAN.
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