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Commercial Production of Heavy Metal Fluoride Glass Fiber in Space

机译:在太空中商业化生产重金属氟化物玻璃纤维

摘要

International Space Station Alpha (ISSA) will provide a platform not only for materials research but also a possible means to produce products in space which cannot be easily produced on the ground. Some products may even be superior to those now produced in unit gravity due to the lack of gravity induced convection effects. Our research with ZrF4-BaF2-LaF3-AlF3-NaF (ZBLAN glass) has shown that gravity does indeed play a major role in the crystallization behavior of this material. At the present time ZBLAN is being produced on earth in fiber optic form for use in surgical lasers and fiber optic lasers among other applications. High attenuation coefficients, however, have kept this material from being used in other applications such as long haul data transmission links. The high attenuation coefficients are due to impurities which can be removed through improved processing techniques and crystals which can only be removed or prevented from forming by processing in a reduced gravity environment.
机译:阿尔法国际空间站(ISSA)将提供一个不仅用于材料研究的平台,而且为在太空中生产不易在地面上生产的产品提供一种可能的方式。由于缺乏重力引起的对流效应,某些产品甚至可能优于现在在单位重力下生产的产品。我们对ZrF4-BaF2-LaF3-AlF3-NaF(ZBLAN玻璃)的研究表明,重力确实在这种材料的结晶行为中起着重要作用。目前,ZBLAN以光纤形式在地球上生产,用于外科手术激光器和光纤激光器以及其他应用。但是,高衰减系数使这种材料无法在其他应用中使用,例如长距离数据传输链路。高衰减系数归因于可通过改进的加工技术去除的杂质和仅可通过降低重力环境下的加工去除或防止形成的晶体。

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