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The Effect of Microcrystals on ZrF4-BaF2-LaF3-AlF3-NaF Glass Fiber Fracture

机译:微晶对ZrF4-BaF2-LaF3-AlF3-NaF玻璃纤维断裂的影响

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摘要

The mechanical response of materials to an applied force is determined by the inherent microstructure properties of the material. Microcrystals formed during heating and fiber drawing represent inherent flaws, which play a strong role in the mechanical properties as well as the handling ability of optical waveguides, in particular ZBLAN (ZrF4-BaF2-LaF3-AlF3-NaF) fibers. The property of the fiber to flex and bend is useful for handling and positioning the fiber in a desired application. A series of ZBLAN fibers were bent to specific radii of curvature to determine the applied curvature at which fiber fracture occurs. The fibers were first subjected to a tailored temperature arrangement for a designated amount of time to induce varying amounts of crystal formation. The fiber failure was documented and photographed with the aid of optical microscopy and scanning electron microscopy. Fracture mechanics analysis was used to characterize the impact of crystal size on the failure of the ZBLAN fiber. The results of this assessment show the impact of thermal degradation on ZBLAN fibers as well as suggest an optimum fiber drawing take-up reel diameter.
机译:材料对施加力的机械响应由材料的固有微观结构特性决定。在加热和拉丝过程中形成的微晶代表固有的缺陷,它们在机械性能以及光波导,特别是ZBLAN(ZrF4-BaF2-LaF3-AlF3-NaF)纤维的处理能力中发挥着重要作用。纤维弯曲和弯曲的性质对于在所需应用中处理和定位纤维是有用的。将一系列ZBLAN纤维弯曲到特定的曲率半径,以确定发生纤维断裂时所施加的曲率。首先使纤维经受定制的温度布置达指定的时间量,以引起不同数量的晶体形成。记录纤维失效并借助光学显微镜和扫描电子显微镜照相。断裂力学分析用于表征晶体尺寸对ZBLAN光纤失效的影响。评估结果显示了热降解对ZBLAN纤维的影响,并提出了最佳的纤维拉伸卷取卷轴直径。

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