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Theoretical investigation of metal coating deposition on optical fibers by freezing technique. The model of the process

机译:冷冻技术光纤金属涂层沉积的理论研究。 该过程的模型

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Metal-coated fibers are irreplaceable in a multiplicity of uses owing to high hermeticity of the coating and its chemical and thermal stability. At present, the most widespread technique for the metal coating application onto a fiber is a so-called freezing technique, which consists in pulling a silica fiber through a layer of a metal's melt directly in the fiber drawing process. If the fiber temperature is lower than the metal melting point, a certain amount of the melt is frozen on the fiber surface in the form of coating. For this to occur, it is necessary that the duration of the fiber-melt contact did not exceed the time during which the fiber heats up to the metal's melting point; otherwide, the frozen metal will melt again. Because silica glass is poorly wetted with a majority of liquid metals, the coating in the latter case is likely to become discontinuous.
机译:由于涂层的高密度性及其化学和热稳定性,金属涂覆的纤维在多种用途中是不可替代的。 目前,金属涂料施用到纤维上的最广泛的技术是所谓的冷冻技术,其包括直接在纤维拉伸过程中通过金属熔体层拉动二氧化硅纤维。 如果纤维温度低于金属熔点,则以涂布的形式在纤维表面上冷冻一定量的熔体。 为此,纤维熔体接触的持续时间必须不超过纤维加热到金属熔点的时间; 在overwide中,冷冻金属将再次熔化。 因为二氧化硅玻璃湿润较差,随着大部分液体金属湿润,所以后一种情况下的涂层可能是不连续的。

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