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首页> 外文期刊>Journal of the European Ceramic Society >Directional solidification of the eutectic LiF-LiYF_4 using Bridgman and micro-pulling down techniques: Microstructural study and some properties
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Directional solidification of the eutectic LiF-LiYF_4 using Bridgman and micro-pulling down techniques: Microstructural study and some properties

机译:使用Bridgman和微拉技术定向凝固LiF-LiYF_4共晶:微观结构研究和一些性能

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摘要

The eutectic LiF-LiYF_4 has been solidified by Bridgman and micro-pulling down (mPD) at pulling rates from 4 to 300 mm/h. The microstructure changes from a coupled, interpenetrated-like one to macrofaceted colonies composed of an approximately triangular arrangement of LiF fibers inside the LiYF_4 matrix as the pulling rate increases. The cross-over pulling rate is around 3 times larger for the mPD method, corresponding to its larger solidification gradient. The crystallographic growth direction of the matrix phase was found using EBSD. Effective medium estimations of the THz permittivity of the composite predict around the interphase phonon-polariton resonance (wavelength around 17.5 μm) a small permittivity hyperbolic behavior specific of the ordered composite that is tolerant to different relative orientations. Water etching of polished cross-sections constitutes a very simple procedure to generate surface micro-holes of predefined size in the LiYF_4 matrix.
机译:共晶LiF-LiYF_4已通过Bridgman固化并以4至300 mm / h的拉速微拉(mPD)固化。随着提拉速率的增加,微观结构从偶合的,互穿的类似的细胞转变成由LiYF_4基质内部的近似三角形排列的LiF纤维组成的大面菌落。对于mPD方法,交叉拉速大约是其3倍,对应于其较大的凝固梯度。使用EBSD发现了基体相的晶体生长方向。复合材料的太赫兹介电常数的有效介质估计可预测相间声子-极化子共振(波长约17.5μm)周围有序复合材料特有的小介电常数双曲线行为,可容忍不同的相对取向。抛光截面的水蚀刻构成了一个非常简单的过程,可以在LiYF_4矩阵中生成预定义尺寸的表面微孔。

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