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首页> 外文期刊>Materials transactions >High Resolution Transmission Electron Microscopy Study of Calcium Fluoride Single Crystal (111) Surfaces Processed by Ultraprecision Machining
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High Resolution Transmission Electron Microscopy Study of Calcium Fluoride Single Crystal (111) Surfaces Processed by Ultraprecision Machining

机译:超精密加工处理氟化钙单晶(111)表面的高分辨率透射电镜研究

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The microstructure of a mechanically finished calcium fluoride (CaF_2) was studied by transmission electron microscopy (TEM). The (111) oriented surfaces of high-purity CaF_2 single crystals were finished to a flat surface by ultra-precision mechanical polishing. A float polishing method - with 7-nm-diameter silicon dioxide powder, pure water, and a tin lap - was employed for the finishing. Prior to the float polishing, ultraprecision grinding was performed as the preliminary treatment. A cross-sectional TEM study indicated that the thickness of the subsurface damage introduced by ultraprecision grinding was relatively small when compared with that by the conventional optical polishing process. Further, the float polishing process did not introduce any mechanical damages in the CaF_2 crystals. The TEM images showed that the float-polished surface had a faceted structure consisting of (111) terrace planes and nanometer-sized steps. The size of a single terrace depends on the mismatch angle between the sample surface and the (111) plane. The high-resolution TEM observation suggested that an atomically smooth (111) surface with a bulk fluorite structure was obtained over a relatively wide area on the large terrace planes.
机译:通过透射电子显微镜(TEM)研究了机械加工的氟化钙(CaF_2)的微观结构。通过超精密机械抛光将高纯度CaF_2单晶的(111)取向表面精加工成平坦表面。采用浮法抛光-直径为7 nm的二氧化硅粉末,纯水和锡卷-进行精加工。在浮法抛光之前,进行超精密研磨作为初步处理。横截面TEM研究表明,与传统的光学抛光工艺相比,超精密研磨引入的亚表面损伤的厚度相对较小。此外,浮法抛光工艺不会在CaF_2晶体中引入任何机械损伤。 TEM图像显示,浮子抛光的表面具有由(111)平台平面和纳米级台阶组成的多面结构。单个平台的大小取决于样品表面和(111)平面之间的失配角。高分辨率TEM观察表明,在大平台平面上的相对较宽区域上获得了具有块状萤石结构的原子光滑(111)表面。

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