首页> 外文期刊>Applied Physics Letters >Effect of B content on nanostructure evolution and twinning deformation of nanocrystallite in nc-Ti(N,B)/a-(TiB_2,BN) nanocomposite thin films
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Effect of B content on nanostructure evolution and twinning deformation of nanocrystallite in nc-Ti(N,B)/a-(TiB_2,BN) nanocomposite thin films

机译:B含量对nc-To(N,B)/ a-(B 2,B)纳米复合薄膜中纳米晶纳米结构演变和孪生变形的影响

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Nanostructure evolution and deformation of nanocrystallites in nanocrystalline (nc-) Ti(N,B)/ amorphous (a-) (TiB_2,BN) thin films were investigated by high resolution transmission electron microscopy. The results indicated that the incorporation of B into TiN led to the formation of the nanocomposite that consists of nc-Ti(N,B) grains embedded in an amorphous matrix. Increasing B content accelerated not only the formation of more [200]-oriented grains but also the twining deformation in nanocrystallites. The deformation was enhanced with increasing B content, which was attributed to the decrease of grain size with increasing B content and the formation of nc-Ti(N,B) solid solution by dissolving B into the TiN lattice.
机译:通过高分辨率透射电子显微镜研究了纳米晶体(nc-)Ti(N,B)/非晶态(a-)(TiB_2,BN)薄膜中纳米晶体的纳米结构演化和变形。结果表明,将B掺入TiN导致形成了纳米复合材料,该复合材料由嵌入无定形基质中的nc-Ti(N,B)晶粒组成。 B含量的增加不仅加速了更多[200]取向晶粒的形成,而且还加速了纳米微晶的孪生变形。变形随着B含量的增加而增强,这归因于随着B含量的增加晶粒尺寸减小,以及通过将B溶解在TiN晶格中而形成nc-Ti(N,B)固溶体。

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