Annealing effect on the microstructure and mechanical properties of amorphous AICN films
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摘要: 利用磁控濺射方法在單晶硅基片上制備出不同Al含量AlCN非晶薄膜,隨后分別在700℃和1000℃進行真空退火熱處理.使用X射線衍射儀和高分辨透射電鏡研究了沉積態和退火態薄膜的組織和微觀結構,用納米壓痕儀測試硬度和彈性模量.結果表明,退火態薄膜組織和微觀結構強烈依賴于薄膜的Al含量.經1000℃退火后,低Al含量AlCN薄膜沒有出現結晶現象,但形成了分層;高Al含量AlCN薄膜中,退火促使AlN納米晶的生成,使薄膜形成了非晶包裹納米晶的復合結構,隨著距表面深度的增加,形成的納米晶密度和尺寸均有減小的趨勢.隨著退火溫度的升高,AlCN薄膜的硬度和彈性模量均降低;而對于高Al含量AlCN薄膜,由于形成了納米復合結構,硬度和彈性模量下降幅度減少.Abstract: AlCN amorphous thin films with different Al contents were deposited on Si(100) substrates by magnetron sputtering, followed by vacuum annealing at 700 ℃ and 1 000 ℃ respectively.The microstructures of the as-deposited and annealed films were characterized by X-ray diffraction(XRD) and high-resolution transmission electron microscopy(HRTEM), and the values of nanohardness and elastic modulus were measured by the nano-indention method.The results indicated that the organization and microstructure of the annealed AlCN films strongly depended on Al content.For the thin films with low Al content, delamination rather than crystallization occurred after annealing at 1 000 ℃, but for the thin films with high Al content, annealing accelerated the formation of AlN nanocrystallites, which were embedded into amorphous matrices.The density and size of the nanocrystallites were both found decreasing with increasing depth from the film surface.With the increasing of annealing temperature, both the values of nanohardness and elastic modulus decreased;but for the AlCN films with high Al content the decreasing trends slowed down due to the formation of nanocomposite structure.
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Key words:
- amorphous thin films /
- microstructures /
- mechanical properties /
- annealing
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