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Substrate temperature and water vapour effects on structural and mechanical properties of TiO x N y coatings

机译:基材温度和水蒸气对TiO x N y 涂层的结构和力学性能的影响

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摘要

Dc reactive sputtering was successfully implemented to deposit titanium oxynitride thin films using a titanium metallic target, argon, nitrogen and water vapour as reactive gases. The nitrogen partial pressure was kept constant during every deposition whereas that of the water vapour was systematically changed from 0 to 0.1 Pa. The study aims at comparing the structural and mechanical properties of the coatings deposited at room temperature (293 K) and at 673 K. Surface morphology of the film was examined by atomic force microscopy and showed different aspects according to the growth temperature. Topography mainly depends on the amount of water vapour introduced during the deposition process. Some significant changes of the crystallographic structure, due to the high substrate temperature were correlated with the evolution of the surface aspect and roughness parameters. Determination of the phase occurrence by X-ray diffraction was also carried out and appeared to be a significant parameter in understanding the evolution of mechanical properties like nanohardness (H n) and Young’s modulus (E). H n and E values obtained by nanoindentation ranged from 16.5 to 7 GPa and from 240 to 100 GPa, respectively. For both temperatures, mechanical properties of titanium oxynitride thin films were notably reduced as a function of the water vapour supply, especially for partial pressures higher than 4 × 10−2 Pa. These mechanical behaviours were correlated and discussed with the phase occurrence and the amorphous structure of titanium oxynitride thin films.
机译:使用钛金属靶,氩气,氮气和水蒸气作为反应气体,成功地实施了Dc反应溅射,以沉积氧氮化钛薄膜。在每次沉积过程中,氮气分压保持恒定,而水蒸气的氮气分压则从0变为0.1 Pa。该研究旨在比较室温(293 K)和673 K下沉积的涂层的结构和力学性能。通过原子力显微镜检查膜的表面形态,并根据生长温度显示出不同的方面。形貌主要取决于沉积过程中引入的水蒸气量。由于衬底温度高,晶体结构发生了一些重大变化,这与表面长宽比和粗糙度参数的变化有关。还通过X射线衍射确定了相的出现,这似乎是理解诸如纳米硬度(H n )和杨氏模量(E)等机械性能演变的重要参数。通过纳米压痕获得的H n 和E值分别为16.5至7 GPa和240至100 GPa。在这两个温度下,氮氧化钛薄膜的机械性能均会随着水蒸气的供给而显着降低,尤其是对于分压高于4×10−2 Pa的情况。这些力学行为与相相关并进行了讨论。氧氮化钛薄膜的产生和非晶结构。

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  • 来源
    《Journal of Materials Science》 |2006年第17期|5639-5645|共7页
  • 作者单位

    Laboratoire de Microanalyse des Surfaces (LMS) Ecole Nationale Supérieure de Mécanique et des Microtechniques (ENSMM);

    Laboratoire de Microanalyse des Surfaces (LMS) Ecole Nationale Supérieure de Mécanique et des Microtechniques (ENSMM);

    Laboratoire de Microanalyse des Surfaces (LMS) Ecole Nationale Supérieure de Mécanique et des Microtechniques (ENSMM);

    Laboratoire de Microanalyse des Surfaces (LMS) Ecole Nationale Supérieure de Mécanique et des Microtechniques (ENSMM);

    Laboratoire de Microanalyse des Surfaces (LMS) Ecole Nationale Supérieure de Mécanique et des Microtechniques (ENSMM);

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