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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Mechanical properties, thermal stability and oxidation resistance of HfC/a-C:H films deposited by HiPIMS
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Mechanical properties, thermal stability and oxidation resistance of HfC/a-C:H films deposited by HiPIMS

机译:HFC / A-C的机械性能,热稳定性和抗氧化性:HIPIMS沉积的H膜

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摘要

High power impulse magnetron sputtering (HiPIMS) technology is employed to prepare HfC/a-C:H nanocomposite films in Ar/C2H2 atmosphere. The gas flow rate is varied to modulate the carbon content and nanocomposite structure of the film. The correlations between the carbon content and nanocomposite structure and the mechanical properties, thermal stability and oxidation resistance of HfC/a-C:H films are investigated. Mechanical properties analysis revealed that the optimal hardness 34.8 GPa is obtained at the HfC/a-C:H film with C content of 63.6 at.%. The Young's modulus is related to the C-Hf* bond, which effectively toughens the film. The thermal stability of the film performs well when the annealing temperature reaches 800 degrees C and is gradually enhanced as the amorphous carbon content increases. Moreover, films with higher amorphous carbon content have greater potential for further hardening after annealing (from 31.8 to 38.4 GPa). The oxidation resistance of the film is governed by the synergistic effect of HfC grain size and amorphous carbon content. It is demonstrated that the two factors of fine grains and narrow mean grain separation are necessary to achieve enhanced oxidation resistance. These results may open up a new possible way to design other nc-MeC/a-C:H films for optimizing the toughness, thermal stability, and oxidation resistance. (C) 2020 Elsevier B.V. All rights reserved.
机译:高功率脉冲磁控溅射(HIPIMS)技术用于制备AR / C 2 H 2气氛中的HFC / A-C:H纳米复合膜。变化气体流速以调节薄膜的碳含量和纳米复合结构。研究了碳含量和纳米复合结构与HFC / A-C:H膜的机械性能,热稳定性和抗氧化性的相关性。机械性能分析显示,在HFC / A-C:H膜上获得最佳硬度34.8GPa,C含量为63.6。%。杨氏模量与C-HF *键相关,有效地增强了薄膜。当退火温度达到800摄氏度时,膜的热稳定性良好,随着非晶碳含量的增加而逐渐增强。此外,具有较高无定形碳含量的薄膜具有更大的电位,在退火后进一步硬化(从31.8至38.4GPa)。薄膜的氧化抗性受HFC粒度和无定形碳含量的协同作用。结果表明,含有细粒和窄平均晶粒分离的两个因素是实现增强的抗氧化性抗性。这些结果可以开辟一种设计其他NC-MEC / A-C:H薄膜的新可能方法,以优化韧性,热稳定性和抗氧化性。 (c)2020 Elsevier B.v.保留所有权利。

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