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Thermal stability in oxidative and protective environments of a-C:H cap layer on a functional gradient coating

机译:功能梯度涂层上a-C:H盖层在氧化和保护环境中的热稳定性

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摘要

Three types of hydrogenated amorphous carbon (a-C:H) coatings were synthesized on stainless steel substrates by a Plasma Assisted CVD process, containing hydrogen contents in the range from 25 to 29 at.%. The effect of annealing up to 600 °C in two different environments on both the structure and the mechanical properties of the coatings were investigated by means of Differential Scanning Calorimetry/Thermogravimetry (DCS/TG), Raman Spectroscopy and Depth Sensing Indentation. The results indicate that the structural modifications occurred in the coatings in both protective and oxidative atmospheres up to 400 °C were due to a complex atomic rearrangement involving the dehydrogenation reaction. A small weight loss, detected by isothermal TG analysis confirmed the H2 effusion. This dense effect proceeds without a change of hardness which was maintained in the diamond-like regime. The annealing in non-oxidative ambiance at temperatures above 500 °C causes both gaseous products effusion and sp3 to sp2 transformation. Raman parameters and hardness values were, under these conditions, similar to those known for a typical graphite-like regime. While the onset temperature of the graphitization process was found to be almost independent of the H content range investigated, the situation was completely different in relation to the oxidation reaction. The highest oxidation resistance was found for coatings with the lowest H content.
机译:通过等离子辅助CVD工艺在不锈钢基板上合成了三种类型的氢化无定形碳(a-C:H)涂层,其氢含量在25至29 at。%的范围内。通过差示扫描量热/热重分析(DCS / TG),拉曼光谱和深度感应压痕研究了在两种不同环境中退火至600°C对涂层结构和机械性能的影响。结果表明,在高达400°C的保护性气氛和氧化性气氛中,涂层中发生的结构改性都是由于涉及脱氢反应的复杂原子重排所致。通过等温TG分析检测到的少量失重证实了H2的渗出。这种致密的效果在不改变硬度的情况下得以保持,而在钻石状状态下硬度得以保持。在高于500°C的温度下在非氧化性环境中进行退火会导致气态产物渗出以及sp3向sp2的转化。在这些条件下,拉曼参数和硬度值类似于典型的石墨状状态。尽管发现石墨化过程的起始温度几乎与所研究的H含量范围无关,但在氧化反应方面却完全不同。发现具有最低H含量的涂料具有最高的抗氧化性。

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