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Thermal stability of multi-layered AlCrN/Cr/AlCrN coatings at elevated temperatures for low thermal emissivity applications

机译:多层AlCrN / Cr / AlCrN涂层在高温下的低热发射率应用下的热稳定性

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摘要

Multi-layered AlCrN/Cr/AlCrN coatings were designed and deposited on Ni-based substrates by a cathodic arc ion plating system for low thermal emissivity applications. The multi-layered coatings annealed at different temperatures in air and vacuum were systematically investigated by GIXRD, EPMA, XPS, DSC, GDOES, FESEM, HR-TEM and scratch tester as well as the infrared properties evaluation. The as-deposited AlCrN layer was consisted of Cr2N nanocrystallites embedded in AlCrN amorphous matrix, inhibiting element diffusion and presenting higher infrared emissivity. The amorphous matrix began to crystallize as fcc-Cr(Al) N structure at 750 degrees C. The diffusion of Ni element from the substrate to the middle Cr layer was observed as well as the Cr-rich oxides were substituted by chrome-aluminum oxides above 750 degrees C in air. The grain boundaries resulted from the crystallization of amorphous AlCrN layer could promote the penetration of O element from air and the diffusion of Ni element from the substrate. The AlCrN/Cr/AlCrN coatings vacuum-annealed above 750 degrees C performed lower infrared emissivity than the as-deposited one, while the coatings air-annealed above 750 degrees C showed higher infrared emissivity than vacuum-annealed ones due to the low extinction coefficient of oxides formed on the coating surface. The multi-layered AlCrN/Cr/AlCrN coating could be proposed for low infrared emissivity applications below 750 degrees C.
机译:设计多层AlCrN / Cr / AlCrN涂层,并通过阴极电弧离子镀系统将其沉积在Ni基基材上,以用于低热发射率应用。通过GIXRD,EPMA,XPS,DSC,GDOES,FESEM,HR-TEM和划痕测试仪系统地研究了在空气和真空中在不同温度退火的多层涂层,并进行了红外性能评估。沉积的AlCrN层由嵌入在AlCrN非晶态基质中的Cr2N纳米微晶组成,抑制了元素扩散并具有更高的红外发射率。非晶基质在750摄氏度时开始以fcc-Cr(Al)N结构形式结晶。观察到Ni元素从基体扩散到中间Cr层,富铬氧化物被铬铝氧化物取代。高于750摄氏度的空气。非晶态AlCrN层的结晶所产生的晶界可以促进O元素从空气中的渗透以及Ni元素从基板中的扩散。在750摄氏度以上进行真空退火的AlCrN / Cr / AlCrN涂层的红外辐射率低于沉积时的红外辐射率,而在750摄氏度以上进行空气退火的涂层由于较低的消光系数而显示出的红外辐射率比真空退火的更高。在涂层表面形成的氧化物。多层AlCrN / Cr / AlCrN涂层可建议用于750摄氏度以下的低红外发射率应用。

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