Panin Alexey, Shugurov Artur, Kazachenok Marina, Sergeev Victor
Institute of Strength Physics and Materials Science of Siberian Branch of Russian Academy of Sciences, 634055 Tomsk, Russia.
School of Nuclear Science & Engineering, National Research Tomsk Polytechnic University, 634050 Tomsk, Russia.
Materials (Basel). 2019 Jul 12;12(14):2249. doi: 10.3390/ma12142249.
The effect of the elemental composition of AlSiN coatings deposited on Cu substrates by magnetron sputtering on their structure, mechanical properties and thermal cycling performance is studied. The coatings with Al-Si-N solid solution, two-phase (AlSiN nanocrystallites embedded in the SiN tissue phase) and amorphous structure were obtained by varying Al/Si ratio. It is shown that polycrystalline coatings with a low Si content (AlSiN) are characterized by the highest thermal cycling resistance. While the coatings with a high and intermediate Si content (AlSiN and AlSiN) were subjected to cracking and spallation after the first cycle of annealing at a temperature of 1000 °C, delamination of the AlSiN coating was observed after 25 annealing cycles. The AlSiN coating also exhibited the best barrier performance against copper diffusion from the substrate. The effect of thermal stresses on the diffusion barrier performance of the coatings against copper diffusion is discussed.
研究了通过磁控溅射沉积在铜衬底上的AlSiN涂层的元素组成对其结构、力学性能和热循环性能的影响。通过改变Al/Si比获得了具有Al-Si-N固溶体、两相(嵌入SiN组织相中的AlSiN纳米微晶)和非晶结构的涂层。结果表明,低Si含量的多晶涂层(AlSiN)具有最高的热循环抗性。而高Si含量和中等Si含量的涂层(AlSiN和AlSiN)在1000℃温度下进行第一次退火循环后就出现了开裂和剥落现象,在25次退火循环后观察到AlSiN涂层出现分层。AlSiN涂层还表现出对铜从衬底扩散的最佳阻挡性能。讨论了热应力对涂层阻挡铜扩散性能的影响。