Ti和Cr元素的加入对AlSiN涂层结构、力学性能和摩擦学性能的影响

IF 0.8 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
N. Petkov, T. Bakalova, H. Bahchedzhiev, P. Kejzlar, Petr Ryšánek, M. Kormunda, P. Čapková
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引用次数: 2

摘要

研究了Al/Ti和Al/Cr对400℃阴极电弧蒸发PVD沉积AlTiSiN和AlCrSiN涂层结构、力学和摩擦学性能的影响。在制备的涂层中分别观察到原始AlSiN六方相的残余,以及立方TiN和CrN的结晶。XPS分析假设存在亚化学计量学的SiN。11个at的加法。% Ti或13 at。在AlSiN中加入% Cr,涂层的抗塑性变形能力和塑性指标均有所提高。加上13个at。%和24 at。在AlSiN涂层结构中加入% Cr,与Al2O3相比,平均摩擦系数分别降低18%和36%,与钢球相比,两种浓度的Cr均降低36%。Ti的加入对陶瓷材料的摩擦系数没有影响,而对钢材料的摩擦系数降低了30%。两种元素都改变了涂层的磨损效果。关键词:AlCrSiN;阴极电弧沉积;AlTiSiN;摩擦学的行为;耐磨性;Nanoindentation
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of the Addition of the Elements Ti and Cr on the Structure, and Mechanical and Tribological Properties of AlSiN Coatings
The influence of Al/Ti and Al/Cr ratios on the structural, mechanical and tribological properties of AlTiSiN and AlCrSiN coatings, deposited by the cathodic arc evaporation PVD method at a temperature of 400°C, was investigated. The remains of the original AlSiN hexagonal phase were observed in the obtained coatings as well as the crystallites of cubic TiN and CrN, respectively. XPS analysis assumes the presence of a substoichiometric SiN. The addition of 11 at.% Ti or 13 at.% Cr in AlSiN led to an increase in both the coating’s resistance to plastic deformation and the plasticity index. The addition of 13 at.% and 24 at.% Cr to the AlSiN coating structure resulted in a decrease in the average coefficient of friction with 18% and 36% against a counterpart of Al2O3, respectively, and with 36% for both concentration against steel ball counterpart. The addition of Ti have no influence on the values of the coefficient of friction at using ceramic counterpart, while at steel counterpart decreased it up to 30%. Both element change the abrasion effect of the coating.Keywords:AlCrSiN; AlTiSiN;Cathodic Arc Deposition; Tribological Behaviour; Abrasion Resistance; Nanoindentation
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来源期刊
Journal of Nano Research
Journal of Nano Research 工程技术-材料科学:综合
CiteScore
2.40
自引率
5.90%
发文量
55
审稿时长
4 months
期刊介绍: "Journal of Nano Research" (JNanoR) is a multidisciplinary journal, which publishes high quality scientific and engineering papers on all aspects of research in the area of nanoscience and nanotechnologies and wide practical application of achieved results. "Journal of Nano Research" is one of the largest periodicals in the field of nanoscience and nanotechnologies. All papers are peer-reviewed and edited. Authors retain the right to publish an extended and significantly updated version in another periodical.
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