Multilayered ZrN/CrN coatings with enhanced thermal and mechanical properties

被引:71
作者
Maksakova, O., V [1 ,2 ]
Simoes, S. [1 ]
Pogrebnjak, A. D. [2 ]
Bondar, O., V [2 ]
Kravchenko, Ya O. [2 ]
Koltunowicz, T. N. [3 ]
Shaimardanov, Zh K. [4 ]
机构
[1] Univ Porto, Dept Met & Mat Engn, CEMMPRE, R Dr Roberto Frias, P-4200465 Porto, Portugal
[2] Sumy State Univ, Dept Nanoelect, 2 Rymskogo Korsakova Str, UA-40007 Sumy, Ukraine
[3] Lublin Univ Technol 20, Dept Elect Equipment & High Voltage Technol, PL-20618 Lublin, Poland
[4] D Serikbayev East Kazakhstan State Tech Univ, 69 Protozanova Str, Ust Kamenogorsk 070004, Kazakhstan
关键词
Multilayers; Physical vapor deposition; Microstructure; Phase composition; Heat capacity; Hardnes; THERMOPHYSICAL PROPERTIES; NITRIDE; TIALN; TIN;
D O I
10.1016/j.jallcom.2018.10.342
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Multilayered ZrN/CrN coatings were produced by the cathodic arc physical vapor deposition (CA-PVD). Morphology, element distribution, structural and thermal properties were investigated. Microhardness and nanoindentation tests were conducted to study the mechanical properties of the coatings. The experimental results of scanning electron microscopy (SEM) revealed the cellular microrelief of the surface and well-defined multilayered architecture of the coatings. Energy dispersive spectroscopy (EDS) provided the chemical characterization of the coatings and revealed the formation of stoichiometric composition in coatings. X-ray diffraction (XRD) studies showed that (200) and (111) plane reflections of ZrN and Cr2N phases, correspondingly, were with maximum intensity. Transmission electron microscopy (TEM) analysis revealed that the films comprise of nanometric equiaxed grains with average sizes from 12.8 to 15.1 nm for ZrN layers and from 14.5 to 28.1 nm for CrN layers. The high-temperature heat treatment caused exothermic and endothermic reactions, which were mainly attributed to the improvements or disordering of the coatings' structure, consequently. The highest values of microhardness (4966HV0.025) and nanohardness (24.58 GPa) were obtained for the sample with a bilayer thickness of 732 nm, the average crystallite size of 13.3 nm and nitrogen content of 49 at%. Experimental results indicated that deposited composites can be effectively used in the production of industrial tools, implements for cutting etc. (C) 2018 Elsevier B.V. All rights reserved.
引用
收藏
页码:679 / 690
页数:12
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