STRUCTURAL-PHASE STATES AND MICROMECHANICAL PROPERTIES OF NANOSTRUCTURED TiAlCuN COATINGS

被引:0
|
作者
Konstantinov, Stanislav, V [1 ]
Komarov, Academician Fadei F. [2 ]
V. Chizhov, Igor V. [3 ]
Zaikov, Valery A. [4 ]
机构
[1] Belarusian State Univ, AN Sevchenko Inst Appl Phys Problems, 7 Kurchatov Str, Minsk 220045, BELARUS
[2] AN Sevchenko Inst Appl Phys Problems, Lab, 7 Kurchatov Str, Minsk 220045, BELARUS
[3] Belarusian State Univ, 4 Nezavisimosti Ave, Minsk 220030, BELARUS
[4] Belarusian State Univ, 1 Kurchatov Str, Minsk 220045, BELARUS
来源
关键词
reactive magnetron sputtering; nanostructured TiAlCuN coatings; structural-phase state; hardness; Young's modulus; impact strength index H; E*; resistance to plastic deformation index H 3; E*2; STABILITY; TIN;
D O I
10.29235/1561-8323-2023-67-2-101-110
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
TiAlCuN coatings were deposited by reactive magnetron sputtering on substrates of single-crystal silicon, and Titanium Grade2 wafers. To control and manage the coating deposition process by reactive magnetron sputtering, a previous-ly developed modular gas flow control complex (MGFCC) was used. The elemental composition was studied by energy -dis-persive X-ray spectroscopy (EDX). The structural-phase state of coatings was examined by X-ray diffraction (XRD) and scanning electron microscopy (SEM). Mechanical properties, such as hardness and Young's modulus, were investigated by the nanoindentation using a CSM Instruments Nanohardness Tester NHT2 (Switzerland). The influence of deposition param-eters such as: Ti and Al content, reactivity degree alpha, and nitride concentration on structure and mechanical properties was considered. It was found that a decrease in the reactivity degree alpha from 0.605 to 0.474 leads to a 23 % increase in the deposi-tion rate of TiAlCuN coating. It was detected that adding Cu to the coating content decreases the mean sizes of crystallites and growth columns in comparison with the TiAlN analogues due to its segregation along crystalline boundaries and thus advances better mechanical characteristics. The hardness of TiAlCuN coatings varies in the range of H = 29.3-35.4 GPa, Young's modulus E = 235.9-267.6 GPa. The impact strength index as the H / E* ratio and the plastic deformation resistance index H3 / E*2 were calculated. The formed nitride coatings are suitable for use in space technologies.
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页码:101 / 110
页数:10
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