Structural and Mechanical Properties of the ZrC/Ni-Nanodiamond Coating Synthesized by the PVD and Electroplating Processes for the Cutting Knifes

被引:15
作者
Chayeuski, V. [1 ]
Zhylinski, V. [1 ]
Cernashejus, O. [2 ]
Visniakov, N. [2 ]
Mikalauskas, G. [2 ]
机构
[1] Belarusian State Technol Univ, 13a Sverdlov Str, Minsk 220006, BELARUS
[2] Vilnius Gediminas Tech Univ, 28 Basanaviciaus Str, LT-03224 Vilnius, Lithuania
关键词
ceramics; coatings; inorganic; nanomaterials; structural; TUNGSTEN CARBIDE; BEHAVIOR; DIAMONDS; WEAR;
D O I
10.1007/s11665-018-3362-2
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this work, combined gradient ZrC/Ni-nanodiamond ultradispersed diamonds (UDD) coatings were synthesized on the surface of knife blades made of hard alloy WC-2wt.% Co by electroplating and cathode arc evaporation PVD techniques to increase the durability period of a wood-cutting milling tool. The microstructure, phase and elemental composition, microhardness, and adhesion strength of the coatings were investigated. Ni-UDD layer is not mixed with the ZrC coating and hard alloy substrate. Cobalt is present in Ni-UDD layer after deposition of ZrC. The ZrC/Ni-nanodiamond coating consists of separate phases of zirconium carbide (ZrC), alpha-Ni, and Ni-UDD. The maximum value of microhardness of the Ni-nanodiamond coating is 5.9GPa. The microhardness value of the ZrC/Ni-nanodiamond coatings is 25 +/- 6 GPa, which corresponds to the microhardness of the hard alloy substrate and ZrC coating. The obtained high values of the critical loads on the scratch track of the ZrC/Ni-nanodiamond coating in 24 N prove a sufficiently high value of the adhesion strength of the bottom Ni-UDD layer with WC-Co substrate. Pilot testing of ZrC/Ni-nanodiamond-coated cutting tools proved their increasing durability period to be 1.5-1.6 times higher than that of bare tools, when milling laminated chipboard.
引用
收藏
页码:1278 / 1285
页数:8
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