Abstract
Microstructure, hardness and toughness as well as the thermal stability of W/B 4 C multilayer coating synthesized by ion beam sputtering were investigated. The results show well-defined layered structure and uniform monolayers can be found in the as-deposited multilayer coatings with various period thickness at fixed period ratio (W:B 4 C = 1:1.5). The crystallinity of W layer and the roughness of W/B 4 C interfaces are changed as the period thickness increasing. It can be concluded that the nano multilayer coatings have superior strengthening and toughening effects. The hardness of as-deposited (W 5.2nm /B 4 C 7.6nm ) 20 , (W 10.5nm /B 4 C 15.8nm ) 10 and (W 14.5nm /B 4 C 21.5nm ) 7 coatings is greatly enhanced and higher than that of pure B 4 C coating, and the toughness of W/B 4 C multilayer coating is significantly higher than that of pure B 4 C coating. Subsequently, the investigations about thermal stability of (W 10.5nm /B 4 C 15.8nm ) 10 multilayer coatings indicate that the layered structural is stable when the heat treatment temperature is lower than 500 °C. With increasing of heat treatment temperature, the oxidation of W layer and the formation of WO 3 compounds were found. The nano layered structure was dramatically destroyed accompanying severe oxidation and slight carbonization when the temperature increase up to 600 °C. The hardness of (W 10.5nm /B 4 C 15.8nm ) 10 multilayer coating increases up to 37 GPa when the coating is heat treated below 500 °C, while it declined sharply when the coating is heat treated at 600 °C due to the a degradation of layered structure. In addition, the toughness of the multilayer coatings monotonously decreases with the increase of heat treatment temperature.
Original language | English |
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Pages (from-to) | 10-20 |
Number of pages | 11 |
Journal | Applied Surface Science |
Volume | 464 |
DOIs | |
State | Published - 15 Jan 2019 |
Keywords
- Hardness
- Ion beam sputtering
- Thermal stability
- Toughness
- W/B C multilayer coating