Abstract
A dense and continuous Cr coating with a thickness of approximately 140 μm was successfully deposited on the surface of a thin-walled Zr alloy cladding tube using high-speed laser cladding technology in this study. The microstructure, phase composition, microhardness, and resistance to high-temperature oxidation of the coating were investigated. The experimental results showed that the Cr coating exhibited high-strength metallurgical bond with the Zr alloy substrate, forming a narrow heat-affected zone with a thickness of 25 μm, and the coating consists of ZrCr2 and α-Zr phase. The average microhardness of the coating was 589 HV0.05, about 2.3 times that of the substrate. After oxidation at 1200 °C for 1200 s in air, with the formation of complete and dense protective Cr2O3 scale, the Cr-coated Zr alloy cladding tube showed better high-temperature oxidation resistance than uncoated tube.
| Original language | English |
|---|---|
| Pages (from-to) | 246-259 |
| Number of pages | 14 |
| Journal | Journal of Thermal Spray Technology |
| Volume | 33 |
| Issue number | 1 |
| DOIs | |
| State | Published - Feb 2024 |
Keywords
- Cr coating
- Zr alloy cladding tube
- high-speed laser cladding
- microstructure
- oxidation behavior
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