A high-entropy alloy nano-coating high-temperature oxidation-resistant modification preparation process
By using a high-entropy alloy nano-coating modification process, the problems of short lifespan and poor oxidation resistance of traditional chromium-based coatings have been solved, and the structural stability and durability under high-temperature environments have been improved, thus extending the service life of nuclear reactor materials.
CN122303990APending Publication Date: 2026-06-30YANTAI UNIV
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- YANTAI UNIV
- Filing Date
- 2026-05-12
- Publication Date
- 2026-06-30
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Figure CN122303990A_ABST
Abstract
This invention provides a high-entropy alloy nano-coating high-temperature oxidation-resistant modification preparation process, belonging to the field of coating modification technology. The high-entropy alloy nano-coating high-temperature oxidation-resistant modification preparation process specifically includes the following steps: S1. Target material selection and preparation; S2. Alloy substrate treatment; S3. Low-temperature nanocrystalline coating deposition; S4. Coating densification treatment; S5. Low-temperature recovery annealing; S6. Pre-oxidation treatment. Through the synergistic process of low-temperature preparation of the alloy nano-coating, densification annealing, and pre-oxidation, the high-temperature strength and phase stability of the coating are improved by utilizing the lattice distortion effect. A thermodynamically stable protective oxide film of aluminum oxide and chromium oxide is generated in situ on the surface, solving the problems of traditional chromium-based coatings such as few main components, poor oxidation resistance, and short lifespan. This significantly improves the service reliability and safety of nuclear reactor structural materials under high-temperature irradiation environments.
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Citation Information
Patent Citations
Nuclear reactor coating material
CN117568769A