Corrosion and fretting wear of composite coatings on zirconium alloy #sciencefather #researchawards #CorrosionResistance #FrettingWear #CompositeCoatings #ZirconiumAlloy #MaterialScience #SurfaceEngineering #WearResistance #CrBasedCoatings #CoatingTechnology #ElectrochemicalTesting #Tribology #NuclearMaterials #IndustrialApplications #AdvancedMaterials #OxidationProtection #MechanicalProperties #MaterialsResearch #SurfaceModification #DurabilityEnhancement #EngineeringScience.


This study examines the corrosion and fretting wear behavior of Cr-based composite coatings on zirconium alloy, aiming to enhance its performance in demanding environments such as nuclear and industrial applications. The coatings provide superior protection against oxidation, wear, and material degradation, significantly improving the alloy’s durability. Through comprehensive experimental analysis, including electrochemical testing and wear evaluation, the study highlights the enhanced mechanical properties and surface stability of coated zirconium alloys. The findings demonstrate that Cr-based composite coatings effectively mitigate corrosion and fretting wear, extending the material’s service life and ensuring reliability in high-stress operating conditions.

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