Beijing
China
University of Science and Technology Beijing - Beijing Advanced Innovation Center for Materials Genome Engineering
γ' phase, GH4198 Superalloy, Deep learning, Super-Resolution, Image Recognition, scanning electron microscopy
70/30 Cu-Ni alloys, Banded segregation, Polarization Resistance, Ni2+ doping
70/30 Cu-Ni alloys, Banded segregation, Polarization resistance, Ni²⁺ doping
copper-nickel alloys, grain boundary engineering, Corrosion resistance, Electrochemistry
corrosion behavior, 70/30 CuNi alloys, Roughness, Elemental segregation, Stern model, Cu2(OH)3Cl
Corrosion behavior, 70/30 CuNi alloys, Roughness, Elemental segregation, Stern model, Cu2(OH)3Cl.
Flow-Induced Interfacial Acidification Affects the Surface Film Evolution and the Erosion Resistance of 90/10 Cu-Ni Alloy
90/10 copper-nickel alloy. Erosion-corrosion. Mass transfer. Pourbaix diagram. The film‑forming pathway. Interfacial microenvironment.