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Nanostructured metallic materials in extreme environments
X. Zhang
, K. Y. Yu
, Y. Chen
Chemical Engineering and Materials Science
Research output
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Chapter in Book/Report/Conference proceeding
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Conference contribution
Overview
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Keyphrases
Extreme Environments
100%
Metallic Materials
100%
Nanostructured Metals
100%
Advanced Materials
33%
Oil Industry
33%
High Pressure High Temperature
33%
Nuclear Reactor
33%
High Thermal Stability
33%
Radiation Tolerance
33%
Gas Industry
33%
Downhole Environments
33%
Corrosive Environment
16%
Increased Safety
16%
High Pressure
16%
Service Life
16%
Nanostructures
16%
High Temperature
16%
Withholding
16%
Transmission Electron Microscope
16%
Radiation Effects
16%
Advanced Properties
16%
Rapid Development
16%
Thermal Stability
16%
Reactor
16%
High-dose Radiation
16%
Thermal Radiation
16%
Radiation Resistance
16%
Layer Interface
16%
Radiation Dose
16%
Radiation Experiment
16%
Energy Sector
16%
Dislocation Loops
16%
Increased Reliability
16%
High Mechanical Strength
16%
Damage Tolerance
16%
In Situ Radiation
16%
Metallic multilayers
16%
Triphase
16%
Nanostructured multilayers
16%
Engineering
Fits and Tolerances
100%
Nuclear Reactor
100%
Petroleum Industry
100%
Illustrates
50%
Layer Interface
50%
Promising Candidate
50%
Corrosive Environment
50%
High Pressure and High Temperature
50%
Damage Tolerance
50%
Dislocation Loop
50%
Material Science
Thermal Stability
100%
Advanced Material
66%
Damage Tolerance
33%