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Novel Chromium–Silicon Slurry Coatings for Hot Corrosion Environments
M. Kerbstadt
*
,
K. Ma
, E. M. H. White
,
A. J. Knowles
, M. C. Galetz
*
Corresponding author for this work
Metallurgy and Materials
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peer-review
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Dive into the research topics of 'Novel Chromium–Silicon Slurry Coatings for Hot Corrosion Environments'. Together they form a unique fingerprint.
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Keyphrases
Hot Corrosion
100%
Slurry Coating
100%
Corrosion Environment
100%
Pack Cementation
60%
Rene 80
60%
Ni-based Superalloy
40%
Hot Corrosion Resistance
40%
Surface Material
20%
Exposure Time
20%
Coating Process
20%
Silica
20%
Corrosion Resistance
20%
Sodium Sulfate
20%
Formed Elements
20%
Aluminum Oxide
20%
Agglomeration
20%
Gas Turbine
20%
Internal Oxidation
20%
High-temperature Mechanical Properties
20%
Oxide Scale
20%
Diffusion Coating
20%
Corrosion Type
20%
Breakaway Oxidation
20%
Rapid Dissolution
20%
High Ambient Temperature
20%
Diffusion Barrier
20%
Sulfidation
20%
Subsurface Zone
20%
Long-term Protection
20%
Cr2O3 Scale
20%
Protective Oxide Scale
20%
Long Service Life
20%
Cr Depletion
20%
Cr-based Coatings
20%
Engineering
Corrosion Resistance
100%
Oxide Scale
66%
Subsurface
33%
Silicon Dioxide
33%
Gas Turbine
33%
Exposure Time
33%
Material Surface
33%
Service Life
33%
Forming Element
33%
Sulfidation
33%
Diffusion Barrier
33%
Cr Depletion
33%
Material Science
Hot Corrosion
100%
Corrosion Resistance
50%
Surface (Surface Science)
33%
Oxide Compound
33%
Nickel-Based Superalloys
33%
Coating Process
16%
Aluminum Oxide
16%
Diffusion Coating
16%