Javascript must be enabled to continue!
Progress on New Preparation Methods, Microstructures, and Protective Properties of High-Entropy Alloy Coatings
View through CrossRef
Currently, the preparations of high-entropy alloy (HEA) coatings have developed into new methods such as thermal spraying, electrospark deposition technology, and magnetron sputtering. The microstructures and protective properties of HEA coatings prepared by different methods are bound to be different. Moreover, because HEAs have a wide range of composition systems, the difference in composition will inevitably lead to a change in process parameters and post-treatment methods, and then affect the microstructures and protective properties. This paper introduces the working mechanism of thermal spraying, electrospark deposition technology, and magnetron sputtering, compares the advantages and disadvantages of each method, and focuses on the influences of the compositions, process parameters, and post-treatment process on the microstructures and properties of the coating. Furthermore, this paper outlines the correlation between preparation methods, process parameters, microstructures, and properties, which will provide a reference for further development of the application of high-entropy alloy coatings. On this basis, the future development direction of HEA coatings is prospected.
Title: Progress on New Preparation Methods, Microstructures, and Protective Properties of High-Entropy Alloy Coatings
Description:
Currently, the preparations of high-entropy alloy (HEA) coatings have developed into new methods such as thermal spraying, electrospark deposition technology, and magnetron sputtering.
The microstructures and protective properties of HEA coatings prepared by different methods are bound to be different.
Moreover, because HEAs have a wide range of composition systems, the difference in composition will inevitably lead to a change in process parameters and post-treatment methods, and then affect the microstructures and protective properties.
This paper introduces the working mechanism of thermal spraying, electrospark deposition technology, and magnetron sputtering, compares the advantages and disadvantages of each method, and focuses on the influences of the compositions, process parameters, and post-treatment process on the microstructures and properties of the coating.
Furthermore, this paper outlines the correlation between preparation methods, process parameters, microstructures, and properties, which will provide a reference for further development of the application of high-entropy alloy coatings.
On this basis, the future development direction of HEA coatings is prospected.
Related Results
PROTECTIVE ABILITY OF TIN-NICKEL COATINGS
PROTECTIVE ABILITY OF TIN-NICKEL COATINGS
The calculation of the corrosion current of the steel – plating allowed us to estimate the protective properties and the porosity of the Tin-Nickel coatings. Measured in 3% NaCl so...
Improved organic coating delamination resistance using physical vapour deposited Zn-Mg layers on strip steel
Improved organic coating delamination resistance using physical vapour deposited Zn-Mg layers on strip steel
Physical vapour deposition (PVD) of zinc alloy coatings was investigated as a potential substitute process for commercially available hot dip galvanising (HDG) of strip steel. Ther...
Explaining the entropy concept and entropy components
Explaining the entropy concept and entropy components
Total entropy of a
thermodynamic system consists of two components: thermal entropy due to energy,
and residual entropy due to molecular orientation. In this article, a three-ste...
Microstructures and Properties of FeCoNiCr High-Entropy Alloy Coatings Prepared by Electrodeposition
Microstructures and Properties of FeCoNiCr High-Entropy Alloy Coatings Prepared by Electrodeposition
High-entropy alloys (HEAs) have attracted increasing attention owing to their multicomponent characteristics with notable high-entropy effects. However, obtaining HEAs with improve...
Strain-Induced Cracking Behavior of Coating/Substrate Systems and Strain Tolerant Design for Thick Coatings
Strain-Induced Cracking Behavior of Coating/Substrate Systems and Strain Tolerant Design for Thick Coatings
The life span for a coating attached to its substrate is basic support for their desired protective function. Therefore, it is necessary to find out the causes responsible for the ...
Wear-resistant Coatings on Aluminum Alloys
Wear-resistant Coatings on Aluminum Alloys
Aluminum alloys are widely used in industry. Recently, they are used as a replacement for steel for the manufacture of pulleys, gears, columns of hydraulic rotary transmissions of ...
A Generalized Measure of Cumulative Residual Entropy
A Generalized Measure of Cumulative Residual Entropy
In this work, we introduce a generalized measure of cumulative residual entropy and study its properties. We show that several existing measures of entropy, such as cumulative resi...
Strengthening mechanism and wear behavior of AlCrFeNiNb<sub><i>x</i></sub> high-entropy alloys from the perspective of phase modulation
Strengthening mechanism and wear behavior of AlCrFeNiNb<sub><i>x</i></sub> high-entropy alloys from the perspective of phase modulation
AlCoCrFeNi high-entropy alloys have consistently attracted attention due to their outstanding strength-to-ductility ratio. However, the substantial content of expensive cobalt in t...

