Research Status and Application of the High-Entropy and Traditional Alloys Fabricated via the Laser Cladding

The objective of this paper is presenting a review of high-entropy alloys and traditional alloys fabricated by laser cladding. In this paper, recent developments of different material system are summarized, and the developments in laser cladding for functional coatings with high wear resistance, goo...

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Main Author: Y. Geng, S. V. Konovalov, X. Chen
Format: Article
Language:English
Published: G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine 2020-03-01
Series:Успехи физики металлов
Subjects:
Online Access:https://doi.org/10.15407/ufm.21.01.026
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spelling doaj-6f8e77a0e180442392a45f7a21f25ec22020-11-25T01:59:06ZengG. V. Kurdyumov Institute for Metal Physics of the N.A.S. of UkraineУспехи физики металлов 1608-10212617-07952020-03-01211264510.15407/ufm.21.01.026Research Status and Application of the High-Entropy and Traditional Alloys Fabricated via the Laser CladdingY. Geng, S. V. Konovalov, X. ChenThe objective of this paper is presenting a review of high-entropy alloys and traditional alloys fabricated by laser cladding. In this paper, recent developments of different material system are summarized, and the developments in laser cladding for functional coatings with high wear resistance, good corrosion and oxidation resistances, and better medical biocompatibility are reviewed. By summarizing the analysis of microstructure, mechanical properties, corrosion resistance of high-entropy alloys and traditional alloys’ coating fabricated by laser cladding, it stated that laser cladding treatment can improve corrosion resistance, homogenize grain size, and increase microhardness and other properties. Laser cladding is considered as the potential method to ameliorate mechanical properties, improve microstructure and repair broken parts. Therefore, laser cladding has the successful applications in automobile and aerospace productions, and shipbuilding due to those advantages.https://doi.org/10.15407/ufm.21.01.026high-entropy alloystraditional alloyslaser claddingmicrostructuremechanical propertiesapplication
collection DOAJ
language English
format Article
sources DOAJ
author Y. Geng, S. V. Konovalov, X. Chen
spellingShingle Y. Geng, S. V. Konovalov, X. Chen
Research Status and Application of the High-Entropy and Traditional Alloys Fabricated via the Laser Cladding
Успехи физики металлов
high-entropy alloys
traditional alloys
laser cladding
microstructure
mechanical properties
application
author_facet Y. Geng, S. V. Konovalov, X. Chen
author_sort Y. Geng, S. V. Konovalov, X. Chen
title Research Status and Application of the High-Entropy and Traditional Alloys Fabricated via the Laser Cladding
title_short Research Status and Application of the High-Entropy and Traditional Alloys Fabricated via the Laser Cladding
title_full Research Status and Application of the High-Entropy and Traditional Alloys Fabricated via the Laser Cladding
title_fullStr Research Status and Application of the High-Entropy and Traditional Alloys Fabricated via the Laser Cladding
title_full_unstemmed Research Status and Application of the High-Entropy and Traditional Alloys Fabricated via the Laser Cladding
title_sort research status and application of the high-entropy and traditional alloys fabricated via the laser cladding
publisher G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine
series Успехи физики металлов
issn 1608-1021
2617-0795
publishDate 2020-03-01
description The objective of this paper is presenting a review of high-entropy alloys and traditional alloys fabricated by laser cladding. In this paper, recent developments of different material system are summarized, and the developments in laser cladding for functional coatings with high wear resistance, good corrosion and oxidation resistances, and better medical biocompatibility are reviewed. By summarizing the analysis of microstructure, mechanical properties, corrosion resistance of high-entropy alloys and traditional alloys’ coating fabricated by laser cladding, it stated that laser cladding treatment can improve corrosion resistance, homogenize grain size, and increase microhardness and other properties. Laser cladding is considered as the potential method to ameliorate mechanical properties, improve microstructure and repair broken parts. Therefore, laser cladding has the successful applications in automobile and aerospace productions, and shipbuilding due to those advantages.
topic high-entropy alloys
traditional alloys
laser cladding
microstructure
mechanical properties
application
url https://doi.org/10.15407/ufm.21.01.026
work_keys_str_mv AT ygengsvkonovalovxchen researchstatusandapplicationofthehighentropyandtraditionalalloysfabricatedviathelasercladding
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