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    Synthesis of High Entropy Alloy for Surface Modification by Friction Stir Process: Recent Advances and Future Directions

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    https://www.riss.kr/link?id=A109250782

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    High Entropy Alloys (HEAs) certainly stand out lately because of their uncommon mechanical properties and possible applicationsin different fields. Friction Stir Processing (FSP), a solid-state processing technique, has been displayed to upgradethe microstructure and mechanical properties of HEAs. This review article sums up the present status of-the-specialty ofFSP applied to HEAs. The microstructural development and the processing parameters of FSP-treated HEAs are discussedand reviewed. The impacts of FSP on the grain structure, texture, and phase distribution of HEAs are featured. Moreover,the impact of FSP on the mechanical properties, like ultimate tensile strength, yield strength, microhardness, tribologicalbehaviour, and corrosion properties of HEAs and HEA-reinforced metals is explored. Finally, possible applications andthe difficulties and future headings of FSP applied to HEAs are examined. The review aims to give an outline of the recentprogressions in the FSP of HEAs and inspire further research in this field.
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    High Entropy Alloys (HEAs) certainly stand out lately because of their uncommon mechanical properties and possible applicationsin different fields. Friction Stir Processing (FSP), a solid-state processing technique, has been displayed to upgradethe mi...

    High Entropy Alloys (HEAs) certainly stand out lately because of their uncommon mechanical properties and possible applicationsin different fields. Friction Stir Processing (FSP), a solid-state processing technique, has been displayed to upgradethe microstructure and mechanical properties of HEAs. This review article sums up the present status of-the-specialty ofFSP applied to HEAs. The microstructural development and the processing parameters of FSP-treated HEAs are discussedand reviewed. The impacts of FSP on the grain structure, texture, and phase distribution of HEAs are featured. Moreover,the impact of FSP on the mechanical properties, like ultimate tensile strength, yield strength, microhardness, tribologicalbehaviour, and corrosion properties of HEAs and HEA-reinforced metals is explored. Finally, possible applications andthe difficulties and future headings of FSP applied to HEAs are examined. The review aims to give an outline of the recentprogressions in the FSP of HEAs and inspire further research in this field.

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