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[1]高瑞澤,王亞強,張金鈺,等.金屬/高熵合金納米多層膜的制備、微觀結構及力學性能研究進展[J].中國材料進展,2024,43(01):012-23.[doi:10.7502/j.issn.1674-3962.202309017]
 GAO Ruize,WANG Yaqiang,ZHANG Jinyu,et al.Research Progress on the Preparation, Microstructure and Mechanical Properties of Metal/High-Entropy Alloy Nanostructured Multilayers[J].MATERIALS CHINA,2024,43(01):012-23.[doi:10.7502/j.issn.1674-3962.202309017]
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金屬/高熵合金納米多層膜的制備、微觀結構及力學性能研究進展()
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中國材料進展[ISSN:1674-3962/CN:61-1473/TG]

卷:
43
期數:
2024年第01期
頁碼:
012-23
欄目:
出版日期:
2024-01-25

文章信息/Info

Title:
Research Progress on the Preparation, Microstructure and Mechanical Properties of Metal/High-Entropy Alloy Nanostructured Multilayers
文章編號:
1674-3962(2024)01-0012-12
作者:
高瑞澤王亞強張金鈺吳凱劉剛孫軍
西安交通大學材料科學與工程學院 金屬材料強度國家重點實驗室,陜西 西安 710049
Author(s):
GAO Ruize WANG Yaqiang ZHANG Jinyu WU Kai LIU Gang SUN Jun
State Key Laboratory for Mechanical Behavior of Materials, School of Materials Science and Engineering,Xi’an Jiaotong University, Xi’an 710049, China
關鍵詞:
金屬納米多層膜高熵合金微觀組織結構力學性能硬度摩擦性能
Keywords:
metallic nanostructured multilayers high entropy alloys microstructuremechanical properties hardness tribological property
分類號:
TB383;TG174.44
DOI:
10.7502/j.issn.1674-3962.202309017
文獻標志碼:
A
摘要:
通過表面防護涂層技術制備綜合力學性能與摩擦性能優異的涂層材料,對降低構件因碰撞摩擦磨損所引起的損傷失效問題十分重要。相較于單層膜結構防護涂層,金屬納米多層膜涂層材料由于其微觀組織結構的獨特性與可控性, 表現出優異的服役特性, 且其綜合性能可通過結合新組元或界面調控得到進一步提高, 因此該類材料受到了廣泛關注。新穎的成分設計理念使得高熵合金具有獨特的四大效應,即高熵效應、晶格畸變效應、遲滯擴散效應和性能雞尾酒效應,進而呈現出良好的綜合性能。因此,在傳統的雙金屬納米多層膜結構材料中引入高熵合金組元,形成金屬/高熵合金納米多層膜,有望突破傳統金屬納米多層膜的性能局限,極大地提高多層膜結構材料的力學性能。從功能基元序構的視角,圍繞近幾年金屬/高熵合金納米多層膜的相關研究,首先介紹了其制備方法和工藝原理,針對功能基元微觀結構特征,從晶粒形貌、界面結構、組元成分等方面進行了闡釋,在此基礎上論述了其力學行為以及相應的內在機制,并提出了調控金屬/高熵合金納米多層膜力學性能的優化策略,最后對金屬/高熵合金納米多層膜的未來研究方向和面臨的挑戰進行展望。
Abstract:
The preparation of coating materials with excellent mechanical and friction properties through surface protective coating technology is important to reduce the damage failure of components caused by collision and friction wear.Compared with single-layer protective coatings, metallic nano-multilayer coatings have received extensive attention due to their unique and controllable microstructure, excellent service properties, and their comprehensive performance can be further improved by combining new components or interface modulation. High entropy alloys also have excellent properties due to their novel composition design and four major effects, including high mixture entropy, severe lattice distortion, sluggish diffusion, and cocktail effects.Therefore, the introduction of high entropy alloys into metallic nanostructured multilayers to form metal/high entropy alloy nanostructured multilayers may break through the performance shortcomings of traditional metallic nanostructured multilayers and greatly improve the mechanical properties. In this paper, the related researches on metal/high entropy alloy nanostructured multilayers in recent years are reviewed, from the perspective of functional units and ordered structure. This review firstly introduces the preparation methods and process principles. Secondly, this review elucidates the microstructure of functional units in terms of grain morphology, interfacial structure and component composition, and discusses the mechanical behavior and intrinsic mechanism, simultaneously proposing an optimization strategy for tuning the mechanical properties of metal/high entropy alloy nanostructured multilayers. Finally, the future research directions and challenges are prospected.

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備注/Memo

備注/Memo:
收稿日期:2023-09-19修回日期:2023-11-22基金項目:國家自然科學基金項目(92163201,U2067219,52001247);陜西省青年創新團隊科研計劃項目(22JP042)第一作者:高瑞澤,男,2000年生,碩士研究生通訊作者:張金鈺,男,1982年生,教授,博士生導師,Email:jinyuzhang1002@mail.xjtu.edu.cn
更新日期/Last Update: 2024-01-02
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