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高熵合金的焊接——综述

Welding of High Entropy Alloys-A Review.

作者信息

Guo Jing, Tang Cong, Rothwell Glynn, Li Lisa, Wang Yun-Che, Yang Qingxiang, Ren Xuejun

机构信息

Department of Mechanical and Maritime Engineering, Faculty of Engineering and Technology, Liverpool John Moores University, Liverpool L3 5UG, UK.

Department of Civil Engineering, National Cheng Kung University, Tainan 701, Taiwan.

出版信息

Entropy (Basel). 2019 Apr 24;21(4):431. doi: 10.3390/e21040431.

Abstract

High-entropy alloy (HEA) offers great flexibility in materials design with 3-5 principal elements and a range of unique advantages such as good microstructure stability, mechanical strength over a broad range of temperatures and corrosion resistance, etc. Welding of high entropy alloy, as a key joining method, is an important emerging area with significant potential impact to future application-oriented research and technological developments in HEAs. The selection of feasible welding processes with optimized parameters is essential to enhance the applications of HEAs. However, the structure of the welded joints varies with material systems, welding methods and parameters. A systemic understanding of the structures and properties of the weldment is directly relevant to the application of HEAs as well as managing the effect of welding on situations such as corrosion that are known to be a service life limiting factor of welded structures in conditions such as marine environments. In this paper, key recent work on welding of HEAs is reviewed in detail focusing on the research of main HEA systems when applying different welding techniques. The experimental details including sample preparation, sample size (thickness) and welding conditions reflecting energy input are summarized and key issues are highlighted. The microstructures and properties of different welding zones, in particular the fusion zone (FZ) and the heat affected zones (HAZ), formed with different welding methods are compared and presented in details and the structure-property relationships are discussed. The work shows that the weldability of HEAs varies with the HEA composition groups and the welding method employed. Arc and laser welding of AlCoCrFeNi HEAs results in lower hardness in the FZ and HAZ and reduced overall strength. Friction stir welding results in higher hardness in the FZ and achieves comparable/higher strength of the welded joints in tensile tests. The welded HEAs are capable of maintaining a reasonable proportion of the ductility. The key structure changes including element distribution, the volume fraction of face centered cubic (FCC) and body centered cubic (BCC) phase as well as reported changes in the lattice constants are summarized and analyzed. Detailed mechanisms governing the mechanical properties including the grain size-property/hardness relationship in the form of Hall-Petch (H-P) effect for both bulk and welded structure of HEAs are compared. Finally, future challenges and main areas to research are highlighted.

摘要

高熵合金(HEA)在材料设计方面具有很大的灵活性,它包含3 - 5种主要元素,并具有一系列独特优势,如良好的微观结构稳定性、在较宽温度范围内的机械强度以及耐腐蚀性等。高熵合金的焊接作为一种关键的连接方法,是一个重要的新兴领域,对高熵合金未来面向应用的研究和技术发展具有重大潜在影响。选择具有优化参数的可行焊接工艺对于增强高熵合金的应用至关重要。然而,焊接接头的结构会因材料体系、焊接方法和参数而有所不同。对焊件的结构和性能进行系统的了解,直接关系到高熵合金的应用,以及在海洋环境等条件下管理焊接对诸如腐蚀等情况的影响,而腐蚀是已知的焊接结构使用寿命限制因素。本文详细综述了高熵合金焊接方面的近期关键工作,重点关注应用不同焊接技术时主要高熵合金体系的研究。总结了包括样品制备、样品尺寸(厚度)和反映能量输入的焊接条件等实验细节,并突出了关键问题。比较并详细介绍了采用不同焊接方法形成的不同焊接区域,特别是熔合区(FZ)和热影响区(HAZ)的微观结构和性能,并讨论了结构 - 性能关系。研究表明,高熵合金的可焊性随高熵合金成分组和所采用的焊接方法而变化。AlCoCrFeNi高熵合金的电弧焊和激光焊导致熔合区和热影响区硬度降低,整体强度下降。搅拌摩擦焊导致熔合区硬度更高,并在拉伸试验中使焊接接头达到可比/更高强度。焊接后的高熵合金能够保持合理比例的延展性。总结并分析了关键的结构变化,包括元素分布、面心立方(FCC)和体心立方(BCC)相的体积分数以及报道的晶格常数变化。比较了控制力学性能的详细机制,包括以霍尔 - 佩奇(H - P)效应形式的晶粒尺寸 - 性能/硬度关系,适用于高熵合金的块状和焊接结构。最后,强调了未来的挑战和主要研究领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c98/7514920/57e94a8f3b43/entropy-21-00431-g001.jpg

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