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高熵合金的增材制造:综述

Additive Manufacturing of High-Entropy Alloys: A Review.

作者信息

Chen Shuying, Tong Yang, Liaw Peter K

机构信息

Department of Materials Science and Engineering, The University of Tennessee, Knoxville, TN 37909, USA.

出版信息

Entropy (Basel). 2018 Dec 6;20(12):937. doi: 10.3390/e20120937.

Abstract

Owing to the reduced defects, low cost, and high efficiency, the additive manufacturing (AM) technique has attracted increasingly attention and has been applied in high-entropy alloys (HEAs) in recent years. It was found that AM-processed HEAs possess an optimized microstructure and improved mechanical properties. However, no report has been proposed to review the application of the AM method in preparing bulk HEAs. Hence, it is necessary to introduce AM-processed HEAs in terms of applications, microstructures, mechanical properties, and challenges to provide readers with fundamental understanding. Specifically, we reviewed (1) the application of AM methods in the fabrication of HEAs and (2) the post-heat treatment effect on the microstructural evolution and mechanical properties. Compared with the casting counterparts, AM-HEAs were found to have a superior yield strength and ductility as a consequence of the fine microstructure formed during the rapid solidification in the fabrication process. The post-treatment, such as high isostatic pressing (HIP), can further enhance their properties by removing the existing fabrication defects and residual stress in the AM-HEAs. Furthermore, the mechanical properties can be tuned by either reducing the pre-heating temperature to hinder the phase partitioning or modifying the composition of the HEA to stabilize the solid-solution phase or ductile intermetallic phase in AM materials. Moreover, the processing parameters, fabrication orientation, and scanning method can be optimized to further improve the mechanical performance of the as-built-HEAs.

摘要

由于缺陷减少、成本低且效率高,增材制造(AM)技术近年来越来越受到关注,并已应用于高熵合金(HEAs)。研究发现,增材制造的高熵合金具有优化的微观结构和改善的力学性能。然而,尚未有报告对增材制造方法在制备块状高熵合金中的应用进行综述。因此,有必要从应用、微观结构、力学性能和挑战等方面介绍增材制造的高熵合金,以便为读者提供基本的了解。具体而言,我们综述了(1)增材制造方法在高熵合金制备中的应用,以及(2)后热处理对微观结构演变和力学性能的影响。与铸造的高熵合金相比,由于在制造过程中快速凝固形成了精细的微观结构,增材制造的高熵合金具有更高的屈服强度和延展性。后处理,如热等静压(HIP),可以通过消除增材制造的高熵合金中现有的制造缺陷和残余应力来进一步提高其性能。此外,可以通过降低预热温度以阻碍相分离,或改变高熵合金的成分以稳定增材制造材料中的固溶体相或韧性金属间相来调整力学性能。此外,可以优化加工参数、制造方向和扫描方法,以进一步提高增材制造的高熵合金的力学性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74c0/7512523/20c9474a6727/entropy-20-00937-g001.jpg

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