Qin Gang, Chen Ruirun, Liaw Peter K, Gao Yanfei, Wang Liang, Su Yanqing, Ding Hongsheng, Guo Jingjie, Li Xiaoqing
National Key Laboratory for Precision Hot Processing of Metals, Harbin Institute of Technology, 150001, China.
Department of Materials Science and Engineering, The University of Tennessee, Knoxville, TN 37996, USA.
Nanoscale. 2020 Feb 14;12(6):3965-3976. doi: 10.1039/c9nr08338c. Epub 2020 Feb 4.
High-entropy alloys (HEAs) with good ductility and high strength are usually prepared by a combination of forging and heat-treatment processes. In comparison, the as-cast HEAs typically do not reach strengths similar to those of HEAs produced by the forging and heat-treatment processes. Here we report a novel equiatomic-ratio CoCrCuMnNi HEA prepared by vacuum arc melting. We observe that this HEA has excellent mechanical properties, i.e., a yield strength of 458 MPa, and an ultimate tensile strength of 742 MPa with an elongation of 40%. Many nanometer precipitates (5-50 nm in size) and domains (5-10 nm in size) are found in the inter-dendrite and dendrite zones of the produced HEA, which is the key factor for its excellent mechanical properties. The enthalpy of mixing between Cu and Mn, Cr, Co, or Ni is higher than those of mixing between any two of Cr, Co, Ni and Mn, which leads to the separation of Cu from the CoCrCuMnNi HEA. Furthermore, we reveal the nanoscale-precipitate-phase-forming mechanism in the proposed HEA.
具有良好延展性和高强度的高熵合金(HEAs)通常通过锻造和热处理工艺相结合来制备。相比之下,铸态高熵合金的强度通常无法达到通过锻造和热处理工艺生产的高熵合金的强度。在此,我们报告一种通过真空电弧熔炼制备的新型等原子比CoCrCuMnNi高熵合金。我们观察到这种高熵合金具有优异的力学性能,即屈服强度为458MPa,极限抗拉强度为742MPa,伸长率为40%。在所制备的高熵合金的枝晶间和枝晶区域中发现了许多纳米级沉淀物(尺寸为5 - 50nm)和畴(尺寸为5 - 10nm),这是其具有优异力学性能的关键因素。Cu与Mn、Cr、Co或Ni之间的混合焓高于Cr、Co、Ni和Mn中任意两者之间的混合焓,这导致Cu从CoCrCuMnNi高熵合金中分离出来。此外,我们揭示了所提出的高熵合金中纳米级沉淀相形成的机制。