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激光熔覆中熵FeNiCr-BC涂层的力学与结构表征

Mechanical and Structural Characterization of Laser-Cladded Medium-Entropy FeNiCr-BC Coatings.

作者信息

Okulov Artem, Korobov Yury, Stepchenkov Alexander, Makarov Aleksey, Iusupova Olga, Korkh Yulia, Kuznetsova Tatyana, Kharanzhevskiy Evgeny, Liu Kun

机构信息

M.N. Mikheev Institute of Metal Physics, Ural Branch of the Russian Academy of Sciences, 620108 Ekaterinburg, Russia.

Department of Physics, Ural Federal University, 620002 Ekaterinburg, Russia.

出版信息

Materials (Basel). 2023 Aug 4;16(15):5479. doi: 10.3390/ma16155479.

Abstract

Equiatomic medium-entropy alloy (MEA) FeNiCr-BC (0, 1, and 3 wt.% BC) coatings were deposited onto an AISI 1040 steel substrate using pulsed laser cladding. Based on an SEM microstructural analysis, it was found that the cross-sections of all the obtained specimens were characterized by an average coating thickness of 400 ± 20 μm, a sufficiently narrow (100 ± 20 μm) "coating-substrate" transition zone, and the presence of a small number of defects, including cracks and pores. An XRD analysis showed that the formed coatings consisted of a single face-centered cubic (FCC) γ-phase and the space group , regardless of the BC content. However, additional TEM analysis of the FeNiCr coating with 3 wt.% BC revealed a two-phase FCC structure consisting of grains (FCC-1 phase, ) up to 1 µm in size and banded interlayers (FCC-2 phase, ) between the grains. The grains were clean with a low density of dislocations. Raman spectroscopy confirmed the presence of BC carbides inside the FeNiCr (1 and 3 wt.% BC) coatings, as evidenced by detected peaks corresponding to amorphous carbon and peaks indicating the stretching of C-B-C chains. The mechanical characterization of the FeNiCr-BC coatings specified that additions of 1 and 3 wt.% BC resulted in a notable increase in microhardness of 16% and 38%, respectively, with a slight decrease in ductility of 4% and 10%, respectively, compared to the BC-free FeNiCr coating. Thus, the BC addition can be considered a promising method for strengthening laser-cladded MEA FeNiCr-BC coatings.

摘要

采用脉冲激光熔覆技术在AISI 1040钢基体上制备了等原子中熵合金(MEA)FeNiCr-BC(0、1和3 wt.% BC)涂层。基于扫描电子显微镜(SEM)微观结构分析,发现所有获得的试样横截面的平均涂层厚度为400±20μm,“涂层-基体”过渡区足够窄(100±20μm),并且存在少量缺陷,包括裂纹和气孔。X射线衍射(XRD)分析表明,无论BC含量如何,所形成的涂层均由单一的面心立方(FCC)γ相和空间群组成。然而,对含3 wt.% BC的FeNiCr涂层进行的额外透射电子显微镜(TEM)分析显示,其为两相FCC结构,由尺寸达1μm的晶粒(FCC-1相, )和晶粒间的带状中间层(FCC-2相, )组成。晶粒内部洁净,位错密度低。拉曼光谱证实了FeNiCr(1和3 wt.% BC)涂层内部存在BC碳化物,检测到的对应于无定形碳的峰以及表明C-B-C链拉伸的峰证明了这一点。FeNiCr-BC涂层的力学性能表征表明,与不含BC的FeNiCr涂层相比,添加1 wt.%和3 wt.% BC分别使显微硬度显著提高了16%和38%,而延展性分别略有下降4%和10%。因此,添加BC可被视为强化激光熔覆MEA FeNiCr-BC涂层的一种有前景的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3a0/10419838/80becdb434cf/materials-16-05479-g001.jpg

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