Effects of Gd on the microstructure and mechanical properties of GdxCoCrFeNiV0.4 high-entropy alloys

IF 6.2 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Materials Research and Technology-Jmr&t Pub Date : 2024-09-16 DOI:10.1016/j.jmrt.2024.09.128
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Abstract

This study investigated the microstructure and mechanical properties of GdxCoCrFeNiV0.4 alloys. Various techniques such as XRD, SEM, EBSD, and TEM were utilized, alongside hardness and compression tests at room temperature. The findings revealed that the high-entropy alloy without Gd element exhibited a single face-centered cubic (FCC) phase. Upon the introduction of Gd element, the phase composition shifted to FCC + hexagonal structure (HS) phases, and further addition of Gd resulted in the presence of FCC + HS + body-centered cubic (BCC) phases. Additionally, the inclusion of Gd element led to the precipitation of Gd-rich particles within the alloy. The Vickers hardness test results revealed a significant increase in alloy hardness as the Gd content rose, from 177.5 HV for Gd0 to 848.4 HV for Gd0.4. This suggests that the presence of the HS phase and BCC phase notably influences alloy hardness. Furthermore, compressive test outcomes demonstrated that the alloy's yield strength rose from 173.74 MPa for Gd0 to 1356.17 MPa for Gd0.3 with increasing Gd content. However, the excessive addition of Gd elements results in significant precipitation of V and Cr elements, leading to grain coarsening, adversely affecting its mechanical properties. The high strength of Gd-containing high-entropy alloys can be attributed to various strengthening mechanisms, such as solid solution strengthening, the presence of the HS phase, the precipitation of a small number of Gd-rich particles, and the grain refinement caused by the addition of Gd.

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本研究调查了 GdxCoCrFeNiV0.4 合金的微观结构和机械性能。研究采用了 XRD、SEM、EBSD 和 TEM 等多种技术,并在室温下进行了硬度和压缩试验。研究结果表明,不含钆元素的高熵合金表现出单一的面心立方(FCC)相。引入 Gd 元素后,相组成转变为 FCC + 六角结构 (HS) 相,进一步添加 Gd 后,出现了 FCC + HS + 体心立方 (BCC) 相。此外,Gd 元素的加入还导致合金中析出富含 Gd 的颗粒。维氏硬度测试结果表明,随着 Gd 含量的增加,合金硬度显著提高,从 Gd0 的 177.5 HV 提高到 Gd0.4 的 848.4 HV。这表明 HS 相和 BCC 相的存在对合金硬度有显著影响。此外,抗压试验结果表明,随着 Gd 含量的增加,合金的屈服强度从 Gd0 的 173.74 MPa 上升到 Gd0.3 的 1356.17 MPa。然而,过量添加 Gd 元素会导致 V 和 Cr 元素大量析出,从而导致晶粒粗化,对其机械性能产生不利影响。含 Gd 高熵合金的高强度可归因于多种强化机制,如固溶强化、HS 相的存在、少量富 Gd 颗粒的析出以及添加 Gd 引起的晶粒细化。
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来源期刊
Journal of Materials Research and Technology-Jmr&t
Journal of Materials Research and Technology-Jmr&t Materials Science-Metals and Alloys
CiteScore
8.80
自引率
9.40%
发文量
1877
审稿时长
35 days
期刊介绍: The Journal of Materials Research and Technology is a publication of ABM - Brazilian Metallurgical, Materials and Mining Association - and publishes four issues per year also with a free version online (www.jmrt.com.br). The journal provides an international medium for the publication of theoretical and experimental studies related to Metallurgy, Materials and Minerals research and technology. Appropriate submissions to the Journal of Materials Research and Technology should include scientific and/or engineering factors which affect processes and products in the Metallurgy, Materials and Mining areas.
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