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粉末冶金法制备的AlCrFeNiTi高熵合金的微观结构表征

Microstructural Characterization of AlCrFeNiTi High Entropy Alloy Produced by Powder Metallurgy Route.

作者信息

Geambazu Laura Elena, Tălpeanu Dorinel, Bololoi Robert Viorel, Manea Ciprian Alexandru, Bololoi Alina Elena, Miculescu Florin, Pătroi Delia, Cojocaru Vasile Dănuţ

机构信息

Material Science and Engineering Faculty, National University of Science and Technology Politehnica Bucharest, Splaiul Independentei 313, 060042 Bucharest, Romania.

National Institute for R&D in Electrical Engineering ICPE-CA Bucharest, Splaiul Unirii 313, 030138 Bucharest, Romania.

出版信息

Materials (Basel). 2023 Nov 4;16(21):7038. doi: 10.3390/ma16217038.

Abstract

Alloys with superior properties represent the main topic of recent studies due to their effectiveness in reducing the cost of equipment maintenance and enhancing usage time, in addition to other benefits in domains such as geothermal, marine, and airspace. AlCrFeNiTi was produced by solid state processing in a planetary ball mill, with the objective of obtaining a high alloying degree and a homogenous composition that could be further processed by pressing and sintering. The metallic powder was technologically characterized, indicating a particle size reduction following mechanical alloying processing when compared to the elemental raw powder materials. The microstructural analysis presented the evolution of the alloying degree during milling but also a compact structure with no major defects in the pressed and sintered bulk samples. The X-ray diffraction results confirmed the presence of face-centered cubic (FCC) and body-centered cubic (BCC) phases, predicted by the theoretical calculations, along with a hexagonal close-packed (HCP) phase, where the Al, Cr, Fe, Ni, and Ti phase was identified in both the alloyed powder material and sintered sample.

摘要

具有优异性能的合金是近期研究的主要课题,因为它们不仅能有效降低设备维护成本、延长使用时间,还在地热、海洋和航空航天等领域具有其他优势。AlCrFeNiTi是通过行星式球磨机中的固态加工制备的,目的是获得高合金化程度和均匀的成分,以便进一步通过压制和烧结进行加工。对金属粉末进行了工艺表征,结果表明与原始元素粉末材料相比,机械合金化处理后粒径减小。微观结构分析显示了球磨过程中合金化程度的演变,同时也显示了压制和烧结后的块状样品具有致密结构且无重大缺陷。X射线衍射结果证实了理论计算预测的面心立方(FCC)相和体心立方(BCC)相的存在,以及六方密排(HCP)相,在合金化粉末材料和烧结样品中均鉴定出了Al、Cr、Fe、Ni和Ti相。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/963d/10650386/7e574cd47202/materials-16-07038-g001.jpg

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