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具有高比强度的轻质单相铝基复杂集中合金。

Lightweight single-phase Al-based complex concentrated alloy with high specific strength.

作者信息

Han Mingliang, Wu Yuan, Zong Xiaobin, Shen Yaozu, Zhang Fei, Lou Hongbo, Dong Xiao, Zeng Zhidan, Peng Xiangyang, Hou Shuo, Lu Guangyao, Xiong Lianghua, Yan Bingmin, Gou Huiyang, Yang Yanping, Du Xueyan, Yuan Xiaoyuan, Zhang Yingjie, Jiao Meiyuan, Liu Xiongjun, Jiang Suihe, Wang Hui, Rempel Andrey A, Zhang Xiaobin, Zeng Qiaoshi, Lu Z P

机构信息

State Key Laboratory for Advanced Metals and Materials, University of Science and Technology Beijing, Beijing, 100083, China.

Center for High Pressure Science and Technology Advanced Research, Shanghai, 201203, China.

出版信息

Nat Commun. 2024 Aug 18;15(1):7102. doi: 10.1038/s41467-024-51387-6.

Abstract

Developing light yet strong aluminum (Al)-based alloys has been attracting unremitting efforts due to the soaring demand for energy-efficient structural materials. However, this endeavor is impeded by the limited solubility of other lighter components in Al. Here, we propose to surmount this challenge by converting multiple brittle phases into a ductile solid solution in Al-based complex concentrated alloys (CCA) by applying high pressure and temperature. We successfully develop a face-centered cubic single-phase Al-based CCA, AlMgLiZn, with a low density of 2.40 g/cm and a high specific yield strength of 344×10N·m/kg (typically ~ 200×10N·m/kg in conventional Al-based alloys). Our analysis reveals that formation of the single-phase CCA can be attributed to the decreased difference in atomic size and electronegativity between the solute elements and Al under high pressure, as well as the synergistic high entropy effect caused by high temperature and high pressure. The increase in strength originates mainly from high solid solution and nanoscale chemical fluctuations. Our findings could offer a viable route to explore lightweight single-phase CCAs in a vast composition-temperature-pressure space with enhanced mechanical properties.

摘要

由于对节能结构材料的需求飙升,开发轻质且坚固的铝基合金一直吸引着人们不懈的努力。然而,其他较轻成分在铝中的溶解度有限阻碍了这一努力。在此,我们提出通过在铝基高熵合金(CCA)中施加高压和高温,将多个脆性相转变为韧性固溶体来克服这一挑战。我们成功开发出一种面心立方单相铝基CCA,即AlMgLiZn,其密度低至2.40 g/cm,比屈服强度高达344×10N·m/kg(传统铝基合金通常约为200×10N·m/kg)。我们的分析表明,单相CCA的形成可归因于高压下溶质元素与铝之间原子尺寸和电负性差异的减小,以及高温高压引起的协同高熵效应。强度的增加主要源于高固溶度和纳米级化学波动。我们的研究结果可为在广阔的成分-温度-压力空间中探索具有增强力学性能的轻质单相CCA提供一条可行途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75a2/11330973/fb8856985b37/41467_2024_51387_Fig1_HTML.jpg

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