4.7 Review

Improving the Young's modulus of Mg via alloying and compositing - A short review

期刊

JOURNAL OF MAGNESIUM AND ALLOYS
卷 10, 期 8, 页码 2009-2024

出版社

KEAI PUBLISHING LTD
DOI: 10.1016/j.jma.2022.07.011

关键词

Elastic modulus; Mg alloy; Mg matrix composite; Modulus prediction model; Mechanical properties

资金

  1. National Key Research & Development Program of China [2021YFB3703300]
  2. National Natural Science Foundation of China [51971075, 51971078, 51871074, 51671066]
  3. National Natural Science Foundation for Young Scientists of China [51801042]
  4. Fundamental Research Funds for the Central Universities [FRFCU5710000918]

向作者/读者索取更多资源

This paper reviews the research on high-modulus Mg-based materials in recent decades, introduces the methods of improving Young's modulus of Mg alloys and Mg matrix composites, compares the effectiveness of the two approaches, and highlights the promising potential of Mg matrix composites. Furthermore, the effects of reinforcement type, size, volume fraction, and interfacial bonding condition on the modulus of Mg matrix composites are discussed, and the challenges and development trends of high-modulus Mg-based materials are proposed.
Lightweight, high-modulus structural materials are highly desired in many applications like aerospace, automobile and biomedical instru-ments. As the lightest metallic structural material, magnesium (Mg) has great potential but is limited by its low intrinsic Young's modulus. This paper reviews the investigations on high-modulus Mg-based materials during the last decades. The nature of elastic modulus is intro-duced, and typical high-modulus Mg alloys and Mg matrix composites are reviewed. Specifically, Mg alloys enhance Young's modulus of pure Mg mainly by introducing suitable alloying elements to promote the precipitation of high-modulus second phases in the alloy system. Differently, Mg matrix composites improve Young's modulus by incorporating high-modulus particles, whiskers and fibers into the Mg ma-trix. The modulus strengthening effectiveness brought by the two approaches is compared, and Mg matrix composites stand out as a more promising solution. In addition, two well-accepted modulus prediction models (Halpin-Tsai and Rule of mixtures (ROM)) for different Mg matrix composites are reviewed. The effects of reinforcement type, size, volume fraction and interfacial bonding condition on the modulus of Mg matrix composites are discussed. Finally, the existing challenges and development trends of high-modulus Mg-based materials are proposed and prospected. (c) 2022 Chongqing University. Publishing services provided by Elsevier B.V. on behalf of KeAi Communications Co. Ltd. This is an open access article under the CC BY-NC-ND license ( http://creativecommons.org/licenses/by-nc-nd/4.0/ ) Peer review under responsibility of Chongqing University

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