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鎂合金功能材料的研究進展
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重慶大學

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Research Progress in Magnesium Alloys as Functional Materials
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Chongqing University

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Major State Basic Research Development Program of China (“973”Program) (2007CB613802); the Program of Introducing Talents of Discipline to Universities (B08040)

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    摘要:

    與其它結(jié)構(gòu)金屬材料相比鎂合金具有質(zhì)輕的顯著優(yōu)點,因此被廣泛應(yīng)用于交通運輸和航空等領(lǐng)域。隨著研究的深入和研究范圍的擴大,鎂合金更多的優(yōu)點被開發(fā)利用:較高的理論能量密度,較大的阻尼容量和屏蔽效能以及良好的生物相容性,因此鎂合金具有作為儲氫材料、可再充電電池、阻尼材料、可生物降解的植入材料、電磁屏蔽材料、導(dǎo)熱材料的潛力,但是每一種功能性材料都存在未解決的瓶頸問題,本文對近十年的大量的研究進行了概括,總結(jié)了鎂及鎂合金作為以上六種功能材料的主要研究方向及研究進展,討論了未來主要的研究方向。

    Abstract:

    Magnesium alloys have a significant advantage-low density over other structure metals currently and have been widely used in various fields such as transportation and aerospace. With the development of further research and the enlargement of research scope, more advantages have been developed: high storage capacity, high theoretical volumetric energy density, extraordinarily high damping capacity, good biocompatibility, excellent shielding efficiency as well as impressive thermal conductivity. Therefore Mg alloys have the potential to be various functional materials, such as hydrogen storage material, rechargeable electrochemical batteries, damping material, biodegradable implant material, electromagnetic shielding material, and thermal conductive material. Unfortunately, each kind of functional material has bottlenecks or troubles needing to be broken through, and a lot of researches have been carried out in recent years. This review comprehensively covers the research history, progress and the up-to-date summary of Mg and Mg alloys as functional materials. The six kinds of materials above all will be discussed respectively.

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陳先華.鎂合金功能材料的研究進展[J].稀有金屬材料與工程,2016,45(9):2269~2274.[Chen Xianhua. Research Progress in Magnesium Alloys as Functional Materials[J]. Rare Metal Materials and Engineering,2016,45(9):2269~2274.]
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  • 收稿日期:2014-06-19
  • 最后修改日期:2015-03-30
  • 錄用日期:2015-09-06
  • 在線發(fā)布日期: 2016-10-09
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