Magnesium Metal Matrix Composites and Their Applications

A. Abbas, V. Rajagopal, Song-Jeng Huang
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引用次数: 12

Abstract

Magnesium is one of the lightest structural metals have the capability to replace the conventional alloys for mass saving applications and provides higher strength and stiffness. Additionally, it also has the ability to absorb the hydrogen in the form of hydrides and can be used as a future source of energy carrier. The theoretical hydrogen capacity of 7.6 wt% makes it more suitable for future energy sources but needs to reduce the working sorption temperature. Moreover, magnesium is the primary source of the body and has strength equal to the bone, making it more suitable for biomedical applications and higher biocompatibility. Some challenges of magnesium-based metal matrix composites are still encountering structural applications, hydrogen energy storage, and biomedical applications due to manufacturing methodologies and proper materials selection to get required results.
金属镁基复合材料及其应用
镁是最轻的结构金属之一,有能力取代传统的合金,以节省质量的应用,并提供更高的强度和刚度。此外,它还具有以氢化物形式吸收氢的能力,可以作为未来的能源载体。理论氢容量为7.6%,使其更适合未来的能源,但需要降低工作吸附温度。此外,镁是人体的主要来源,具有与骨骼相当的强度,使其更适合生物医学应用和更高的生物相容性。镁基金属基复合材料在结构应用、氢储能和生物医学应用方面仍面临一些挑战,这主要取决于制造方法和正确的材料选择,以获得所需的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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