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Metal-matrix composites for space applications

机译:太空应用的金属基复合材料

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From the onset of the space era, both organic-matrix and metal-matrix composites (MMCs), with high specific stiffness and near-zero coefficient of thermal expansion (CTE), have been developed for space applications. Of the organic-matrix composites, graphite/epoxy (Gr/Ep) has been used in space for truss elements, bus panels, antennas, wave guides, and parabolic reflectors in the past 30 years. MMCs possess high-temperature capability, high thermal conductivity, low CTE, and high specific stiffness and strength. Those potential benefits generated optimism for MMCs for critical space system applications in the late 1980s. The purpose of this article is to detail the history, status, and opportunities of MMCs for space applications.
机译:从太空时代开始,具有高比刚度和接近零的热膨胀系数(CTE)的有机基复合材料(MMC)和金属基复合材料(MMC)均已开发用于太空应用。在过去的30年中,在有机基复合材料中,石墨/环氧树脂(Gr / Ep)已用于空间中的桁架元件,总线面板,天线,波导和抛物线反射器。 MMC具有高温能力,高导热率,低CTE以及高比刚度和强度。这些潜在的好处使MMC在1980年代后期对于关键空间系统应用感到乐观。本文的目的是详细介绍MMC在太空应用中的历史,地位和机会。

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