首页> 外文期刊>Journal of Materials Science >AGEING AND TOUGHNESS OF SILICON CARBIDE PARTICULATE REINFORCED AL-CU AND AL-CU-MG BASED METAL-MATRIX COMPOSITES
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AGEING AND TOUGHNESS OF SILICON CARBIDE PARTICULATE REINFORCED AL-CU AND AL-CU-MG BASED METAL-MATRIX COMPOSITES

机译:碳化硅颗粒增强的Al-CU和AL-CU-MG基金属基复合材料的时效性和韧性

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Metal-matrix composites (MMC) comprising powder aluminium alloys reinforced by particulate ceramic are being developed for widespread aerospace structural applications ranging from fuselage and missile components to undercarriage parts. Most interest is centred on MMCs with an Al-Cu-Mg (2 1 2 4) matrix alloy. These MMCs possess high levels of specific stiffness with high specific strengths but can exhibit lower ductility and toughness than conventional unreinforced aluminium alloys. To overcome these problems the effects of alloy com position on the ageing behaviour and notched tensile properties of Al-Cu-Mg and Al-Cu based alloys reinforced with 20 wt% silicon carbide particulate have been investigated. Al-Cu-Mg MMCs gave higher strengths and moduli than unreinforced sheet. Lowering the copper and magnesium content resulted in reduced strength but did not affect the rate of age hardening. The Al-Cu MMCs gave the lowest strengths but the absence of natural ageing may prove advantageous, enabling sheet to be formed and subsequently heat-treated to the peak strength condition. [References: 14]
机译:包含由颗粒陶瓷增强的粉末铝合金的金属基复合材料(MMC)正在开发,用于从机身和导弹部件到起落架部件的广泛航空结构应用。人们最感兴趣的是具有Al-Cu-Mg(2 1 2 4)基体合金的MMC。这些MMC具有较高的比刚度和较高的比强度,但与常规的非增强铝合金相比,它们的延展性和韧性较低。为了克服这些问题,已经研究了合金组成对用20wt%的碳化硅颗粒增强的Al-Cu-Mg和Al-Cu基合金的时效行为和缺口拉伸性能的影响。 Al-Cu-Mg MMC比未增强的板材具有更高的强度和模量。降低铜和镁含量会导致强度降低,但不会影响时效硬化率。 Al-Cu MMC给出了最低的强度,但是不存在自然时效可能被证明是有利的,使得能够形成片材并随后将其热处理至峰值强度条件。 [参考:14]

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