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Production of MA956 Alloy Reinforced Aluminum Matrix Composites by Mechanical Alloying

机译:机械合金化制备MA956合金增强铝基复合材料

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摘要

Aluminum matrix composites (AMC) are attractive structural materials for automotive and aerospace applications. Lightweight, environmental resistance, high specific strength and stiffness, and good wear resistance are promising characteristics that encourage research and development activities in AMC in order to extend their applications. Powder metallurgy techniques like mechanical alloying (MA) are an alternative way to design metal matrix composites, as they are able to achieve a homogeneous distribution of well dispersed particles inside the metal matrix. In this work, aluminum has been reinforced with particles of MA956, which is an oxide dispersion strengthened (ODS) iron base alloy (Fe-Cr-Al) of high Young¿s modulus and that incorporates a small volume fraction of nanometric yttria particles introduced by mechanical alloying. The aim of this work is to investigate the use of MA to produce AMC reinforced with 5 and 10 vol.% of MA956 alloy particles. Homogeneous composite powders were obtained after 20 h of milling. The evolution of morphology and particle size of composite powders was the typical observed in MA. The composite powders produced with 10 vol.% MA956 presented a more accentuated decrease in particle size during the milling, reaching 37 ¿m after 50 h. The thermal stability of the composite and the existence of interface reactions were investigated aiming further high temperature consolidation processing. Heat treatment at 420 °C resulted in partial reaction between matrix and reinforcement particles, while at 570 °C the extension of reaction was complete, with formation in both cases of Al-rich intermetallic phases.
机译:铝基复合材料(AMC)是用于汽车和航空航天应用的有吸引力的结构材料。轻量级,耐环境性,高比强度和刚度以及良好的耐磨性是有前途的特征,这些特征鼓励了AMC的研发活动,以扩展其应用范围。粉末冶金技术(例如机械合金化(MA))是设计金属基复合材料的另一种方法,因为它们能够在金属基体内实现均匀分散的颗粒的均匀分布。在这项工作中,用MA956颗粒增强了铝,MA956是一种具有高杨氏模量的氧化物弥散强化(ODS)铁基合金(Fe-Cr-Al),并引入了少量的纳米氧化钇颗粒通过机械合金化。这项工作的目的是研究使用MA生产5%和10%(体积)的MA956合金颗粒增强的AMC。研磨20小时后获得均质复合粉末。复合粉末的形貌和粒度演变是在MA中观察到的典型现象。用10%(体积)的MA956生产的复合粉末在研磨过程中粒径的减小更为明显,在50小时后达到37μm。针对进一步的高温固结处理,研究了复合材料的热稳定性和界面反应的存在。在420°C的热处理导致基体和增强颗粒之间发生部分反应,而在570°C的情况下,反应完全完成,在两种富铝金属间相均形成。

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