论使用二次合金生产铝基金属基复合材料的可能性

Crystals Pub Date : 2024-03-31 DOI:10.3390/cryst14040333
L. Lattanzi, A. Jarfors, S. Awe
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引用次数: 0

摘要

铝基复合材料具有摩擦学性能和热物理性能,重量轻,适合应用于汽车制动盘。铝合金允许使用二次材料来生产复合材料,但其缺点是一些元素、杂质和氧化物会损害复合材料的机械和热物理性能。这项初步研究探讨了使用二次基体合金生产的复合材料的机械和热物理性能。总的来说,研究结果很有希望,尽管碳化硅颗粒在与次基体的复合材料中聚集,但其机械和热物理性能的下降幅度很小。在熔体中有效分散碳化物所面临的挑战似乎与铝氧化物有关,未来的微结构研究将致力于澄清这方面的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Possibility of Using Secondary Alloys in the Production of Aluminum-Based Metal Matrix Composite
Aluminum-based composites provide tribological performance and thermophysical properties that, combined with being lightweight, are suitable for their application in automotive brake discs. Aluminum alloys allow the use of secondary materials to produce composites, with the drawback of several elements, impurities, and oxides that can harm the mechanical and thermophysical properties. This preliminary study explored the mechanical and thermophysical performance of a composite material produced with a secondary matrix alloy. Overall, the results are promising, with a minimal decrease in mechanical and thermophysical properties despite clustered silicon carbide particles in the composite with the secondary matrix. The challenges in effectively dispersing carbides in the melt seem linked to aluminum oxides, and future microstructural investigations will aim to clarify this aspect.
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