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ICROSTRUCTURE AND GRAIN REFINING EFFICIENCY OF TiC PARTICLES IN Al-Ti-C GRAIN REFINING MASTER ALLOYS

机译:Al-Ti-C晶粒精制母合金中TIC颗粒的微观结构和晶粒精制效率

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Master alloys from the Al-Ti-B ternary system are commonly used as grain refiners for cast aluminium and its alloys. However, the desire to reduce particulates in the finished product has led to the investigation of alternative master alloys based on the Al-Ti-C system. Currently little is known about the structure of the TiC particles that form in this system, or their grain refining mechanism. In the work reported, it has been found that an Al-3wt%Ti-0.15wt%C master alloy has a grain refining efficiency comparable to that of a conventional Al-5wt%Ti-1wt%B master alloy, when used at the same Ti concentration. The individual TiC particles formed during the reaction process were observed to be strongly faceted and smaller than the TiB_2 particles, typically seen in Al-Ti-B grain refiners. The TiC particles were found to grow as polycrystalline chains comprised of several particles, which are broken up on processing to rod. TEM studies of the TiC particles showed the presence of stacking faults and voids within the individual particles. In a model, metal-matrix-composite, sample α-Al grains were found to nucleate epitaxially on large artificially added TiC particles.
机译:来自Al-Ti-B三元体系的主合金通常用作铸铝及其合金的晶粒炼油厂。然而,在成品中减少颗粒的希望导致了基于Al-Ti-C系统的替代母合金的研究。目前几乎熟知在该系统中形成的TIC颗粒的结构,或其晶粒精制机制。在报告的工作中,已经发现Al-3wt%Ti-0.15wt%C主合金具有与常规Al-5wt%Ti-1wt%B主合金的晶粒精制效率相当,当使用时相同的Ti浓度。观察到在反应过程中形成的各个TiC颗粒强烈刻面,比通常在Al-Ti-B晶粒晶体中观察到的粒子颗粒。发现TIC颗粒生长为由几种颗粒组成的多晶链,它们被分解在加工到杆上。 TIC颗粒的TEM研究显示存在堆叠故障和单个颗粒内的空隙。在模型中,将样品α-Al晶粒样品α-Al晶粒在大规模的颗粒上外延上核心。

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