首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >The Role of Grain Refiner in the Nucleation of AlFeSi Intermetallic Phases During Solidification of a 6xxx Aluminum Alloy
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The Role of Grain Refiner in the Nucleation of AlFeSi Intermetallic Phases During Solidification of a 6xxx Aluminum Alloy

机译:谷物炼油机在6xxx铝合金凝固过程中Alfesi金属间相成核的作用

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摘要

Primary grain refinement using inoculant additions and intermetallic compound (IMC) phase selection are critical aspects in the solidification of commercial aluminum alloys, controlling the final mechanical properties in service. Although there have been studies which suggest there are explicit interactions between the two phenomena, they have yet to be fully elucidated. Here, through study of intermetallic phase particles extracted from an inoculated casting, key features relating to the nucleation of different intermetallic phases via eutectic reactions are recognized and explained. In particular, rake-like IMCs are identified as initiation points for the deleterious beta-AlFeSi IMC phase in a model 6xxx series Al alloy. A mechanism is proposed for how TiB2 inoculant particles, which are commonly used for primary phase refinement, play a role in enhancing the nucleation of intermetallic phases during eutectic reactions at the liquid/alpha-Al interface in the final stages of solidification. The implication of this mechanism is that, after the event of primary grain refinement, any unused TiB2 inoculant particles could be contributing to IMC formation thereby affecting the overall type, size, and distribution of intermetallic phases in the solidified alloy. (C) The Author(s) 2019
机译:使用丙酰基添加剂和金属间化合物(IMC)相位选择的主要晶粒细化是商业铝合金凝固中的关键方面,控制了服务中的最终机械性能。虽然已经有研究表明两种现象之间存在明确的互动,但他们尚未完全阐明。这里,通过研究由接种浇铸中提取的金属间相颗粒,识别和解释与通过共晶反应的不同金属间相核化的关键特征。特别地,替代的IMC被鉴定为型号6XXX系列Al合金中的有害β-alfesi IMC相的引发点。提出了一种机制,用于如何常用于初级相细化的TIB2孕酸颗粒,起到在凝固的最终阶段的液体/α-AL界面的共晶反应期间增强金属间相的成核的作用。该机制的含义是,在原发性晶粒细化事件之后,任何未使用的TIB2丙酰化颗粒都可能导致IMC形成,从而影响固化合金中金属间相的整体类型,尺寸和分布。 (c)2019年提交人

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