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Influence of a Novel Master Alloy Addition on the Grain Refinement of Al-Si Cast Alloys

机译:新型大师合金添加对Al-Si铸造合金晶粒细化的影响

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The grain refinement practice using Ti based chemical additions is well established for wrought Al alloys, especially in the last few decades. In the case of Al-Si casting alloys the practice of adding grain refiners and the impact on castability is not well established in industries. The main reason is the chemical instability of conventionally known Ti based grain refiner which reacts with silicon forming intermetallic phases. Recently, researchers at Brunel University have identified a novel chemical composition that can refine the grain structure of Al-Si alloys in an effective way. Over the last year, this novel grain refiner in the form of master alloy was developed and tested in various Al-Si cast alloys that are commonly used in industry. Significant grain refinement is obtained when the master alloy is added to the liquid metal prior to casting. Moreover, the grain size of the Al-Si cast alloys is observed to be less sensitive to cooling rate when the master alloy is added. In this work, the influence of addition of the master alloy on microstructural evolution of various Al-Si alloys cast under various cooling rates is presented.
机译:采用基于TI的化学品添加的晶粒细化实践对于锻造AL合金,特别是在过去几十年中,是很好的。在Al-Si铸造合金的情况下,在工业中,添加晶粒炼油厂的实践和对可塑造性的影响。主要原因是常规已知的Ti基晶粒晶体的化学不稳定性,其与硅形成金属间相反应。最近,布鲁内尔大学的研究人员鉴定了一种新型化学组成,可以以有效的方式优化Al-Si合金的晶粒结构。在去年,这种新型谷物炼油厂以母合金的形式开发并在各种Al-Si铸造合金中进行测试,该合金通常用于工业。当在铸造之前将母合金加入液态金属时,获得显着的晶粒细化。此外,当加入主合金时,观察到Al-Si铸造合金的晶粒尺寸对冷却速率的敏感性不太敏感。在这项工作中,介绍了在各种冷却速率下添加了母合金对各种冷却速率铸造的各种Al-Si合金微观结构演化的影响。

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