Composition templating for heterogeneous nucleation of intermetallic compounds

Author:

Que Zhongping,Wang Yun,Fan Zhongyun,Hashimoto T.,Zhou X. R.

Abstract

AbstractRefinement of intermetallic compounds (IMCs) through enhancing heterogeneous nucleation during casting process is an important approach to improve the properties of aluminium alloys, which greatly increases the economy value of recycled Al-alloys. However, heterogeneous nucleation of IMCs is inherently more difficult than that of a pure metal or a solid solution. It requires not only creation of a crystal structure but also the positioning of 2 or more different types of atoms in the lattice with specific composition close to that of the nucleated IMCs. Previous understanding on heterogeneous nucleation is based on structural templating, usually considering the small lattice misfit at the interface between the nucleating solid and substrate. In this work, we proposed a hypothesis and demonstrated that composition templating plays a critical role in heterogeneous nucleation of IMCs. The experimental results revealed that segregation of Fe atoms on the AlB2 surface, i.e., the Fe modified AlB2 particle, provides the required composition templating and hence enhances heterogeneous nucleation of α-Al15(Fe, Mn)3Si2, resulting in a significant refinement of the α-Al15(Fe, Mn)3Si2 particles in an Al-5 Mg-2Si-1.0Mn-1.2Fe alloy.

Funder

Engineering and Physical Sciences Research Council

Publisher

Springer Science and Business Media LLC

Reference48 articles.

1. Global Al recycling: A cornerstone of sustainable development. International Al Institute. 6–7, (2009).

2. The future of Manufacturing: A new era of opportunity and challenge for the UK. Summary report. Government office for science.

3. Our Metals Future: The metals industry’s 2050 vision for a sustainable Europe. Eurometax.

4. Aluminum industry worldwide-Statistics & Facts, Statista research Department. April 20, (2022).

5. About us—The Liquid Metal Engineering Hub. http://www.lime.ac.uk/about-us/.

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