Abstract

Low-expansion alloys are of great importance and can be used for the development of new aerospace materials. Herein, we report diverse rare earth quasicrystal alloys fabricated by the vacuum suction casting process. The effects of the addition of cerium (Ce) on the microstructure, thermal expansion properties and microhardness of the Al-Cu-Fe alloy were systematically investigated. This study discovered the tiny Al-Cu-Fe-Ce microstructure. A uniform distribution could be achieved after Ce addition amount is elevated. At the Ce addition amount of 1 at%, the lowest alloy thermal expansion coefficient was obtained. The alloy exhibited the maximum microhardness under these conditions. The microhardness of alloys containing 1 at% of Ce was approximately 2.4 times higher than the microhardness exhibited by alloys devoid of Ce additives. The coefficient of thermal expansion decreases by approximately 20%. The use of the suction casting process and the addition of an appropriate amount of Ce can potentially help design and develop Al-Cu-Fe-Ce alloys.

Highlights

  • IntroductionQuasicrystal phase was originally detected in Al-Mn alloys under rapid solidification [1]

  • Three decades ago, quasicrystal phase was originally detected in Al-Mn alloys under rapid solidification [1]

  • This study explored the mechanism by which Ce affected alloy thermal expansion behaviour, hardness and microstructure

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Summary

Introduction

Quasicrystal phase was originally detected in Al-Mn alloys under rapid solidification [1]. The property of high room temperature brittleness limits the wide application of quasicrystal alloys. Quasicrystals have integrated characteristics, like great hardness [2], elastic moduli and strength. The materials exhibit low surface energy, favourable wear/corrosion resistance and low coefficient of friction [3,4]. They can be used as the reinforcing phase of royalsocietypublishing.org/journal/rsos R.

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