Effect of the Milling Time and Addition of a Grinding Agent of Quasicrystalline Powder Based on AlCuFeB Alloys

Author:

de Lima Cavalcante Danielle Guedes1,Barros T.P.S.1,Lima B.A.S.G.1,dos Passos Tibério Andrade1,de Lima S.J.G.1,Gomes Rodinei Medeiros1

Affiliation:

1. Universidade Federal da Paraíba-DEM-UFPB

Abstract

Quasicrystalline (QC) materials represent a new class of alloys differing from amorphous and crystalline materials due to quasicrystalline periodicity and therefore unusual properties. Applications of quasicrystals range from surface coatings, thin films to reinforcements of ductile matrix composites such aluminum and, more recently, polymers. Quasicrystalline alloys show fundamentally different behavior compared to crystalline alloys even when their compositions are very similar, including low friction coefficient, high hardness and high brittleness. Due to this brittle behavior there are some limitations with respect to what methods can be used to process QC materials restricting their applications to powder form. One of the techniques for particle size reduction is mechanical milling which, however may lead to destabilization of the icosahedral phase. Therefore, there is a need to study the stability of quasicrystalline alloys during this comminution process. In the present study, AlCuFeB alloys were milled with the aid of a grinding agent that helps reduce overheating and thus controlling the QC powder stability. It was found that QC phase was destabilized after 10 h while the addition of a grinding agent led to milling times of 20 h without destabilizing the QC phase.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference4 articles.

1. T.A., Passos: Estudo da viabilidade Tecnológica de Fabricação de Compósitos Alumínio-Quasicristal por Extrusão a Quente. Doutorado (Tese). João Pessoa, 2006. Universidade Federal da Paraíba (UFPB). PB.

2. C. Janot, J.M. Dubois: Les Quasicristaux Matière a Paradoxes. 1 Ed, France, EDP Sciences (1998).

3. D.G. L Cavalcante: Estabilidade de pós quasicristalinos de uma liga de Al62. 2Cu25. 5Fe12. 3 obtidos por moagem de alta energia. Mestrado (Dissertação). João Pessoa, 2007. Universidade Federal da Paraíba (CT/UFPB). PB.

4. P. Weisbecker, G. Bonhomme, G. Bott and J. M Dubois: Journal of Non-Crystalline Solids Vol. 351 (2005), p.1630.

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