Busca avançada
Ano de início
Entree


Assessing microstructure, morphology, and mechanical properties of Al-2Fe-1Ni alloy through correlational characterization analysis

Texto completo
Autor(es):
Leal, Jaderson Rodrigo da Silva ; Saldanha, Felipe Escher ; de Gouveia, Guilherme Lisboa ; Spinelli, Jose Eduardo
Número total de Autores: 4
Tipo de documento: Artigo Científico
Fonte: MATERIALS CHARACTERIZATION; v. 223, p. 15-pg., 2025-05-01.
Resumo

One approach to addressing the growing demand for Al alloys in an environmentally sustainable manner is through recycling. However, the primary challenge involves mitigating the loss of mechanical properties and expanding the application range of scrap-containing alloys, primarily due to the formation of deleterious Fe-rich intermetallic phases. To tackle this issue, various methodologies have been explored, ranging from the less efficient dilution of scrap in primary Al to the use of elements such as Ni that modify these harmful phases, combined with control of solidification thermal parameters. Despite the potential of this approach, there is a notable gap in the literature regarding the formation kinetics of Fe-rich intermetallics under varying thermal conditions and the addition of Ni in Fe-rich Al alloys. This study investigates the Al-2Fe-1Ni alloy solidified at cooling rates of 0.5 K/s and 10.5 K/s using optical microscopy, SEM, XRD, EBSD, XCT, and tensile tests. The findings demonstrate the effectiveness of Ni in suppressing the formation of the primary Al13Fe4 intermetallic phase and promoting microstructures predominantly composed of eutectic cells containing Al + Al9FeNi. The Al9FeNi fibers within the eutectic cells exhibited morphological variations, with the central segments being more refined and orderly compared to the coarser and less aligned peripheric segments. Furthermore, the micro-structural refinement induced by increasing the cooling rate during solidification (from approximately 1 K/s to 8 K/s) resulted in enhanced yield strength (from 88 MPa to 125 MPa) and tensile strength (from 116 MPa to 138 MPa), while maintaining ductility, as evidenced by a consistent fracture strain of approximately 25 %. (AU)

Processo FAPESP: 23/06107-3 - Estudo do crescimento de fases primárias AlFe em ligas de Al e de camadas intermetálicas em juntas Sn-Bi-X/cobre
Beneficiário:José Eduardo Spinelli
Modalidade de apoio: Auxílio à Pesquisa - Regular
Processo FAPESP: 24/03615-0 - Avaliação da morfologia, modo de crescimento e propriedades dos intermetálicos CuSn e AlFe por meio de técnicas avançadas de caracterização
Beneficiário:Guilherme Lisboa de Gouveia
Modalidade de apoio: Bolsas no Brasil - Programa Capacitação - Treinamento Técnico
Processo FAPESP: 19/23673-7 - Avaliação de ligas para juntas térmicas e para manufatura aditiva
Beneficiário:José Eduardo Spinelli
Modalidade de apoio: Auxílio à Pesquisa - Regular
Processo FAPESP: 21/08436-9 - Eletromigração e microtomografia 4D em juntas térmicas Sn-Bi-In
Beneficiário:José Eduardo Spinelli
Modalidade de apoio: Bolsas no Exterior - Pesquisa