Grain Refinement in Near-Eutectic Al-Si Alloy with Master Alloys Fabricated by Slip Casting Using Nano-Nb2O5 as a Precursor

Abstract Aluminum-silicon (Al-Si) alloys are staple materials in the automotive and aerospace industries. However, effective grain refinement of alloys containing > 4 wt.% Si remains challenging with traditional Al-Ti-B master alloys. This difficulty arises from the silicon poisoning effect, in which Si reacts with titanium to form undesirable silicides, thereby reducing efficiency. Consequently, Al-Nb-B master alloys have been widely studied as effective alternatives. The present work proposes an innovative processing route for Al-Cu-Nb master alloys, using Nb 2 O 5 powder as a precursor to replace costly metallic niobium. A slip-casting technique was employed to uniformly coat micrometric Al-Cu powders with nanometric Nb 2 O 5 particles. Sintering these coated powders enabled the aluminothermic reduction of Nb 2 O 5 and the subsequent in situ formation of potent, well-dispersed NbAl 3 nucleant particles. Inoculation of SAE 305 alloy (Al ≈ 12 wt.% Si) with these master alloys (0.3 wt.% Nb) achieved pronounced grain refinement, yielding a 14-fold reduction in average grain size (from 3.13 mm to ≈ 221 µm). Consequently, the macroscopic hardness increased significantly from 68.8 to 87.2 HB. This performance is comparable to reports in the literature. A holding time of only 15 min proved sufficient to achieve maximum refinement, indicating this route is an effective and potentially viable strategy for producing high-performance Al-Si alloys.

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Journal
JOM
Published
2026-09-18
DOI
https://doi.org/10.1007/s11837-026-08738-z
Primary Topic
Aluminum Alloy Microstructure Properties
Type
article
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article

Grain Refinement in Near-Eutectic Al-Si Alloy with Master Alloys Fabricated by Slip Casting Using Nano-Nb2O5 as a Precursor

Kaoma Betega, R. C. D. Cruz, Marcela Sagrilo Frizzo, João Batista Rodrigues Neto et al.
JOM
Aluminum Alloy Microstructure Properties
article

Grain Refinement in Near-Eutectic Al-Si Alloy with Master Alloys Fabricated by Slip Casting Using Nano-Nb2O5 as a Precursor

Kaoma Betega, R. C. D. Cruz, Marcela Sagrilo Frizzo, João Batista Rodrigues Neto, Joel Boaretto, Julia Rezende Leonardo, Artur Fernando Martins Schardong, Fernanda Mustafah El Hanini, Joéverton Iurk Pereira
article en

Abstract

Abstract Aluminum-silicon (Al-Si) alloys are staple materials in the automotive and aerospace industries. However, effective grain refinement of alloys containing > 4 wt.% Si remains challenging with traditional Al-Ti-B master alloys. This difficulty arises from the silicon poisoning effect, in which Si reacts with titanium to form undesirable silicides, thereby reducing efficiency. Consequently, Al-Nb-B master alloys have been widely studied as effective alternatives. The present work proposes an innovative processing route for Al-Cu-Nb master alloys, using Nb 2 O 5 powder as a precursor to replace costly metallic niobium. A slip-casting technique was employed to uniformly coat micrometric Al-Cu powders with nanometric Nb 2 O 5 particles. Sintering these coated powders enabled the aluminothermic reduction of Nb 2 O 5 and the subsequent in situ formation of potent, well-dispersed NbAl 3 nucleant particles. Inoculation of SAE 305 alloy (Al ≈ 12 wt.% Si) with these master alloys (0.3 wt.% Nb) achieved pronounced grain refinement, yielding a 14-fold reduction in average grain size (from 3.13 mm to ≈ 221 µm). Consequently, the macroscopic hardness increased significantly from 68.8 to 87.2 HB. This performance is comparable to reports in the literature. A holding time of only 15 min proved sufficient to achieve maximum refinement, indicating this route is an effective and potentially viable strategy for producing high-performance Al-Si alloys.

JOM
Universidade de Caxias do Sul (BR), Universidade Federal de Santa Catarina (BR)
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior
Openalex Percentile: Top 7%
Aluminum Alloy Microstructure Properties
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