[HTML][HTML] Selective laser melting of Al–8.5 Fe–1.3 V–1.7 Si alloy: Investigation on the resultant microstructure and hardness

L Zheng, Y Liu, S Sun, H Zhang - Chinese journal of aeronautics, 2015 - Elsevier
This article presents the microstructure and hardness variation of an Al–8.5 Fe–1.3 V–1.7 Si
(wt%, FVS0812) alloy after selective laser melting (SLM) modification. Three zones were …

Effect of vanadium on Fe-rich phase, mechanical properties and thermal conductivity of hypoeutectic Al–Si alloy

R Qin, RF Yan, ZP Guan, GQ Zhang… - Materials Research …, 2021 - iopscience.iop.org
In this paper, the effects of element V addition (0, 0.2, 0.4, 0.6, 0.8 and 1.0 wt%) on
microstructures, mechanical properties and thermal conductivity of Al–8Si–0.1 Cu–0.6 Mg …

Tribological properties improvement of conventionally-cast Al-8.5 Fe-1.3 V-1.7 Si alloy by multi-pass friction stir processing

Z Nouri, R Taghiabadi - Transactions of Nonferrous Metals Society of China, 2021 - Elsevier
The effect of multi-pass friction stir processing (FSP) on the tribological properties of
conventionally-cast Al-8.5 Fe-1.3 V-1.7 Si (FVS0812) alloy was investigated. The pin-on-disk …

Microstructure evolution and thermophysical properties of hypereutectic Al-Fe-Ni alloys

M Jiang, L Mo, X Zhou, X Liu, M Zhan, J Du - International Journal of …, 2023 - Springer
Abstract Hypereutectic Al-x (1.75 Fe-1.25 Ni)(x= 1, 2, 4, 6) alloys were designed and
prepared by gravity casting in the present study. Both the microstructure and the …

Characterization of Al–Fe–V–Si heat-resistant aluminum alloy components fabricated by selective laser melting

S Sun, L Zheng, Y Liu, J Liu, H Zhang - Journal of materials research, 2015 - cambridge.org
Heat-resistant Al–8.5 Fe–1.3 V–1.7 Si (wt%) aluminum alloy components were fabricated
using selective laser melting (SLM). The as-built samples were examined in terms of density …

Dry sliding wear behaviour of Al–Fe–Si–V alloys at elevated temperatures

E Koraman, M Baydoğan, S Sayılgan, A Kalkanlı - Wear, 2015 - Elsevier
High temperature strength of Al–Fe–V–Si alloys due to quaternary silicide dispersoids in
their microstructures has been well documented in the literature. In those works, these …

Precipitation of iron-rich intermetallic phases in Al-4.6 Cu-0.5 Fe-0.5 Mn cast alloy

K Liu, X Cao, XG Chen - Journal of Materials Science, 2012 - Springer
Abstract The solidification of Al-4.6 Cu-0.5 Fe-0.5 Mn (206 type) cast alloy has been studied
using Thermal Analysis, Differential Scanning Calorimeter, Scanning Electron Microscopy …

Formation and phase selection of iron-rich intermetallics in Al-4.6 Cu-0.5 Fe cast alloys

K Liu, X Cao, XG Chen - Metallurgical and Materials Transactions A, 2013 - Springer
The solidification structures of Al-Cu 206 cast alloys at a high iron level of 0.5 pct were
systematically studied by means of differential scanning calorimetry, electron backscattered …

Microstructural evaluation of melt conditioned twin roll cast Al–Mg alloy

S Kumar, N Hari Babu… - Materials Science and …, 2011 - journals.sagepub.com
Aluminium alloy strip has been successfully cast using the melt conditioned twin roll casting
(MC-TRC) process. The liquid metal to be strip cast was fed into a melt conditioner, where it …

Microstructural characterization of squeeze-cast Al–8Fe–1.4 V–8Si

M Arhami, F Sarioglu, A Kalkanli… - Materials Science and …, 2008 - Elsevier
This paper investigates the effect of vanadium on the composition and morphology of
intermetallics formed during the squeeze casting of Mg-modified Al–8Fe–1.4 V–8Si alloy in …