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Journal ArticleDOI

Preparation of Aluminum-Scandium Master Alloys by Aluminothermal Reduction of Scandium Fluoride Extracted from Sc 2 O 3

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TLDR
In this paper, the use of an aluminium powder with high specific surface area in the composition of the alloying additive increases scandium extraction into the master alloy due to better contact of the reacting phases.
Abstract
Aluminium alloys containing small additions of scandium exhibit unique operating properties. Alloying material with scandium significantly improves product weldability, reduces the tendency towards hot cracks and improves welded joint mechanical properties. The aim of this work is to increase the scandium extraction into a master alloy by preliminary transformation of scandium oxide into fluoride and introduction into the composition of an aluminium powder alloying additive. Results are provided of laboratory experiments for preparation of aluminium-scandium master alloy by aluminothermic reduction of scandium fluoride using sodium fluoride and aluminium powder within the alloy composition. Scandium fluoride is prepared by treating scandium oxide with 40% hydrofluoric acid. The overall extraction of scandium from oxide into fluoride and from fluoride to the aluminium-scandium master alloy is 88.5% with an average scandium concentration in the master alloy of 1.90 wt.%. The microstructure of the master alloy obtained is represented by scandium aluminide Al3Sc crystals with a size from 10 to 25 μm uniformly distributed within the master alloy. An additional reserve for increasing the extraction of scandium into the master alloy and reducing its cost is processing of slags formed in the preparation of the ligature. The use of an aluminium powder with high specific surface area in the composition of the alloying additive increases scandium extraction into the master alloy due to better contact of the reacting phases. The resultant Al–Sc master alloy has uniform distribution of Al3Sc particles within the volume of the metal.

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Citations
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Book ChapterDOI

Scandium Master Alloy Production Via Sulfidation and Vacuum Aluminothermic Reduction

TL;DR: In this article , the sulfidation of scandiumScandium oxide using elemental sulfur was used to generate a sulfide intermediate, which was experimentally confirmed to be amenable for reduction to metal.
Patent

Scandium master alloy production

TL;DR: In this paper, a method for forming a scandium-bearing aluminum alloy is described, where a mixture of scandiam oxide and a first flux is used to obtain a flux-oxide mixture, and the mixture is then mixed with a first portion of molten metal selected from the group consisting of aluminum and aluminum alloys.
Journal ArticleDOI

Investigation of the Process of Synthesizing Nanosized Nickel Powders by Hydrogen Reduction Under Nonisothermal Conditions

TL;DR: In this article, the authors studied the kinetic characteristics and properties of the product of the process of synthesizing nickel nanopowders by the hydrogen reduction of Ni(OH)2 hydroxide compound under nonisothermal conditions.
Book ChapterDOI

State of the Art Technologies for Scandium Recovery, Purification, and Aluminum-Scandium Alloy Production

TL;DR: In this paper , a vertically integrated solution has been developed which includes a portfolio of technologies: (i) recoveryRecovery of Sc from Sc-containing ores and industrial waste streams from ppm levels to 20-25% in the concentrate.
References
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Journal ArticleDOI

Effect of scandium on the structure and properties of aluminum alloys

TL;DR: In this article, it was shown that scandium is the strongest inoculant of the cast grain structure of aluminum alloys, the strongest suppressor of recrystallization, and the strongest hardener (per 0.1% of the additive).
Journal ArticleDOI

Production Technology Features for Aluminum Matrix Alloys with a Silicon Carbide Framework

TL;DR: In this paper, a set of laboratory tests are conducted including preliminary preparation and classification of silicon carbide particles from an exhausted lining of an aluminum electrolyzer, preparation of a magnesium master alloy with introduction of particles, and preparation of objects of a composite Al-Mg-SiC alloy.
Journal ArticleDOI

Synthesis of aluminum-based scandium-yttrium master alloys

TL;DR: In this article, the microstructure of the prepared master alloy is studied and the compositions of intermetallics is determined, and the efficient technological parameters of the synthesis are determined.