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Mechanical properties and microstructure of multi-pass butt weld of plates made of Al-Mg-Zr alloy sparingly doped with scandium

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TLDR
In this paper, the microstructure of a multi-pass butt-welded joint of plates made of 1580 alloy of the Al-Mg-Zr system sparingly doped with scandium 0.1 wt%, depending on the shape of a weld groove and the chemical composition of the filler wire.
Abstract
Aluminum alloys doped with scandium represent a new generation of high-performance alloys that have numerous advantages compared to high-strength aluminum alloys. However, the cost of such alloys is quite high. Thus, scientists have been searching for new alloys sparingly doped with Sc that are suitable for industrial use. The current research aims to study the mechanical properties and microstructure of a multi-pass butt-welded joint of plates made of 1580 alloy of the Al-Mg-Zr system sparingly doped with Sc 0.1 wt%, depending on the shape of a weld groove and the chemical composition of the filler wire. Welding of plates with a thickness of 34.5 mm with X-groove and K-groove was performed by the TIG method in manual mode with filler wires from aluminum alloys. Good weldability and hot crack resistance of 1580 alloy providing ultimate strength of welded joints at the level of 0.84–0.93 of the ultimate strength of the base metal were established. The peculiarity of the thermal cycles of multi-pass welding affects the structure formation. The formed coarse-crystalline structure of the weld from 1580 filler wire leads to reduced mechanical properties of the welded joints, compared to the welded joints obtained with the use of 1561 filler wire. The analysis of the macro- and microstructure of the welded joints is given. The results of SEM and EDS studies of welds are presented.

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Citations
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Investigation the structure in cast and deformed states of aluminum alloy, economically alloyed with scandium and zirconium

TL;DR: In this paper, the macro and micro structure of cast, hot and cold rolled sheet semi-finished products has been studied by the methods of light and diffraction transmission electron microscopy, and their mechanical properties have been tested.
Journal ArticleDOI

Modeling of casting technology of large-sized ingots from deformable aluminum alloys

TL;DR: In this article , an industrial technology for semi-continuous casting of large-sized ingots from wrought aluminum alloy 1580 has been developed through the use of complex modeling, including computer modeling and physical modeling.
Journal ArticleDOI

Casting Welding from Magnesium Alloy Using Filler Materials That Contain Scandium

TL;DR: In this article , a scandium-containing filler metal from system alloy Mg-Zr-Nd for welding of aircraft casting was developed based on the results achieved in systematic studies of structure formation and the formation of multicomponent phases.
References
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Journal ArticleDOI

Scandium in aluminium alloys

TL;DR: A considerable part of the available literature on scandium in aluminium alloys is reviewed in this article, with emphasis on the aluminium rich part of diagrams, including a wide range of ternary Al-Sc-X phase diagrams and a few higher order phase diagrams.
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Nanoscale structural evolution of Al3Sc precipitates in Al(Sc) alloys

TL;DR: In this article, the exact morphologies of the Al3Sc precipitates were determined for the first time by HREM, in Al-0.1 wt% Sc and Al- 0.3 wt % Sc alloys, with 26 facets, which are the 6 {100} (cube), 12 {110} (rhombic dodecahedron), and 8 {111} (octahedron).
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Revisiting fundamental welding concepts to improve additive manufacturing: From theory to practice

TL;DR: In this article, a unified equation to compute the energy density is proposed to compare works performed with distinct equipment and experimental conditions, covering the major process parameters: power, travel speed, heat source dimension, hatch distance, deposited layer thickness and material grain size.
Journal ArticleDOI

Interaction of recrystallization and precipitation: The effect of Al3Sc on the recrystallization behaviour of deformed aluminium

M.J Jones, +1 more
- 07 May 2003 - 
TL;DR: In this paper, the kinetics and mechanisms of recrystallization in high purity binary Al-Sc alloys have been investigated, and the resultant complex microstructures are interpreted in terms of the interactions between precipitation and recrestallization.
Journal ArticleDOI

New Al–Mg–Sc alloys

TL;DR: In this article, the authors presented data on new wrought weldable alloys based on the Al-Mg-Sc system, namely, 01515, 01523, 01535, 01545, 01570 and 01571, which differ from each other mainly by magnesium content and belong to the family of non-heat-treatable Alloy alloys.
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