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Development and research of technology for obtaining and properties of welding wire from Al–Mg–Sc alloys using combined methods of thermal deformation treatment

S. B. SidelnikovSiberian federal university, Krasnoyarsk, 660025, Russian FederationДенис Сергеевич ВорошиловSiberian federal university, Krasnoyarsk, 660025, Russian FederationЕкатерина Сергеевна ЛопатинаSiberian federal university, Krasnoyarsk, 660025, Russian FederationO. V. YakivyukSiberian federal university, Krasnoyarsk, 660025, Russian FederationИ. Л. КонстантиновSiberian federal university, Krasnoyarsk, 660025, Russian FederationYu. N. MansurovHuanggang Normal University, Huangzhou District, Huanggang, 438000, Hubei, ChinaТамара Александровна ОрелкинаSiberian federal university, Krasnoyarsk, 660025, Russian FederationRoman Ilsurovich GalievSiberian federal university, Krasnoyarsk, 660025, Russian FederationVladimir Ivanovich BerSiberian federal university, Krasnoyarsk, 660025, Russian FederationIrina Nikolaevna BelokonovaSiberian federal university, Krasnoyarsk, 660025, Russian FederationAlexander Vasilyevich DurnopyanovSiberian federal university, Krasnoyarsk, 660025, Russian Federation
ABI

Annotatsiya

The results of studies technological processes for obtaining welding wire from alloys of the Al-Mg system with a scandium content of 0.12 (alloy 1580) and 0.25 wt. % (alloy 01570) presented. A feature of the technology is the production of a billet for further cold deformation by an energy-efficient method of ingotless rolling-extrusion (IRE). It was found that hot-extruded rods from the investigated alloys obtained by the IRE method have the required level of plastic and strength properties necessary for further cold deformation up to 80%. Thermomechanical processing of hot-extruded rods manufactured by IRE have been developed and experimentally tested, which made it possible to obtain a billet with a square side of 5×5 mm by sectional rolling and wire with a diameter of 3 mm by drawing. Studies of the structure and mechanical properties of deformed semi-finished products have shown that the developed modes make it possible to obtain a welding wire from the investigated alloys that meets the requirements of current standards. Studies of the operational properties of the obtained welding wire were carried out. It was found that alloy 1580 with a minimum content of scandium (0.12 wt %) is not inferior to alloy 01570 in terms of corrosion resistance and weld quality. Developed technology for the production of welding wire from alloys of the Al-Mg system with different scandium content can be recommended for industrial use. It is advisable to implement alloy 1580, which has a lower cost compared to alloy 01570.

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