Investigation into the Fabrication Possibility of the Boron–Aluminum Sheet Rolling of Increased Strength without Using Homogenization and Quenching


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Al–Cu–Mn (Zr) aluminum alloys possess high strength and manufacturability without operations of thermal treatment (TT). In order to investigate the fabrication possibility of the aluminum boron-containing alloy in the form of sheet rolling with an increased strength without TT, Al–2% Cu–1.5% Mn–2% B and Al–2% Cu–1.5% Mn–0.4% Zr–2% B alloys are prepared. To exclude the precipitation of refractory boride particles, smelting is performed in a RELTEK induction furnace providing intense melt stirring. The smelting temperature is 950–1000°C. Pouring is performed into graphite molds 40 × 120 × 200 mm in size. It is established using computational methods (Thermo-Calc) that manganese forms complex borides with aluminum and zirconium at the smelting temperature; herewith, a sufficient amount of manganese remains in liquid, while zirconium is almost absent. The formation of AlB2Mn2 complex boride is proven; however, the amount of manganese remaining in the solid solution is sufficient to form the particles of the Al20Cu2Mn3 phase in amounts of up to 7 wt %. Boron stimulates the isolation of Al3Zr primary crystals in the alloy with zirconium; in connection with this, an amount of zirconium insufficient for hardening remains in the aluminum solid solution. The possibility of fabricating thin-sheet rolling with a thickness smaller than 0.3 mm with homogeneously distributed accumulations of the boride phase with a particle size smaller than 10 μm is shown. A high strength level (up to 543 MPa) is attained without using quenching and aging due to the precipitation of dispersoids of the Al20Cu2Mn3 phase during hot deformation (t = 450°C).

Sobre autores

K. Chervyakova

National University of Science and Technology “MISiS”

Autor responsável pela correspondência
Email: kse-chervyakova@yandex.ru
Rússia, Moscow, 119049

N. Belov

National University of Science and Technology “MISiS”

Email: kse-chervyakova@yandex.ru
Rússia, Moscow, 119049

M. Samoshina

National University of Science and Technology “MISiS”

Email: kse-chervyakova@yandex.ru
Rússia, Moscow, 119049

A. Yakovlev

National University of Science and Technology “MISiS”

Email: kse-chervyakova@yandex.ru
Rússia, Moscow, 119049

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