Szczegóły publikacji

Opis bibliograficzny

Effect of ECAP on the microstructure and mechanical properties of plastically consolidated 413.0 aluminum alloy chips / WĘDRYCHOWICZ Mateusz, WIEWIÓRA Marcel, TOKARSKI Tomasz, CIOS Grzegorz // W: Metal 2015 : 24th international conference on Metallurgy and materials : June 3rd–5th 2015, Brno, Czech Republic : proceedings of abstracts / TANGER Ltd., [et al.]. — Ostrava : TANGER Ltd., cop. 2015. — ISBN: 978-80-87294-58-1. — S. 79–80. — Pełny tekst na dołączonym CD-ROMie. — S. [1–6] poz. 3991. — Wymagania systemowe: Adobe Reader. — Bibliogr. s. [6], Abstr. — W bazie Web of Science ISBN: 978-80-87294-62-8 oraz zakres stron: 1246–1251

Autorzy (4)

Słowa kluczowe

aluminium alloysECAPplastic consolidationmechanical properties

Dane bibliometryczne

ID BaDAP90045
Data dodania do BaDAP2015-06-25
Rok publikacji2015
Typ publikacjimateriały konferencyjne (aut.)
Otwarty dostęptak
Konferencja24th international conference on Metallurgy and materials

Abstract

The main objective of severe plastic deformation (SPD) methods is to obtain material with ultra-fine grained microstructure. Large deformations introduced during SPD processes result in extensive refinement of initial coarse microstructure which has significant influence on overall mechanical properties of such materials. In this work 413.0 aluminum alloy has been subjected to extrusion and equal channel angular pressing (ECAP). Metal chips obtained from machining process have been pre-compacted into a form of cylindrical billets and then extruded at elevated temperature into longitudinal square profile with cross section of 10 x 10 mm. In the second part of the experiment samples cut from this extrudate has been subjected to ECAP deformation through the 90 degrees die. Mechanical properties were determined by uniaxial tensile tests and microhardness measurements has been performed. Structural observations did not reveal any significant changes in particles size after ECAP but enhancement of mechanical properties has been noticed and attributed to the work hardening of the aluminum matrix.

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