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Microstructure and properties of hot compacted powders of aluminium alloys
Author(s) -
LITYŃSKADOBRZYŃSKA L.,
DUTKIEWICZ J.,
MAZIARZ W.,
KANCIRUK A.
Publication year - 2009
Publication title -
journal of microscopy
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.569
H-Index - 111
eISSN - 1365-2818
pISSN - 0022-2720
DOI - 10.1111/j.1365-2818.2009.03246.x
Subject(s) - microstructure , aluminium , materials science , metallurgy , aluminium powder , composite material
Summary Atomized 6061 aluminium alloy powders with and without the addition of 2 wt% Zr were milled for 80 h in a planetary ball mill and hot pressed in vacuum. The milled powders showed microhardness of about 170 HV, which increased after hot pressing up to 260 HV and up to 280 HV for powders without and with the Zr additions, respectively. Compression tests showed the high yield stress of 300 MPa obtained for the hot‐pressed sample produced from the initial powders compared with ultimate compression strength of above 800 MPa for that of the milled sample and slightly higher for that with Zr additions. The effect of hot pressing on the structure of powders was investigated using a conventional analytical and high‐resolution electron microscopy and high angle annular dark‐field scanning transmission electron microscopy combined with energy dispersive X‐ray microanalysis. The samples of initial powders hot pressed in vacuum showed a cell structure with particles of the Mg 2 Si and AlFeSi phases in intercell areas. In the milled and hot‐pressed sample, the homogeneous structure of small grains of size below 200 nm was observed. The AlFeSi and Mg 2 Si particles with size 20–100 nm were uniformly distributed as well as the Zr rich particles in the Zr containing alloy. The Zr‐rich particles containing up to 80 at% Zr were identified as a metastable fcc cubic phase with lattice parameter a = 0.48 nm.

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