Effects of Al(MnFe)Si dispersoids with different sizes and number densities on microstructure and ambient/elevated-temperature mechanical properties of extruded Al-Mg-Si AA6082 alloys with varying Mn content

被引:65
作者
Rakhmonov, Jovid [1 ]
Liu, Kun [1 ]
Rometsch, Paul [2 ]
Parson, Nick [2 ]
Chen, X-Grant [1 ]
机构
[1] Univ Quebec Chicoutimi, Dept Appl Sci, Saguenay, PQ G7H 2B1, Canada
[2] Arvida Res & Dev Ctr, Saguenay, PQ G7S 4K8, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
Al-Mg-Si AA6082 alloy; Extrusion; Al(MnFe)Si dispersoids; Microstructure; Mechanical properties;
D O I
10.1016/j.jallcom.2020.157937
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The effects of Al(MnFe)Si dispersoids, with different sizes and number densities, on the evolution of microstructure and ambient/elevated-temperature mechanical properties of extruded AA6082 alloys, with varying Mn content, under T5 conditions, were investigated. Compared to the low density of coarse dispersoids formed during conventional homogenization, the high density of fine dispersoids formed during a new low-temperature homogenization was more effective in increasing the material's resistance to plastic deformation during extrusion, resulting in the dissolution of more constituent Mg2Si particles into the alpha-Al matrix. A large amount of beta '', some beta' precipitates and fine dispersoids co-existed in the alpha-Al matrix of 0.5% Mn containing alloy, which afforded this alloy a substantial increase in ambient-temperature yield strength of 65-75 MPa under T5 conditions compared to the base alloy without dispersoids. A further increase in the Mn content decreased the number density of the beta '' precipitates, resulting in a decline in the mechanical properties. Upon thermal exposure at 300 degrees C for 100 h, beta ''/beta' fully transformed into an undesirable equilibrium beta phase and lost their strengthening effect, while fine and dense dispersoids became the dominant strengthener, leading to a 55-70% increase in the elevated-temperature yield strength relative to the alloys either without dispersoids or with coarse dispersoids. Dispersoid strengthening was more pronounced at 0.7% Mn addition as further increasing the Mn content mainly contributed to the fraction of insoluble Mn-containing intermetallics. (C) 2020 Elsevier B.V. All rights reserved.
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页数:12
相关论文
共 38 条
[1]   FOIL THICKNESS MEASUREMENTS FROM CONVERGENT-BEAM DIFFRACTION PATTERNS [J].
ALLEN, SM .
PHILOSOPHICAL MAGAZINE A-PHYSICS OF CONDENSED MATTER STRUCTURE DEFECTS AND MECHANICAL PROPERTIES, 1981, 43 (02) :325-335
[2]   Precipitates in aluminium alloys [J].
Andersen, Sigmund J. ;
Marioara, Calin D. ;
Friis, Jesper ;
Wenner, Sigurd ;
Holmestad, Randi .
ADVANCES IN PHYSICS-X, 2018, 3 (01) :790-813
[3]   The effect of processing and Mn content on the T5 and T6 properties of AA6082 profiles [J].
Birol, Y .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2006, 173 (01) :84-91
[4]   The effect of through thickness texture variation on the anisotropic mechanical response of an extruded Al-Mn-Fe-Si alloy [J].
Chen, Jingqi ;
Poole, Warren J. ;
Parson, Nick C. .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2018, 730 :24-35
[5]   Effect of microadditions of Mn and Mo on dual L12- and α-precipitation in a dilute Al-Zr-Sc-Er-Si alloy [J].
De Luca, Anthony ;
Shu, Shipeng ;
Seidman, David N. .
MATERIALS CHARACTERIZATION, 2020, 169
[6]   The superposition of strengthening contributions in engineering alloys [J].
de Vaucorbeil, A. ;
Poole, W. J. ;
Sinclair, C. W. .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2013, 582 :147-154
[7]   Microstructure evolution during homogenization of Al-Mn-Fe-Si alloys: Modeling and experimental results [J].
Du, Q. ;
Poole, W. J. ;
Wells, M. A. ;
Parson, N. C. .
ACTA MATERIALIA, 2013, 61 (13) :4961-4973
[8]   The precipitation sequence in Al-Mg-Si alloys [J].
Edwards, GA ;
Stiller, K ;
Dunlop, GL ;
Couper, MJ .
ACTA MATERIALIA, 1998, 46 (11) :3893-3904
[9]   Effect of natural ageing or pre-ageing on the evolution of precipitate structure and strength during age hardening of Al-Mg-Si alloy AA 6016 [J].
Engler, O. ;
Marioara, C. D. ;
Aruga, Y. ;
Kozuka, M. ;
Myhr, O. R. .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2019, 759 :520-529
[10]   Interaction between molybdenum and manganese to form effective dispersoids in an Al-Si-Cu-Mg alloy and their influence on creep resistance [J].
Farkoosh, A. R. ;
Chen, X. Grant ;
Pekguleryuz, M. .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2015, 627 :127-138