Characteristics of the propagating deformation bands associated with the Portevin–Le Chatelier effect in an Al–Zn–Mg–Cu alloy

2000 ◽  
Vol 291 (1-2) ◽  
pp. 110-117 ◽  
Author(s):  
D. Thevenet ◽  
M. Mliha-Touati ◽  
A. Zeghloul
2019 ◽  
Vol 12 ◽  
pp. 867-869 ◽  
Author(s):  
M.A. Lebyodkin ◽  
D.A. Zhemchuzhnikova ◽  
T.A. Lebedkina ◽  
E.C. Aifantis

2009 ◽  
Vol 508 (1-2) ◽  
pp. 156-160 ◽  
Author(s):  
A. Chatterjee ◽  
A. Sarkar ◽  
P. Barat ◽  
P. Mukherjee ◽  
N. Gayathri

2015 ◽  
pp. 321-325
Author(s):  
Anders E. W. Jarfors ◽  
Nils-Erik Andersson ◽  
Toni Bogdanoff ◽  
Mostafa Payandeh ◽  
Salem Seifeddine ◽  
...  
Keyword(s):  
Cu Alloy ◽  

2006 ◽  
Vol 503-504 ◽  
pp. 829-834 ◽  
Author(s):  
I. Mazurina ◽  
Alexandre Goloborodko ◽  
Rustam Kaibyshev ◽  
Hiromi Miura ◽  
Taku Sakai

Microstructural evolution during equal channel angular extrusion (ECAE) was investigated in a coarse-grained dilute aluminum alloy, Al-3%Cu, at a temperature of 250oC. Scanning electron microscopy (SEM) with electron back scattering diffraction (EBSD) and optical metallography (OM) was used to reveal the structural changes in the alloy deformed up to a strain of ε=12. The microstructural evolution at initial and moderate stages of deformation is characterized by the formation of low angle boundaries and deformation bands with moderate misorientations in grain interiors. With further deformation the number and the misorientation of the deformation bands increase, finally leading to the subdivision of original grains by these bands and then the development of fine grains with an average size of about 6 μm at ε=12. The evolution of deformation bands in initial grain interiors and their role on new grain formation are discussed in detail.


1999 ◽  
Vol 266 (1-2) ◽  
pp. 175-182 ◽  
Author(s):  
D. Thevenet ◽  
M. Mliha-Touati ◽  
A. Zeghloul
Keyword(s):  
Cu Alloy ◽  

2015 ◽  
pp. 321-325
Author(s):  
Anders E. W. Jarfors ◽  
Nils-Erik Andersson ◽  
Toni Bogdanoff ◽  
Mostafa Payandeh ◽  
Salem Seifeddine ◽  
...  
Keyword(s):  
Cu Alloy ◽  

2004 ◽  
Vol 467-470 ◽  
pp. 1251-1260 ◽  
Author(s):  
Rustam Kaibyshev ◽  
I. Mazurina

The mechanisms of grain refinement during severe plastic deformation have been studied, by comparing the microstructure evolution in an AA2219 aluminium alloy, containing Al3Zr nanoscale particles, with that in a dilute Al-3%Cu alloy deformed identically by equalchannel angular extrusion (ECAE) at 250oC to a maximum strain of ~12. Transmission electron microscopy (TEM) was used on the AA2219 alloy to reveal the misorientations of deformationinduced boundaries. Microstructural evolution in the Al-3%Cu alloy was studied by electron-back scattering diffraction (EBSD) orientation mapping. It was shown that the mechanism of grain refinement in the AA2219 alloy is continuous dynamic recrystallization (CDRX) consisting of two main elementary processes. In the initial stages of plastic deformation, the formation of threedimensional arrays of low-angle boundaries (LABs) takes place. Further strain results in increasing misorientation of these boundaries providing their gradual transformation into high-angle boundaries (HABs). A fully recrystallized structure with an average grain size of ~0.9 µm is evolved after a total strain of ~12. In the dilute Al-Cu alloy the evolution of ultrafine grains with an average size of ~6 µm is attributed to the formation of deformation bands outlined by HABs and extended medium to high-angle boundaries at moderate strains. The subdivision of these deformation bands into fine grains rarely occurs through the mechanism of geometric recrystallization (GRX). In this alloy the main contribution in the grain refinement gives CDRX occurring within fibrous structural features. At e~12, a partially recrystallized structure is formed in the Al-3%Cu alloy.


2017 ◽  
Vol 132 ◽  
pp. 269-279 ◽  
Author(s):  
Yanxia Chen ◽  
Yanqing Yang ◽  
Zongqiang Feng ◽  
Bin Huang ◽  
Xian Luo ◽  
...  

1977 ◽  
Vol 41 (2) ◽  
pp. 513-521 ◽  
Author(s):  
S. H. Van Den Brink ◽  
A. Van Den Beukel ◽  
P. G. McCormick

2019 ◽  
Vol 61 (2) ◽  
pp. 296
Author(s):  
А.А. Шибков ◽  
А.А. Денисов ◽  
М.Ф. Гасанов ◽  
А.Е. Золотов ◽  
М.А. Желтов

AbstractIt has been established that the Portevin–Le Chatelier effect in the AlMg6 aluminum–magnesium alloy deformed in an aqueous medium is accompanied by an intermittent electrochemical response, such as the negative jumps of the electrode potential of the sample, which occur simultaneously with the jumps of the mechanical stress on the deformation curve. Statistical and fractal analyses of the stepwise component of the electrode potential indicate the presence of long-term correlations in the structure of the electrochemical response, which are typical for the state of self-organized criticality. A possible mechanism of the appearance of jumps of the electrode potential, which is associated with the dynamics of deformation bands, is discussed.


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