Anisotropic Plastic Behavior in an Extruded Long-Period Ordered Structure Mg<sub>90</sub>Y<sub>6.5</sub>Ni<sub>3.5</sub> (at.%) Alloy
The Mg<sub>90</sub>Y<sub>6.5</sub>Ni<sub>3.5</sub> alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion at high temperature. An elongated microstructure is obtained where the LPSO phase with 1...
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doaj-06235e9d67ff4295b96175ba3aa545722020-11-25T02:35:03ZengMDPI AGCrystals2073-43522020-04-011027927910.3390/cryst10040279Anisotropic Plastic Behavior in an Extruded Long-Period Ordered Structure Mg<sub>90</sub>Y<sub>6.5</sub>Ni<sub>3.5</sub> (at.%) AlloyGerardo Garces0Rafael Barea1Andreas Stark2Norbert Schell3Department of Physical Metallurgy, CENIM-CSIC, Avenida Gregorio del Amo 8, 28040 Madrid, SpainDepartamento de Ingeniería Industrial, Universidad Nebrija, Campus Dehesa de la Villa, C. Pirineos 55, 28040 Madrid, SpainInstitute of Materials Research, Helmholtz-Zentrum Geesthacht, Max-Planck-Str. 1, 21502 Geesthacht, GermanyStructural Research on New Materials, Helmholtz- Zentrum Geesthacht Outstation at DESY, Notkestraße 85, 22607 Hamburg, GermanyThe Mg<sub>90</sub>Y<sub>6.5</sub>Ni<sub>3.5</sub> alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion at high temperature. An elongated microstructure is obtained where the LPSO phase with 18R crystal structure is oriented with its basal plane parallel to the extrusion direction. Islands of α-magnesium are located between the LPSO grains. The mechanical properties of the alloy are highly anisotropic and depend on the stress sign as well as the relative orientation between the stress and the extrusion axes. The alloy is stronger when it is compressed along the extrusion direction. Under this configuration, the slip of <a> dislocations in the basal plane is highly limited. However, the activation of kinking induces an increase in the plastic deformation. In the transversal extrusion direction, some grains deform by the activation of basal slip. The difference in the yield stress between the different stress configurations decreases with the increase in the test temperature. The evolution of internal strains obtained during in-situ compressive experiments reveals that tensile twinning is not activated in the LPSO phase.https://www.mdpi.com/2073-4352/10/4/279magnesium alloyslong period stacking ordered structures (LPSO)synchrotron radiation diffraction |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gerardo Garces Rafael Barea Andreas Stark Norbert Schell |
spellingShingle |
Gerardo Garces Rafael Barea Andreas Stark Norbert Schell Anisotropic Plastic Behavior in an Extruded Long-Period Ordered Structure Mg<sub>90</sub>Y<sub>6.5</sub>Ni<sub>3.5</sub> (at.%) Alloy Crystals magnesium alloys long period stacking ordered structures (LPSO) synchrotron radiation diffraction |
author_facet |
Gerardo Garces Rafael Barea Andreas Stark Norbert Schell |
author_sort |
Gerardo Garces |
title |
Anisotropic Plastic Behavior in an Extruded Long-Period Ordered Structure Mg<sub>90</sub>Y<sub>6.5</sub>Ni<sub>3.5</sub> (at.%) Alloy |
title_short |
Anisotropic Plastic Behavior in an Extruded Long-Period Ordered Structure Mg<sub>90</sub>Y<sub>6.5</sub>Ni<sub>3.5</sub> (at.%) Alloy |
title_full |
Anisotropic Plastic Behavior in an Extruded Long-Period Ordered Structure Mg<sub>90</sub>Y<sub>6.5</sub>Ni<sub>3.5</sub> (at.%) Alloy |
title_fullStr |
Anisotropic Plastic Behavior in an Extruded Long-Period Ordered Structure Mg<sub>90</sub>Y<sub>6.5</sub>Ni<sub>3.5</sub> (at.%) Alloy |
title_full_unstemmed |
Anisotropic Plastic Behavior in an Extruded Long-Period Ordered Structure Mg<sub>90</sub>Y<sub>6.5</sub>Ni<sub>3.5</sub> (at.%) Alloy |
title_sort |
anisotropic plastic behavior in an extruded long-period ordered structure mg<sub>90</sub>y<sub>6.5</sub>ni<sub>3.5</sub> (at.%) alloy |
publisher |
MDPI AG |
series |
Crystals |
issn |
2073-4352 |
publishDate |
2020-04-01 |
description |
The Mg<sub>90</sub>Y<sub>6.5</sub>Ni<sub>3.5</sub> alloy composed almost completely of the Long-Period-Stacking-Ordered (LPSO) phase has been prepared by casting and extrusion at high temperature. An elongated microstructure is obtained where the LPSO phase with 18R crystal structure is oriented with its basal plane parallel to the extrusion direction. Islands of α-magnesium are located between the LPSO grains. The mechanical properties of the alloy are highly anisotropic and depend on the stress sign as well as the relative orientation between the stress and the extrusion axes. The alloy is stronger when it is compressed along the extrusion direction. Under this configuration, the slip of <a> dislocations in the basal plane is highly limited. However, the activation of kinking induces an increase in the plastic deformation. In the transversal extrusion direction, some grains deform by the activation of basal slip. The difference in the yield stress between the different stress configurations decreases with the increase in the test temperature. The evolution of internal strains obtained during in-situ compressive experiments reveals that tensile twinning is not activated in the LPSO phase. |
topic |
magnesium alloys long period stacking ordered structures (LPSO) synchrotron radiation diffraction |
url |
https://www.mdpi.com/2073-4352/10/4/279 |
work_keys_str_mv |
AT gerardogarces anisotropicplasticbehaviorinanextrudedlongperiodorderedstructuremgsub90subysub65subnisub35subatalloy AT rafaelbarea anisotropicplasticbehaviorinanextrudedlongperiodorderedstructuremgsub90subysub65subnisub35subatalloy AT andreasstark anisotropicplasticbehaviorinanextrudedlongperiodorderedstructuremgsub90subysub65subnisub35subatalloy AT norbertschell anisotropicplasticbehaviorinanextrudedlongperiodorderedstructuremgsub90subysub65subnisub35subatalloy |
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