Serveur d'exploration sur le nickel au Maghreb

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Texture and microstructure evolution of Fe-Ni alloy after accumulative roll bonding

Identifieur interne : 000028 ( France/Analysis ); précédent : 000027; suivant : 000029

Texture and microstructure evolution of Fe-Ni alloy after accumulative roll bonding

Auteurs : Kamel Tirsatine [Algérie] ; Hiba Azzeddine [Algérie] ; Thierry Baudin [France] ; Anne-Laure Helbert [France] ; François Brisset [France] ; Baya Alili [Algérie] ; Djamel Bradai [Algérie]

Source :

RBID : Pascal:15-0001712

Descripteurs français

English descriptors

Abstract

The texture and microstructure evolution of a Fe-36%Ni alloy processed by accumulative roll-bonding (ARB) up to ten cycles was investigated using Electron BackScattered Diffraction (EBSD) and X-ray diffraction. EBSD analysis has shown that ARB processing leads to microstructural refinement with an average grain size and aspect ratio of 0.55 μm and 0.13 respectively after 10 cycles. The deformation structure evolved to the so-called elongated ultrafine grains parallel to the rolling direction. The grain boundary misorientation gradually increased. The texture after ARB processing was characterized by the typical C shear component near the surface and the Copper/Dillamore component at mid-thickness of the sheets.


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Pascal:15-0001712

Le document en format XML

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<term>Accumulative roll bonding</term>
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<term>Fine grain structure</term>
<term>Grain boundary misorientation</term>
<term>Grain refinement</term>
<term>Grain size</term>
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<term>Microstructure</term>
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<term>Texture</term>
<term>Microstructure</term>
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<term>Affinement grain</term>
<term>Grosseur grain</term>
<term>Rapport aspect</term>
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<div type="abstract" xml:lang="en">The texture and microstructure evolution of a Fe-36%Ni alloy processed by accumulative roll-bonding (ARB) up to ten cycles was investigated using Electron BackScattered Diffraction (EBSD) and X-ray diffraction. EBSD analysis has shown that ARB processing leads to microstructural refinement with an average grain size and aspect ratio of 0.55 μm and 0.13 respectively after 10 cycles. The deformation structure evolved to the so-called elongated ultrafine grains parallel to the rolling direction. The grain boundary misorientation gradually increased. The texture after ARB processing was characterized by the typical C shear component near the surface and the Copper/Dillamore component at mid-thickness of the sheets.</div>
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