File:Oxydation ht.svg
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Size of this PNG preview of this SVG file: 299 × 278 pixels. Other resolutions: 258 × 240 pixels | 516 × 480 pixels | 826 × 768 pixels | 1,101 × 1,024 pixels | 2,203 × 2,048 pixels.
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Summary
[edit]DescriptionOxydation ht.svg |
English: Degradation of the metal by high temperature oxidation as described by Bénard (compact oxide layer):
Français : Dégradation du métal par oxydation à haute température, telle que décrite par Bénard (couche d'oxyde compacte) :
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Date | |
Source | Own work |
Author | Cdang |
Other versions | File:Oxydation ht.png |
This W3C-unspecified vector image was created with Inkscape .
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[edit]I, the copyright holder of this work, hereby publish it under the following licenses:
Permission is granted to copy, distribute and/or modify this document under the terms of the GNU Free Documentation License, Version 1.2 or any later version published by the Free Software Foundation; with no Invariant Sections, no Front-Cover Texts, and no Back-Cover Texts. A copy of the license is included in the section entitled GNU Free Documentation License.http://www.gnu.org/copyleft/fdl.htmlGFDLGNU Free Documentation Licensetruetrue |
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Annotations InfoField | This image is annotated: View the annotations at Commons |
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English: nucleation of oxide and lateral growth by surface diffusion
Français : germination d'îlots d'oxyde et croissance latérale par diffusion de surface
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English: continuous oxide layer (depending on the Pilling-Bedworth ratio)
Français : couche d'oxyde continue (selon le rapport de Pilling-Bedworth
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English: growth of the oxide layer by diffusion of ions
Français : croissance de la couche d'oxyde par diffusion d'ions
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English: cracking and decohesion of the oxide layer
Français : rupture et décohésion de la couche d'oxyde
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 09:01, 4 February 2009 | 299 × 278 (16 KB) | Cdang (talk | contribs) | {{Information |Description={{en|1=Degradation of the metal by high temperature oxidation as described by Bénard (compact oxide layer): # adsorption and dissociation of dioxygen on the metal (not represented); # reaction between adsorbed oxygen atoms and |
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