International audienceThe development of residual stress in the iron-oxide layers growing on phosphated α-Fe in the temperature range 375-450°C was investigated by in-situ X-ray diffraction of synchrotron radiation during oxide growth. As such, the stress state in the oxide layer for very short oxidation times which corresponds to low thickness of the oxide layer (≤1 µm) has been determined. The microstructural state of the oxide layers is first presented. Then a detailed study of the residual strains in the oxide layers is undertaken. Correlations between the residual stress measurements and the evolution of the microstructural state leads to a better understanding of the oxidation behaviour of phosphated α-Fe. © 2004 Taylor & Francis Ltd
In oxidizing environments, the protection of metals and alloys against further oxidation at high tem...
The development of residual strains in the iron-oxide layers growing on a-Fe and g-Fe2N1-z at 673 K ...
13th International Ceramics Congress - Part E . Chapter 3: Ceramic Thin Films and Coatings Edited by...
International audienceThe development of residual stress in the iron-oxide layers growing on phospha...
International audienceIn the present work the development of residual strains in the iron-oxide laye...
International audienceIn the present work the development of strains in the iron-oxide layers growin...
International audienceIn the present work, the calculated growth stresses arising from iron oxide la...
International audienceHigh temperature oxidation of metals leads to residual stresses both in the me...
The oxidation behavior of iron polycrystals and single crystals with 110 surface orientation was s...
A metal oxidation leads to a specific strain link to the oxide growth. This growth strain is suppose...
A metal oxidation leads to a specific strain link to the oxide growth. This growth strain is suppose...
In this present work, local stress development in the iron oxide layers growing on phosphated α-Fe a...
The high temperature performance of iron aluminides depends on the formation of a prote...
In-situ XRD stress determinations have been performed during pure iron oxidation. The compressive st...
The development of residual strains in the iron-oxide layers growing on α-Fe and ε-Fe2N1-z at 673 K ...
In oxidizing environments, the protection of metals and alloys against further oxidation at high tem...
The development of residual strains in the iron-oxide layers growing on a-Fe and g-Fe2N1-z at 673 K ...
13th International Ceramics Congress - Part E . Chapter 3: Ceramic Thin Films and Coatings Edited by...
International audienceThe development of residual stress in the iron-oxide layers growing on phospha...
International audienceIn the present work the development of residual strains in the iron-oxide laye...
International audienceIn the present work the development of strains in the iron-oxide layers growin...
International audienceIn the present work, the calculated growth stresses arising from iron oxide la...
International audienceHigh temperature oxidation of metals leads to residual stresses both in the me...
The oxidation behavior of iron polycrystals and single crystals with 110 surface orientation was s...
A metal oxidation leads to a specific strain link to the oxide growth. This growth strain is suppose...
A metal oxidation leads to a specific strain link to the oxide growth. This growth strain is suppose...
In this present work, local stress development in the iron oxide layers growing on phosphated α-Fe a...
The high temperature performance of iron aluminides depends on the formation of a prote...
In-situ XRD stress determinations have been performed during pure iron oxidation. The compressive st...
The development of residual strains in the iron-oxide layers growing on α-Fe and ε-Fe2N1-z at 673 K ...
In oxidizing environments, the protection of metals and alloys against further oxidation at high tem...
The development of residual strains in the iron-oxide layers growing on a-Fe and g-Fe2N1-z at 673 K ...
13th International Ceramics Congress - Part E . Chapter 3: Ceramic Thin Films and Coatings Edited by...