Ordering kinetics evaluation of FeAl powders

In this study, time resolved X-ray diffraction experiments using synchrotron X-ray radiation have been performed to get insight on the time and temperature dependent atomic ordering of an intermetallic Fe-40Al (at.%) ball-milled powder. The target of the present study is to gain knowledge on the rap...

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Detalles Bibliográficos
Autores: Cinca i Luis, Núria, Isalgué Buxeda, Antonio|||0000-0002-4354-5831, Auguet Sangrá, Carlota E.|||0000-0002-6718-7039, Concustell, Amadeu, Cano, I. G., Guilemany Casadamon, Josep Maria, Fauth, F.
Tipo de recurso: artículo
Fecha de publicación:2017
País:España
Institución:Universitat Politècnica de Catalunya (UPC)
Repositorio:UPCommons. Portal del coneixement obert de la UPC
Idioma:inglés
OAI Identifier:oai:upcommons.upc.edu:2117/116454
Acceso en línea:https://hdl.handle.net/2117/116454
https://dx.doi.org/10.1016/j.intermet.2017.08.011
Access Level:acceso abierto
Palabra clave:Particle accelerators
Metals--Effect of high temperatures on
Coating
FeAl
Ordering
Synchrotron
Thermal spray
X-ray
Acceleradors de partícules
Metalls a altes temperatures
Àrees temàtiques de la UPC::Enginyeria dels materials::Metal·lúrgia
Descripción
Sumario:In this study, time resolved X-ray diffraction experiments using synchrotron X-ray radiation have been performed to get insight on the time and temperature dependent atomic ordering of an intermetallic Fe-40Al (at.%) ball-milled powder. The target of the present study is to gain knowledge on the rapid heating processes occurring during Thermal Spray coating processes. Present results show that in the temperature range 400 °C - 550 °C, the evolution of the order can be followed and modelled by fitting the powder diffraction patterns collected within the first minutes after fast heating. Reasonable refinements have been obtained by assuming the presence of two domains corresponding to the ordered and disordered lattices. The lattice constant changes from 0.29165 nm in the ball-milled powder at room temperature to 0.29281 nm in the ordered phase after 3000 s at 550 °C. The growth of the ordered phase is proposed to be a vacancy-related process with an activation energy of 1.04 eV. Above 550 °C, the ordering kinetics appears too fast to be resolved using the few seconds time scale of the present experiments which is in agreement to thermal spray results conditions.