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Academic literature on the topic 'Alliage2 co fe'
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Journal articles on the topic "Alliage2 co fe"
Djerdjare, B., and S. Lebaili. "Alliages durs de rechargement à matrice mixte Ni-Fe-Co. Phases formées et tests de corrosion." Matériaux & Techniques 94, no. 4 (2006): 261–72. http://dx.doi.org/10.1051/mattech:2007002.
Full textVERMEULEN, J. L., O. ACHER, and F. RAVEL. "Relations entre la perméabilité en fréquence et les propriétés structurales des alliages Co-Fe-Si-B déposés par pulvérisation ionique." Le Journal de Physique IV 02, no. C3 (December 1992): C3–235—C3–238. http://dx.doi.org/10.1051/jp4:1992335.
Full textDissertations / Theses on the topic "Alliage2 co fe"
Silvain, Jean-François. "Etude microstructurale de materiaux magnetiques durs et mous, de silicium polycristallin." Poitiers, 1987. http://www.theses.fr/1987POIT2295.
Full textMineau, Laurent. "Précipitation dans les alliages de cuivre dilués Cu-Fe-Ti, Cu-Co-Ti et Cu-Fe-Co-Ti." Grenoble INPG, 1991. http://www.theses.fr/1991INPG0087.
Full textBessoud, Agnès. "Analyse des interactions dans des alliages à base de métaux de transition." Grenoble INPG, 1989. http://www.theses.fr/1989INPG0091.
Full textHaddad, Rachid. "Thermodynamique des alliages liquides Fe-Ga, Co-Ga, Ni-Ga, Fe-In, Co-In, Ni-In, Ni-Sn, et Co-Ga-In." Aix-Marseille 1, 1993. http://www.theses.fr/1993AIX11032.
Full textCataldo, Laurent. "Contribution à l'élaboration et à l'optimisation d'alliages magnétiques permanents Sm-Co-Cu-Fe-Zr." Lyon 1, 1996. http://www.theses.fr/1996LYO10206.
Full textBouillaud, Pascal. "Irradiation aux ions lourds de films minces nanocristallins d'alliages FeCo et FeAl." Grenoble 2 : ANRT, 1988. http://catalogue.bnf.fr/ark:/12148/cb37612171v.
Full textBouyaghroumni, Abderrazzak. "Etude de l'électrodéposition du nickel, cobalt et des alliages Co-Ni et Co-Fe sur plaques d'aluminium." Lyon 1, 1994. http://www.theses.fr/1994LYO10196.
Full textLardé, Rodrigue. "Etude d'alliages granulaires Cu-Fe-Co : corrélation microstructure-comportements magnétiques-propriétés magnétorésistives." Rouen, 2005. http://www.theses.fr/2005ROUES045.
Full textIn 1992, the giant magnetoresistance effect was found in granular structures Cu-Co where metallic ferromagnetic particles are dispersed in a nonmagnetic metal matrix. It has been showed that this effect is very sensitive to the microstructure, particularly to the magnetic particle size, and to the distance between them. In the purpose to improve the understanding of the relationship between magnetoresistive properties and microstructure in granular compounds, the Cu80(Fe1-xCox) were elaborated by mechanical alloying, and study with different techniques. Each sample was structurally and magnetically characterized. The magnetoresistive properties were also studied. In the same way, granular ribbons Cu-SmCo5-Fe were investigated to characterize the influence of a hard magnetic phase on the magnetoresistive properties. All the results allow to correlate the microstructure and magnetic properties of the alloys to their magnetoresistive properties
Dufor, Christine. "Organogenèse de particules nanométriques de Ni, Co, Fe, Cr, Pd et d'alliages binaires Ni-Cr, Ni-Pd, Ni-Co. Caractérisations structurales et propriétés magnétiques." Toulouse 3, 1993. http://www.theses.fr/1993TOU30082.
Full textNabi, Brahim. "Nouveaux alliages Fe-Co magnétiques pour l’aéronautique, à microstructure partiellement recristallisée et à texture fortement orientée." Thesis, Paris 11, 2014. http://www.theses.fr/2014PA112018/document.
Full textMagnetic and mechanical properties of Fe-49%Co-2%V and Fe-27%Co alloys, used in electric generators and transformers of the aircraft, have been investigated as a function of heat treatments. As regards to Fe-49%Co-2%V alloy, experimental results have shown that the magnetic and mechanical properties depend on the boundary spacing, which separate the microstructure crystallites, whatever the recrystallized fraction. The coercivity depends linearly on the inverse of the boundary spacing and the yield strength follows a modified Hall Petch relationship by taking into account the sub-grain size. Moreover, a linear relationship between the frictional stress and the long range order degree measured by neutron diffraction has been established. Finally, based on the experiment, a square polynomial degree relationship between the magnetic losses and the yield stress has been proposed. As respect to the Fe-27%Co alloy, the evolution of the {011}<100> Goss component during the manufacturing process has been investigated. This sought component is favorable for the magnetic properties of the sheet. It has been found that the origin of this texture is related to its development by shearing during hot rolling. Moreover, the development of the {111}<112> cold deformation texture was studied. It has been established by coupling EBSD analysis and simulation based on VPSC model that the {110}<111> system is the predominant active slip system during the plastic deformation. During the deformation, the Goss and the rotated Cube ({001}<110>) components, rotate of 35° and 55° respectively with regard to the transverse direction. That happens in order to place the active slip plane {110} in the favorable position for gliding to develop the {111}<112> component