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AbstractAbstract
[en] The effects of irradiation on the relative phase stability of phases related by a martensitic transformation in copper based shape memory alloys were studied in this work.Different kind of particles and energies were employed in the irradiation experiments.The first kind of irradiation was performed with 2,6 MeV electrons, the second one with 170 keV and 300 keV Cu ions and the third one with swift heavy ions (Kr, Xe, Au) with energies between 200 and 600 MeV.Stabilization of the 18 R martensite in Cu-Zn-Al-Ni induced by electron irradiation was studied.The results were compared to those of the stabilization induced by quenching and ageing in the same alloy, and the ones obtained by irradiation in 18 R-Cu-Zn-Al alloys.The effects of Cu irradiation over b phase were analyzed with several electron microscopy techniques including: scanning electron microscopy (S E M), high resolution electron microscopy (H R E M), micro diffraction and X-ray energy dispersive spectroscopy (E D S). Structural changes in Cu-Zn-Al b phase into a closed packed structure were induced by Cu ion implantation.The closed packed structures depend on the irradiation fluence.Based on these results, the interface between these structures (closed packed and b) and the stability of disordered phases were analyzed. It was also compared the evolution of long range order in the Cu-Zn-Al and in the Cu-Zn-Al-Ni b phase as a function of fluence.The evolution of the g phase was also compared. Both results were discussed in terms of the mobility of irradiation induced point defects.Finally, the effects induced by swift heavy ions in b phase and 18 R martensite were studied. The results of the irradiation in b phase were qualitatively similar to those produced by irradiation with lower energies. On the contrary, nano metric defects were found in the irradiated 18 R martensite.These defects were characterized by H R E M.The characteristic contrast of the defects was associated to a local change in the chemical composition.Changes in the lattice parameters in martensite phase induced by irradiation were studied with convergent beam electron diffraction.The observed changes are not related with the conventional process of martensite stabilization
[es]
En este trabajo se estudiaron los efectos de la irradiacion sobre la estabilidad de fases que intervienen en una transformacion martensitica en aleaciones con memoria de forma de base cobre.Se emplearon diferentes tipos de particulas y de energias en los experimentos de irradiacion.El primer tipo de irradiacion fue llevado a cabo con electrones de 2,6 MeV, el segundo con iones de Cu de 170 keV y 300 keV y el tercero con iones rapidos y pesados con energias entre 200 MeV y 600 MeV (Kr, Xe, Au).En las irradiaciones con electrones se estudio su efecto sobre la estabilizacion de la fase 18R en Cu-Zn-Al-Ni.Se compararon los resultados con el proceso de estabilizacion inducido por templado y recocido en la misma aleacion y con experimentos de irradiacion en 18R-Cu-Zn-Al.En las irradiaciones con iones de Cu se caracterizaron sus efectos sobre la fase beta utilizando diversas tecnicas de microscopia electronica que incluyen: microscopia electronica de barrido (S E M), microscopia electronica de alta resolucion (H R E M), microdifraccion y microanalisis por espectroscopia de rayos X (E D S).La implantacion con iones de Cu produce un cambio de estructura de la fase b en aleaciones de Cu-Zn-Al a una fase compacta cuya estructura depende de la fluencia de irradiacion.En base a estos resultados se analizo la interfaz entre ambas estructuras (compacta y b) y la estabilidad de fases desordenadas.Asimismo se comparo la evolucion del orden de largo alcance en la fase beta de dos aleaciones de Cu-Zn-Al y Cu-Zn-Al-Ni en funcion de la fluencia.Se comparo tambien la evolucion de la precipitacion de la fase g bajo irradiacion, en ambas aleaciones.Ambos resultados fueron asociados a modelos relacionados con la movilidad de vacancias inducidas por irradiacion.Finalmente se estudiaron los efectos de irradiacion con iones pesados de alta energia sobre las fases beta y martensita 18 R.En la fase beta se encontraron resultados cualitativamente similares a los producidos por irradiacion con iones de menores energias.En cambio, en la fase martensita 18 R se encontraron defectos nanometricos, que fueron caracterizados con microscopia electronica de alta resolucion.Se asocia el contraste caracteristico de los defectos a cambios locales de composicion quimica.Se estudiaron los cambios en los parametros de red en la fase martensita inducidos por irradiacion mediante la tecnica de difraccion de electrones de haz convergente.Los cambios observados no estarian relacionados con el proceso convencional de estabilizacion de la martensitaOriginal Title
Estabilidad de fases bajo irradiacion en aleaciones con memoria de forma base Cu
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2006; 134 p; Thesis(Ms.D)
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Thesis/Dissertation
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