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Study of the order-disorder phase transitions in Cu-Al-Be shape memory alloys
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Citations
17
References
1997
Year
Materials ScienceMaterials EngineeringFirst OrderOrder-disorder Phase TransitionsPhysicsEngineeringSevere Plastic DeformationApplied PhysicsCondensed Matter PhysicsMartensitic TransformationAlloy DesignMetallurgical InteractionAlloy PhaseMetallurgical SystemPhase Change MemoryCrystallographyX-ray Diffraction MeasurementsMicrostructure
Abstract We have investigated the order-disorder phase transition in Cu-Al-Be alloys close to the eutectic composition. X-ray diffraction measurements have been performed to characterize the ordered structure and to follow the evolution of the degree of long-range order with temperature. Results show that the transition is first order and takes place, on cooling, from the disordered to a D03 structure. Taking into account these results, a mean field model has been developed in order to study the superlattice formation in these alloys. Present X-ray measurements together with previous calorimetric measurements of the martensitic transition undergone by Cu-Al-Be alloys, have enabled a determination of their metastable phase diagram. It is remarkable that although the addition of a small quantity of Be has a strong effect on the martensitic transformation, it does not modify the symmetry properties of the binary Cu3Al.
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