Applied Physics Letters · 2012 · 272 citations · 26 references
EngineeringPhase Change MemoryStructural MaterialsShape Memory AlloysFatigue BehaviorSolidificationThin Film ProcessingMaterials ScienceSolid MechanicsPlasticityTinicu FilmsLow-cycle FatigueHigh Cyclic StabilityThermomechanical ProcessingSurface CharacterizationMaterial AnalysisHigh Temperature MaterialsSurface ScienceApplied PhysicsElastocaloric EffectAlloy DesignThin FilmsMechanics Of Materials
The elastocaloric effect that occurs during the stress-induced martensitic transformation in shape memory alloys is a promising mechanism in view of solid state cooling applications. It also allows for downscaling to feature sizes in the μm range, thus, being attractive for micro-cooling applications using thin film materials. In this study, elastocaloric properties of TiNi and TiNiCu films and their relation to functional fatigue were investigated. Both materials show similar effect sizes, their fatigue behavior is however different. While the temperature change in TiNi degrades by a factor of two within 150 cycles, no significant elastocaloric fatigue was found in TiNiCu.
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Elastocaloric Effect Associated with the Martensitic Transition in Shape-Memory Alloys
Erell Bonnot, R. Romero, Lluı́s Mañosa et al. · Physical Review Letters · 2008 · 544 citations · Full text