Publication | Open Access
Giant elastocaloric effect covering wide temperature range in columnar-grained Cu<sub>71.5</sub>Al<sub>17.5</sub>Mn<sub>11</sub> shape memory alloy
120
Citations
27
References
2016
Year
Materials ScienceMaterials EngineeringMagnetic Shape Memory AlloysHigh Temperature MaterialsEngineeringSurface ScienceApplied PhysicsGiant Elastocaloric EffectMetallic Functional MaterialAlloy DesignDirectional SolidificationWide Temperature RangeSolidificationReversible Martensitic TransformationAlloy CastingAlloy PhaseMicrostructureLarge Entropy Change
The elastocaloric effect in a columnar-grained Cu71.5Al17.5Mn11 shape memory alloy fabricated by directional solidification was investigated. A large entropy change of 25.0 J/kg K generated by the reversible martensitic transformation was demonstrated. The adiabatic temperature change of 12-13 K was directly measured, covering a wide temperature range of more than 100 K. The low applied stress with a specific elastocaloric ability of 100.8 K/GPa was identified and the potentially attainable operational temperature window as wide as more than 215 K was also discussed. The outstanding elastocaloric refrigeration capability, together with the low applying stress and uniform phase transformation, makes the columnar-grained Cu–Al–Mn shape memory alloy a promising material for solid-state refrigeration.
| Year | Citations | |
|---|---|---|
Page 1
Page 1