Publication | Open Access
Processing of a single-crystalline CrCoNi medium-entropy alloy and evolution of its thermal expansion and elastic stiffness coefficients with temperature
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Citations
39
References
2019
Year
EngineeringMechanical EngineeringMicrostructure-strength RelationshipElastic Stiffness CoefficientsCrconi Single CrystalPolycrystalline CrconiMaterials ScienceMaterials EngineeringSolid MechanicsThermomechanical ProcessingMicrostructureSuperalloyEquiatomic Crconi AlloyApplied PhysicsAlloy DesignAlloy PhaseMultiprincipal Element AlloyMechanics Of MaterialsThermal ExpansionHigh-entropy Alloys
The equiatomic CrCoNi alloy is regarded as a model single-phase face-centered cubic medium-entropy alloy. A CrCoNi single crystal was grown by a Bridgman technique using a Ni-base superalloy seed. The elastic stiffnesses and thermal expansion coefficient were determined between 100 K and 673 K employing resonant ultrasound spectroscopy and dilatometry, respectively. All data were found to be in excellent agreement with those reported for polycrystalline CrCoNi. A comparison of the normalized Cauchy pressure of CrCoNi with those of other alloys indicates that interatomic bonds become more directional with increasing Cr-concentration while Co and Ni promote a metallic character.
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