Damping mechanism associated with coupling between antiferromagnetic transition and martensitic transformation
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference13 articles.
1. Elasticity and Anelasticity in Metals;Zener,1948
2. Damping capacity of metastable γ-phase in manganese-rich Mn-Fe alloys
3. Temperature Dependence of Lattice Parameters and fcc/fct/fco Transformations in Some Mn-Base Metastable γ-Phase Alloys
4. On the application of magnetomechanical models to explain damping in an antiferromagnetic copper-manganese alloy
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2. Effect of Ball Milling and Spark Plasma Sintering on Microstructure and Properties of Mn–Cu Based Damping Alloy;MATERIALS TRANSACTIONS;2021-09-01
3. Novel cast-aged MnCuNiFeZnAl alloy with good damping capacity and high usage temperature toward engineering application;Materials & Design;2016-09
4. The Investigation of Internal Friction on Antiferromagnetic Transition and Martensitic Transformation in Mn-Fe(Cu) Alloys;Solid State Phenomena;2012-01
5. The coupling between first-order martensitic transformation and second-order antiferromagnetic transition in Mn-rich γ-MnFe alloy;Philosophical Magazine;2010-01-07
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