Applied Physics Letters · 2000 · 197 citations · 10 references
EngineeringSevere Plastic DeformationBulk Nanocrystalline CompositesMechanical EngineeringGlass MaterialGlass-ceramicCompression TestsMicrostructure-strength RelationshipEarly StageMaterials ScienceMaterials EngineeringBulk Zr60cu20pd10al10 AlloySolid MechanicsPlasticityMicrostructureAmorphous MetalRoom TemperatureMechanical PropertiesApplied PhysicsMetallic Glasses
Mechanical properties of bulk Zr60Cu20Pd10Al10 nanocrystalline composite and Zr55Ni5Cu30Al10 metallic glass were measured by compression tests at room temperature. The Zr60Cu20Pd10Al10 as-quenched alloy obviously exhibits plastic strain while no distinct plastic deformation is recognized in the Zr55Ni5Cu30Al10 metallic glass. Moreover, the plastic strain increased by increasing the volume fraction of nanocrystals and achieved maximum value in the early stage of the nanocrystallization. High-resolution electron microscopy showed that, different from the microstructure of Zr55Ni5Cu30Al10 metallic glass, nanocrystals with main grain sizes of about 2 nm were embedded in the amorphous matrix of the bulk Zr60Cu20Pd10Al10 alloy which showed the maximum plastic strain.
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Deformation-induced nanocrystal formation in shear bands of amorphous alloys
H. Chen, Ying He, G. J. Shiflet et al. · Nature · 1994 · 507 citations
Materials Science, Engineering, Severe Plastic Deformation +7
Akihisa Inoue, Tao Zhang · Materials Transactions JIM · 1996 · 331 citations · Full text
Engineering, Glass-forming Liquid, Mechanical Engineering +21
Structure and Strength of Multilayers
B. M. Clemens, H. Kung, Scott A. Barnett · MRS Bulletin · 1999 · 328 citations