Publication | Open Access
High-Energy X-ray Diffraction Study of Liquid Structure of Metallic Glass-Forming Zr<SUB>70</SUB>Cu<SUB>30</SUB> Alloy
22
Citations
27
References
2005
Year
EngineeringGlass-forming LiquidMechanical EngineeringGlass MaterialLiquid StructureConical Nozzle LevitationMetallic Glass-forming ZrGlass TransitionMaterials ScienceMaterials EngineeringSolid MechanicsCrystallographyAmorphous MetalMicrostructureX-ray DiffractionApplied PhysicsAlloy CastingLiquid AlloyReactive Melt
High-energy X-ray diffraction experiments were performed for a metallic glass-forming Zr70Cu30 alloy in the liquid state at a high temperature. Conical nozzle levitation was applied as a containerless method of obtaining accurate structure information of a highly reactive melt. The total structure factor obtained for the liquid alloy above its melting point shows a particular shoulder on the second peak, which is probably an indication of local icosahedral short-range ordering typically observed in deeply undercooled liquids. This implies that short-range ordered clusters already exist even in the equilibrium liquid state of Zr-based metallic glass-forming alloys.
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