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Hidden amorphous phase and reentrant supercooled liquid in Pd-Ni-P metallic glasses.


ABSTRACT: An anomaly in differential scanning calorimetry has been reported in a number of metallic glass materials in which a broad exothermal peak was observed between the glass and crystallization temperatures. The mystery surrounding this calorimetric anomaly is epitomized by four decades long studies of Pd-Ni-P metallic glasses, arguably the best glass-forming alloys. Here we show, using a suite of in situ experimental techniques, that Pd-Ni-P alloys have a hidden amorphous phase in the supercooled liquid region. The anomalous exothermal peak is the consequence of a polyamorphous phase transition between two supercooled liquids, involving a change in the packing of atomic clusters over medium-range length scales as large as 18 Å. With further temperature increase, the alloy reenters the supercooled liquid phase, which forms the room-temperature glass phase on quenching. The outcome of this study raises a possibility to manipulate the structure and hence the stability of metallic glasses through heat treatment.

SUBMITTER: Lan S 

PROVIDER: S-EPMC5357859 | biostudies-literature | 2017 Mar

REPOSITORIES: biostudies-literature

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Hidden amorphous phase and reentrant supercooled liquid in Pd-Ni-P metallic glasses.

Lan S S   Ren Y Y   Wei X Y XY   Wang B B   Gilbert E P EP   Shibayama T T   Watanabe S S   Ohnuma M M   Wang X-L XL  

Nature communications 20170317


An anomaly in differential scanning calorimetry has been reported in a number of metallic glass materials in which a broad exothermal peak was observed between the glass and crystallization temperatures. The mystery surrounding this calorimetric anomaly is epitomized by four decades long studies of Pd-Ni-P metallic glasses, arguably the best glass-forming alloys. Here we show, using a suite of in situ experimental techniques, that Pd-Ni-P alloys have a hidden amorphous phase in the supercooled l  ...[more]

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