Atomic interaction mechanism for designing the interface of W/Zr-based bulk metallic glass composites.
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ABSTRACT: The interaction between active element Zr and W damages the W fibers and the interface and decreases the mechanical properties, especially the tensile strength of the W fibers reinforced Zr-based bulk metallic glass composites (BMGCs). From the viewpoint of atomic interaction, the W-Zr interaction can be restrained by adding minor elements that have stronger interaction with W into the alloy. The calculation about atomic interaction energy indicates that Ta and Nb preferred to segregate on the W substrate surface. Sessile drop experiment proves the prediction and corresponding in-situ coating appears at the interface. Besides, the atomic interaction mechanism was proven to be effective in many other systems by the sessile drop technique. Considering the interfacial morphology, Nb was added
SUBMITTER: Li ZK
PROVIDER: S-EPMC4355671 | biostudies-literature | 2015 Mar
REPOSITORIES: biostudies-literature
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