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- W3121681705 abstract "• Heterogeneous fibrous Fe 2 P and nt-Fe 2 P particles are embedded inside ε-Cu matrix. • TiB 2 as inoculant can refine and disperse fibrous Fe 2 P and nt-Fe 2 P particles. • TiB 2 -nanotwin enhanced hardness and wear resistance of Cu-based composite. • Fine-grain, dispersion, TBs, and precipitation strengthening were combined. • Wear mechanism includes abrasive wear, oxidation wear, and adhesive wear. To restrain the collision and coarsening of Fe-rich droplets within supercooled Cu-Fe immiscible melt, the TiB 2 particles as inoculants are introduced to produce the TiB 2 and Fe 2 P with nanotwins-reinforced Cu-based immiscible composites by selective laser melting (SLM). The Cu-based immiscible composite with heterogeneous structure is characterized by nano-/micro-scale Fe 2 P particles and micron fibrous Fe 2 P dispersed within the ε-Cu matrix. Moreover, some nanotwinned Cu (nt-Cu) particles and a high density of nanotwins are embedded within these nano-scale Fe 2 P particles, whereas some irregular α-Fe precipitated within these fibrous Fe 2 P. The addition of TiB 2 particles can refine the size of Fe 2 P and promote their homogeneous distribution within the ε-Cu matrix. As a result, the hardness and wear resistance of the TiB 2 reinforced Cu-based immiscible composite are significantly improved by the combined strengthening mechanisms of twin boundaries (TBs) strengthening, refinement strengthening, dispersion strengthening and precipitation strengthening." @default.
- W3121681705 created "2021-02-01" @default.
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- W3121681705 date "2021-05-01" @default.
- W3121681705 modified "2023-09-24" @default.
- W3121681705 title "TiB2- and Fe2P with nanotwins-reinforced Cu-based immiscible composites fabricated by selective laser melting: Formation mechanism and wear behavior" @default.
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- W3121681705 doi "https://doi.org/10.1016/j.jallcom.2021.158716" @default.
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