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- W2789285042 abstract "A Cu-Fe-Cr-Si-C immiscible nanocomposite has been produced via laser induction hybrid cladding (LIHC) as a result of liquid-liquid phase transformation. The nanocomposite has a bilayer structure composed of many nanoscaled ferromagnetic (FM) α-Fe(Si) particles (∼50 nm) embedded within the Cu-rich ε-Cu matrix in the upper layer, and large amounts of nanoscaled Cu-rich ε-Cu particles (∼30 nm) dispersed within FM α-Fe(Si) matrix in the lower layer. As a result, the nanocomposite exhibits an enhanced bilayer-microhardness and a comparative corrosion resistance to pure copper produced by LIHC. Interestingly, the nanocomposite also presents a relatively high saturated magnetization (∼84.6 emu/g), a low coercivity (∼0.65 Oe), and a sudden jump of magnetization at ∼310 K during heating." @default.
- W2789285042 created "2018-03-29" @default.
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- W2789285042 date "2018-04-01" @default.
- W2789285042 modified "2023-10-18" @default.
- W2789285042 title "Phase separation and properties of Cu-Fe-Cr-Si-C immiscible nanocomposite by laser induction hybrid cladding" @default.
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- W2789285042 doi "https://doi.org/10.1016/j.jallcom.2018.01.184" @default.
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