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- W2938559301 abstract "AlBi alloys are potential lead-free sliding bearing alloys. Owing to their phase separation and segregation characteristics, the multicomponent designing of these alloys is challenging. In this study, we added small amounts of Sn, Si, and Cu to a hypermonotectic Al92Bi8 alloy and investigated its low alloying mechanism. Sn had a refining effect on the Bi-rich phase of the Al92Bi8 alloy. (Sn) phase forms and distributes in the Bi-rich phase through the ternary eutectic reaction. Although Si and Cu coarsened the Bi-rich phase severely, the addition of 1 wt% of each of these significantly improved the mechanical properties of the Al92Bi8 alloy. The strengthening effect of Si resulted in the formation (through a ternary monotectic reaction) and distribution of the (Si) phase in the Al-rich matrix. In Al92Bi8, 1 wt% Cu was not enough to form a ternary monotectic reaction. A fine θAl2Cu phase precipitated from the Al-rich matrix along the solvus during cooling. The precipitation of the θAl2Cu phase and the solution strengthening of Cu were responsible for the strengthening effect in Al92Bi8. The refining effect of Sn and the strengthening effects of Cu and Si can be realized in Al92Bi8 by adding Sn, Si, and Cu together." @default.
- W2938559301 created "2019-04-25" @default.
- W2938559301 creator A5039954007 @default.
- W2938559301 creator A5058993912 @default.
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- W2938559301 date "2019-05-01" @default.
- W2938559301 modified "2023-10-16" @default.
- W2938559301 title "Effects of Sn, Si, and Cu addition on the microstructure and properties of hypermonotectic Al92Bi8 alloy" @default.
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- W2938559301 doi "https://doi.org/10.1016/j.msea.2019.04.016" @default.
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