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- W4319781828 abstract "In order to understand the solidificationSolidification behavior and microstructural evolution of the Al–Cu–Si ternary eutectic alloyTernary eutectic alloy system, the evolution on the microstructureMicrostructure of the Al–Cu–Si ternary eutectic alloyTernary eutectic alloy with different pre-heating mold temperatures was investigated. When the mold was preheated at 500 °C, the primary Si and Al2Cu dendrites were mainly observed and (α-Al + Al2Cu) binary eutecticEutectic and needle-shaped Si phase were also developed. When the mold preheatingPreheating temperature was 300 °C, the primary Si and Al2Cu dendrites were observed with colonial regions where the (α-Al + Al2Cu + Si) ternary eutecticEutectic phase was also present. When the mold preheatingPreheating temperature was 150 °C, the bimodal structure which composed of (α-Al + Al2Cu) binary eutecticEutectic phase and (α-Al + Al2Cu + Si) ternary eutecticEutectic phases was observed When the mold preheatingPreheating temperature was changed from 500, 300, and 150 °C, Si phase undergoes the most distinctive microstructural changes. When it passed the critical cooling rate, the (α-Al + Al2Cu + Si) ternary eutecticEutectic was formed. It was concluded that the growth of Si phase was suppressed by the high cooling rate and the growth of Al and Cu containing eutecticEutectic phases, which grow cooperatively, were also suppressed. This resulted in the ternary eutectic alloyTernary eutectic alloy with a finer microstructureMicrostructure." @default.
- W4319781828 created "2023-02-11" @default.
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- W4319781828 date "2023-01-01" @default.
- W4319781828 modified "2023-10-16" @default.
- W4319781828 title "Microstructural Changes on a Ternary Al–Cu–Si Eutectic Alloy with Different Pre-heated Mold Temperatures" @default.
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- W4319781828 doi "https://doi.org/10.1007/978-3-031-22532-1_58" @default.
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