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Phase-field simulations of solidification of Al-Cu binary alloys 被引量:9

Phase-field simulations of solidification of Al-Cu binary alloys
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摘要 The dendrite growth process during the solidification of the Al-4.5%Cu binary alloy was simulated using the phase-field model, proposed by Kim et al. Solute diffusion equation and heat transfer equation were solved simultaneously. The effects of the noise on the dendrite growth, solute and temperature profile in the undercooled alloy melt were investigated. The results indicate that the noise can trigger the growth of the secondary arms, and increase the highest temperature and solute concentration, but not influence the tip operating state. The solute and temperature gradients in the tip are the highest. The dendrite growth process during the solidification of the Al-4.5%Cu binary alloy was simulated using the phase-field model, proposed by Kim et al. Solute diffusion equation and heat transfer equation were solved simultaneously. The effects of the noise on the dendrite growth, solute and temperature profile in the undercooled alloy melt were investigated. The results indicate that the noise can trigger the growth of the secondary arms, and increase the highest temperature and solute concentration, but not influence the tip operating state. The solute and temperature gradients in the tip are the highest.
出处 《中国有色金属学会会刊:英文版》 CSCD 2004年第2期291-296,共6页 Transactions of Nonferrous Metals Society of China
基金 Project (10 1760 0 9)supportedbytheNationalNaturalScienceFoundationofChina
关键词 AL-CU合金 铝合金 二元合金 铸造 凝固 数值模拟 温度场 Al-Cu alloy phase-field model dendrite growth solute profile temperature profile
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