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Numerical simulation of temperature field in horizontal core-filling continuous casting for copper cladding aluminum rods
by
Ya-jun Su Xin-hua Liu Yong-fu Wu Hai-you Huang Jian-xin Xie
in
Aluminum
/ Aluminum base alloys
/ Ceramics
/ Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Cladding
/ Composites
/ Computer simulation
/ Continuous casting
/ Cooling water
/ Copper
/ Corrosion and Coatings
/ Finite element method
/ Glass
/ Horizontal continuous casting
/ Hydrochlorofluorocarbons
/ Liquid-solid interfaces
/ Materials Science
/ Metallic Materials
/ Natural Materials
/ Process parameters
/ Rods
/ Surfaces and Interfaces
/ Temperature distribution
/ Thin Films
/ Tribology
/ 冷却水流量
/ 填充
/ 数值模拟
/ 有限元方法
/ 水平连续铸造
/ 温度场
/ 铜管
/ 铝棒
2013
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Numerical simulation of temperature field in horizontal core-filling continuous casting for copper cladding aluminum rods
by
Ya-jun Su Xin-hua Liu Yong-fu Wu Hai-you Huang Jian-xin Xie
in
Aluminum
/ Aluminum base alloys
/ Ceramics
/ Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Cladding
/ Composites
/ Computer simulation
/ Continuous casting
/ Cooling water
/ Copper
/ Corrosion and Coatings
/ Finite element method
/ Glass
/ Horizontal continuous casting
/ Hydrochlorofluorocarbons
/ Liquid-solid interfaces
/ Materials Science
/ Metallic Materials
/ Natural Materials
/ Process parameters
/ Rods
/ Surfaces and Interfaces
/ Temperature distribution
/ Thin Films
/ Tribology
/ 冷却水流量
/ 填充
/ 数值模拟
/ 有限元方法
/ 水平连续铸造
/ 温度场
/ 铜管
/ 铝棒
2013
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Numerical simulation of temperature field in horizontal core-filling continuous casting for copper cladding aluminum rods
by
Ya-jun Su Xin-hua Liu Yong-fu Wu Hai-you Huang Jian-xin Xie
in
Aluminum
/ Aluminum base alloys
/ Ceramics
/ Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Cladding
/ Composites
/ Computer simulation
/ Continuous casting
/ Cooling water
/ Copper
/ Corrosion and Coatings
/ Finite element method
/ Glass
/ Horizontal continuous casting
/ Hydrochlorofluorocarbons
/ Liquid-solid interfaces
/ Materials Science
/ Metallic Materials
/ Natural Materials
/ Process parameters
/ Rods
/ Surfaces and Interfaces
/ Temperature distribution
/ Thin Films
/ Tribology
/ 冷却水流量
/ 填充
/ 数值模拟
/ 有限元方法
/ 水平连续铸造
/ 温度场
/ 铜管
/ 铝棒
2013
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Numerical simulation of temperature field in horizontal core-filling continuous casting for copper cladding aluminum rods
Journal Article
Numerical simulation of temperature field in horizontal core-filling continuous casting for copper cladding aluminum rods
2013
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Overview
The steady-state temperature field of horizontal core-filling continuous casting (HCFC) for producing copper cladding aluminum rods was simulated by finite element method to investigate the effects of key processing parameters on the positions of solid-liquid interfaces (SLIs) of copper and aluminum. It is found that mandrel tube length and mean withdrawing speed have significant effects on the SLI positions of both copper and aluminum. Aluminum casting temperature (TAI) (1003-1123 K) and secondary cooling water flux (600-900 L.h-1) have little effect on the SLI of copper but cause the SLI of aluminum to move 2-4 mm. When TA1 is in a range of 1043-1123 K, the liquid aluminum can fill continuously into the pre-solidified copper tube. Based on the numerical simulation, reasonable processing parameters were determined.
Publisher
Springer Berlin Heidelberg,Springer Nature B.V,Key Laboratory for Advanced Materials Processing(Ministry of Education), Institute of Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China
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