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Computer simulation for centrifugal mold filling of precision titanium castings
引用本文:~*Daming XU,Xin LI,Geying AN,Jingjie GUO,Jun JIA(School of Materials Science and Engineering,Harbin Institute of Technology,Harbin 150001,Heilongjiang,P.R. China). Computer simulation for centrifugal mold filling of precision titanium castings[J]. 中国铸造, 2004, 1(1)
作者姓名:~*Daming XU  Xin LI  Geying AN  Jingjie GUO  Jun JIA(School of Materials Science and Engineering  Harbin Institute of Technology  Harbin 150001  Heilongjiang  P.R. China)
作者单位:School of Materials Science and Engineering,Harbin Institute of Technology,Harbin 150001,Heilongjiang,P.R. China
摘    要:Computer simulation codes were developed based on a proposed mathematical model for centrifugal mold filling processes and previous computer software for 3D mold filling and solidification of castings (CASM-3D for Windows). Sample simulations were implemented for mold filling processes of precision titanium castings under gravity and different centrifugal casting techniques. The computation results show that the alloy melt has a much stronger mold filling ability for thin section castings under a centrifugal force field than that only under the gravity. A "return back" mold filling manner is showed to be a reasonable technique for centrifugal casting processes, especially for thin section precision castings.


Computer simulation for centrifugal mold filling of precision titanium castings
Daming XU,Xin LI,Geying AN,Jingjie GUO,Jun JIA. Computer simulation for centrifugal mold filling of precision titanium castings[J]. China Foundry, 2004, 1(1)
Authors:Daming XU  Xin LI  Geying AN  Jingjie GUO  Jun JIA
Abstract:Computer simulation codes were developed based on a proposed mathematical model for centrifugal mold filling processes and previous computer software for 3D mold filling and solidification of castings (CASM-3D for Windows). Sample simulations were implemented for mold filling processes of precision titanium castings under gravity and different centrifugal casting techniques. The computation results show that the alloy melt has a much stronger mold filling ability for thin section castings under a centrifugal force field than that only under the gravity. A "return back" mold filling manner is showed to be a reasonable technique for centrifugal casting processes, especially for thin section precision castings.
Keywords:centrifugal force field casting  mold filling  computer simulation  titanium alloys
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