日本マイクログラビティ応用学会誌
Print ISSN : 0915-3616
Validation of a Front-Tracking Model of the Columnar to Equiaxed Transition using Solidification Results from the Maxus 7 Microgravity Platform
Shaun MCFADDEN Laszlo STURZHyejin JUNGNathalie MANGELINCK NOËLHenri NGUYEN- THIGerhard ZIMMERMANNBernard BILLIABernard BILLIADavid J BROWNEDaniela VOSSDavid John JARVIS
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ジャーナル オープンアクセス

2008 年 25 巻 3 号 p. 489-

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To study the columnar-to-equiaxed transition (CET) in alloy castings, three aluminum-silicon samples were solidified onboard the MAXUS 7 sounding rocket. Temperature measurements were made during the flight and the samples were retrieved and analyzed for their solidified macrostructure. Two of the samples produced a CET while the third sample produced a mixed structure with grains nucleating on the crucible walls. A novel front tracking model of solidification and a model of the MACE test apparatus are presented. Validation of the solidification code is carried out. Cooling curves from the experiments are predicted. A simulation of the solidified macrostructure is also given for each experiment. The CET positions are predicted in agreement with the experimental results.
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© 2008 The Japan Society of Microgravity Application
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