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同步辐射X射线成像法原位研究Al-15%Cu合金柱状晶-等轴晶转变以及无轴柱状枝晶生长(英文) 被引量:2
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作者 李发国 东青 +5 位作者 张佼 戴永兵 付亚楠 谢红兰 尹付成 孙宝德 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第7期2112-2116,共5页
利用上海光源同步辐射装置(SSRF),通过原位及实时探测研究Al-15%Cu合金定向凝固。结果表明:外部热扰动激发柱状晶-等轴晶转变(CET)。当固-液界面前沿的溶质边界层较薄时,枝晶尖端碎片的分离和漂浮是转变的前奏。而枝晶的三角尖端是断裂... 利用上海光源同步辐射装置(SSRF),通过原位及实时探测研究Al-15%Cu合金定向凝固。结果表明:外部热扰动激发柱状晶-等轴晶转变(CET)。当固-液界面前沿的溶质边界层较薄时,枝晶尖端碎片的分离和漂浮是转变的前奏。而枝晶的三角尖端是断裂敏感区域。只要条件合适,一种新的枝晶形貌将孕育和长大。这种枝晶没有明显的主枝臂,称为无轴柱状枝晶。 展开更多
关键词 al-15%cu合金 定向凝固 柱状晶一等轴晶转变 同步辐射X射线成像
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Effect of abruptly changing withdrawal rate on solidification microstructure in directionally solidified Al-4.5wt%Cu alloy
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作者 Yang Luyan Li Shuangming +2 位作者 Zhong Hong Ren Ruohua Fu Hengzhi 《China Foundry》 SCIE CAS 2014年第1期8-13,共6页
Al-4.5wt.%Cu alloy has been directionally solidified at constant and abruptly changing withdrawal rates, respectively. The effects of the withdrawal rate on solidification microstructure, primary dendrite arm spacing(... Al-4.5wt.%Cu alloy has been directionally solidified at constant and abruptly changing withdrawal rates, respectively. The effects of the withdrawal rate on solidification microstructure, primary dendrite arm spacing(PDAS) and liquid solute distribution in front of the solid-liquid interface were investigated. The experimental results for the PDAS at a constant withdrawal rate agree well with the values calculated by the Hunt, Trivedi and Hunt-Lu models. At an abrupt change in the withdrawal rate, the maximum to minimum ratio of the PDAS at a given solidification parameter, i.e. λ1max/λ1min, is more than 2, and the PDAS values are remarkably history-dependent. Further, the liquid-solute distribution curve based on theoretical calculation shows that the larger the initial withdrawal rate is, the smaller the minimum of liquid solute concentration in front of the solid-liquid interface is after the abrupt change in withdrawal rate. 展开更多
关键词 directional solidifi cation abrupt change of withdrawal rate primary dendrite arm spacing liquid-solute distribution al-4.5wt.%cu alloy
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