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Continuous and directional solidification technology of titanium alloys with cold crucible
引用本文:陈瑞润 丁宏升 郭景杰 毕维生 傅恒志. Continuous and directional solidification technology of titanium alloys with cold crucible[J]. 中国有色金属学会会刊, 2006, 16(A02): 154-159
作者姓名:陈瑞润 丁宏升 郭景杰 毕维生 傅恒志
作者单位:School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China
基金项目:Acknowledgements This work was supported by the National Key Fundamental Research Development Program of China (G200067202-2) and by Natural Science Foundation of China (50395102).
摘    要:

关 键 词:钛合金 连续凝固工艺 直接凝固工艺 冷坩锅 定向凝固
收稿时间:2006-04-20
修稿时间:2006-06-30

Continuous and directional solidification technology of titanium alloys with cold crucible
CHEN Rul-run, DING Hong-sheng, GUO Jing-jie, BI Wei-sheng, FU Heng-zhi. Continuous and directional solidification technology of titanium alloys with cold crucible[J]. Transactions of Nonferrous Metals Society of China, 2006, 16(A02): 154-159
Authors:CHEN Rul-run   DING Hong-sheng   GUO Jing-jie   BI Wei-sheng   FU Heng-zhi
Abstract:The experiments of continuous and directional solidification of titanium alloys with cold crucible were carried out in a multifunctional electromagnetic cold crucible apparatus. Parameters and factors influencing the surface crack and macrostructure of titanium alloy ingots were studied. The mechanism of the parameters and factors influencing the surface crack and macrostructure of the ingots were interpreted. The results show that the surface cracks of the prepared ingots decrease with the increase of the input power from 50 to 60 kW or with the increase of the coil turns from 3 to 5 circles. The surface cracks increase with the increase of withdrawal velocity from 3 to 5 mm/min or the height of the primer from 2 to 3 cm, then decrease with the increase of withdrawal velocity from 5 to 8.7 rnm/min or the height of the primer from 3 to 4 cm. Coil turns is the most important one in all parameters effect on the surface crack, the input power is more important, then the withdrawal velocity is important and the height of the primer is the least important. Withdrawal velocity is the most important factor affecting the macrostructure, and effects of other factors on maerostructure is slight. With the decrease of velocity from 8.7 to 0.5 mm/min, the quantity of grains reduces, the grain orientation degree becomes small, and the solidification fronts change from concave to plane to convex. The ingot can be directional solidified at velocity of 1 mm/min. The ingot with free surface crack and directional macrostructure is prepared under definite conditions.
Keywords:Ti6A14V alloys   cold crucible   continuous casting   directional solidification
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