利用Couette型同轴双桶流变仪,对等温搅拌和重熔加热的半固态AZ91D镁合金浆料的触变性能进行了研究.实验结果表明:经过连续降温和等温搅拌,半固态浆料的表观粘度逐渐降低,并达到一个稳态值;此时,若停止搅拌剪切,并经过某一时段的等温静置,再次在某一剪切速率下搅拌时,半固态浆料的表观粘度会突然升高,然后再迅速降低,最后到达一个稳态值,呈现出典型的剪切变稀特性;延长静置时间、或增加固相分数、或降低剪切速率,再次剪切搅拌时,半固态浆料到达稳态表观粘度的时间随之增长,同时稳态表观粘度值也相应增大;重熔加热后的半固态浆料的稳态表观粘度比相同固相分数的等温搅拌的半固态浆料的稳态表观粘度低;随重熔加热保温时间的延长,半固态浆料的稳态表观粘度逐渐降低,当稳态表观粘度达到最低值后,随重熔加热保温时间的延长,稳态表观粘度又逐渐增大.
参考文献
[1] | Bradley N L, Wieland R D, Schafer W J, Niemi A N. US Patent, No.5040589, 1989 |
[2] | Frederick P S, Bradley N L, Erickson S C. Adv Mater Proc, 1988, 134(4): 53 |
[3] | Decker R F, Carnahan R D, Vining R, Eldener E. In:Kirkwood D H, Kapranos P eds., Proc of the 4th Int Conf on Semi-Solid Processing of Alloys and Composites, Department of Engineering Materials, University of Sheffield,UK, 1996:221 |
[4] | Leng T. In: Chiarmetta G L, Rosso M eds., Proc of the 6th Int Conf on Semi-Solid Processing of Alloys and Composites, Materials Science and Chemical Engineering Department, Politecnico DI Torino, Italy, 2000:215 |
[5] | Peng H S, Hsu W M. In: Chiarmetta G L, Rosso M eds.,Proc of the 6th Int Conf on Semi-Solid Processing of Alloys and Composites, Materials Science and Chemical Engineering Department, Politecnico DI Torino, Italy, 2000:313 |
[6] | Ji S, Fan Z, Liu G, Song S H. In: Tsutsui Y, Kiuchi M,Ichikawa Keds., Proc of the 7th Int Conf on Semi-Solid Processing of Alloys and Composites, National Institute of Advanced Industrial Science and Technology, Japan Society for Technology of Plasticity, Japan, 2002:683 |
[7] | Flemings M C. Metall Trans, 1991; 22A: 957 |
[8] | Li Y J, Mao W M, Zhen Z S, Zhong X Y. J Uni Sci Technol Beijing (English Edition), 2001; 8(2): 126 |
[9] | Spencer D, Flemings M C. Metall Trans, 1972; 3:1925 |
[10] | JolyP A, Mehrabian R. J Mater Sci, 1976; (11): 1393 |
[11] | Flemings M C. Solidification Processing. New York:McGraw-Hill Book Company, 1974:34 |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%