欢迎登录材料期刊网

材料期刊网

高级检索

采用近液相线铸造的方法浇铸了镁合金AZ91D,并与液相铸造的组织进行了对比.通过不同铸模浇铸考察了冷却速率对组织的影响,研究了近液相线铸造时的静置时间对铸造组织的影响实验结果表明,液相(600℃)铸造组织与常规铸造组织接近.高冷却速率促进了枝晶化:近液相线铸造方法有利于组织的细化和球化,但不如铝合金显著:增加冷却速率有利于组织的细化.也促进了球化的趋势.并对近液相线组织的演变机理进行了初步探讨.

参考文献

[1] Luo A, Renaud J, Nakatsugawa I, Plourde J. JOM, 1995;47 (7): 28
[2] Magers D. JOM, 1995; 47(7): 26
[3] Demmier A. Europe's automotive components business,1997; (1): 102
[4] Spencer D B. Mehrabian R, Flemings M C. Metall Trans,1972; 3:1925
[5] Nussbaum A I. Light Met Age, 1996; (6): 6
[6] Flemings M C. 6th Inter Conf on Semi-Solid Processing of Alloys and Composites, Italy, 2000: Sept. 27-29; 11
[7] Kenney M P, Courtois J A, Evans R D, Farrior G M, Kyonka C P, Koch A A, Young K P. Metals Handbook, ASM Int, Metals Park, OH, 1988; 15:327
[8] Zhang K, Liu G J, Xu J, Shi L K. Chin J Nonferrous Metall, 2000; 10(1): 47(张奎,刘国钧.徐骏.石力开.中国有色金属学报,2000;10(1):47)
[9] Charles V. Metall Trans B, 1992; 23B(4): 189
[10] Osawa Y, Takamori S, Arakane G, Umezawa O, Sato A,Ohashi O. Foundry, 2000; 72(3): 187(大泽嘉昭.高森晋.荒金吾郎.梅泽修.佐藤彰,大桥修.铸造工学.2000;72(3):187)
[11] Young K P, Kyonka C P, Courtois J A. US Patent, US 4,415, 374, 1983
[12] Robert M H. Trans Jpn Foundrymen's Soc. 1993; 12:45
[13] Wan G, Witulski T, Hirt G. Metall Ital, 1994; 86:29
[14] Xia K, Tausig G. Mater Sci Eng, 1998; A246:1
[15] Hitomi T, Yuasa A, Kamado S, Kojima Y. Jpn Inst Light Met, 1992; 42:504(人见高久,由浅明,镰土重晴,小岛阳.轻金属,1992;42:504)
[16] Kamado S, Yuasa A, Hitomi T, Kojima Y. Jpn Inst Light Met, 1992; 42:734(镰土重晴,由浅明,人见高久,小岛阳,轻金属.1992;42:734)
[17] Sekihara K, Ohnishi S, Kamado S, Kojima Y. Jpn Inst Light Met, 1995; 45:516(关原一敏,大西智.镰土重晴,小岛阳.轻金属,1995;45:516)
[18] Sekihara K, Ohnishi S, Kamado S, Kojima Y. Jpn Inst Light Met, 1995; 45:560(关原一敏,大西智,镰土重晴,小岛阳.轻金属,1995;45: 560)
[19] Matsui S, Sekihara K, Kamado S, Kojima Y. Jpn Inst Light Met, 1995; 45:15(松井伸司,关原一敏,镰土重晴,小岛阳.轻金属,1995;45:15)
[20] Ohnishi S, Hirata K, Kamado S, Kojima Y. Jpn Inst Light Met, 1996; 46:644(大西智,平田幸四郎,镰土重晴,小岛阳.轻金属,1996;46:644)
[21] Hirata K, Fufuike W, Rudi R S, Kamado S, Kojima Y.Jpn Inst Light Met, 1997; 47:672(平田幸四郎.福池涉,Rudi R S,镰土重晴,小岛阳.轻金属,1997;47:672)
[22] Polzinger R, Kaufmann H, Uggowitzer P J. In: Chiarmaetta G L, Rosso M eds, 6th Inter Conf on SemiSolid Processing of Alloys and Composites, Turin, Italy:Edimet Spa-Via Corfu 102, 2000: Sept. 27-29; 85
[23] Wagener W, Hartmann D. In: Chiarmaetta G L, Rosso M eds, 6th Inter Conf on Semi-Solid Processing of Alloys and Composites, Italy: Edimet Spa-Via Corfu 102, 2000:Sept. 27-29; 301
[24] Gebelin J C, Suery M, Favier D. Mater Sci Eng, 1999;A272:134
[25] Tissier A, Apelian D. J Mater Sci, 1990; 25:1184
[26] A Ohno. Solidification of Metals. Tiba: Qiyin Publication, 1977; 101:69(大野笃美.金属凝固学,千叶:地人书馆,1977;101:69)
[27] Le Q C, Cui J Z. Light Alloy Fabr Technol, 1997; 25(4):14(乐启炽,崔建忠,轻合金加工技术,1997;25(4):14)
[28] Zhang S C, Duan H Q, Cai Q Z, Wei B K, Lin H T. Spec Foundry Nonferrous, 2000; (6): 51(张诗昌,段汉桥,蔡启舟,魏伯康,林汉同.特种铸造及有色合金,2000;(6):51)
[29] Akiyama S, Ueno I, Sakamoto M, Hirai S, Hokumoto Z.Mate R Jpn, 2000; 39(1): 72(秋山茂,上野英俊,坂本满,平井寿敏,北原晃まてりめ,2000;39(1):72)
[30] Chandran R, Sakai T, Kamado S, Kojima Y, Matsuzawa K. J Jpn Inst Light Met, 1998; 48:13
[31] Zheng L S. Casting alloy and its Smelting. Xi' an: Northwestern University Press, 1994:163(郑来苏.铸造合金及其熔炼西安:西北工业大学出版社,1994:163)
[32] Dong J. M S Dissertation, Northeastern University, 2001(董杰.东北大学硕士论文.2001:21)
[33] Kurz W, Fisher D J. Fundamentals of Solidification.Switzerland: Trans Tech Publ, 1984:22
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:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%