期刊文献+

Ti_P/Al粉末热压烧结组织演变过程研究

Research on evolution of Ti_P/Al composites prepared by hot-press sintered microstructure
下载PDF
导出
摘要 针对传统陶瓷类增强颗粒与金属基体间性质差异较大而致界面结合问题,探索具金属性质的Ti颗粒作为增强体制备铝基复合材料的途径。对质量比为Al:Ti=77%:23%混和粉体进行真空热压烧结,分析了烧结组织演变过程。实验结果表明:通过控制烧结条件,可获得由Al3Ti、TiAl金属间化合物及Ti构成的增强体,增强体与基体结合良好。烧结温度升高,有利于扩散反应速度以及材料性能的提高,利用真空热压烧结方法制备金属间化合物及Ti复合增强铝基复合材料的合理烧结温度为600℃-630℃。 In an attempt to improve the weak-bonding interface of metallic matrixes and conventional ceram- ic reinforcing agents, a way to prepare Al-based composites reinforced by using Ti particles was explored. Firstly, A1 and Ti powders with nominal mass ratio of 77:23 were mixed fully and heat-sintered under the condition of vacuum and some pressure. Then microstructural evolution of the resultant products during the sintering process was characterized. It shows that a kind of laminated reinforcements composed of interme- tallic A13Ti, TiA1 and metallic Ti can be formed under appropriate sintering conditions, and the reinforce- ments have good bonding with A1 matrix. The optimum sintering temperature for preparing such high-per- formance Al-based composites is from 600℃ to 630℃.
出处 《沈阳航空航天大学学报》 2013年第1期76-80,91,共6页 Journal of Shenyang Aerospace University
关键词 铝基复合材料 烧结 扩散反应 组织演变 增强体 Al-based composites sintering diffusion reaction microstructural evolution reinforcement
  • 相关文献

参考文献11

  • 1Pe'rez P, Garce' s G, Adeva P. Mechanical properties of a Mg-10 ( vol. % ) Ti composite [ J ]. Composites Science and Technology, 2004 ( 64 ) : 145 - 146.
  • 2Lu L, Lai M. O, Toh Y H, et al. Structure and properties of Mg-AI-Ti-B alloys synthesized via mechanical alloying [J].Mater Sci Eng, 2002 ( 334 ) : 163 - 172.
  • 3李小强,胡连喜,王尔德.Ti-Al二元粉末机械合金化过程中组织结构的变化[J].稀有金属材料与工程,2001,30(3):183-186. 被引量:11
  • 4刘江平,苏彦庆,徐严谨,骆良顺,郭景杰,傅恒志.Ti/Al固态扩散偶中初生相的选择(英文)[J].稀有金属材料与工程,2011,40(5):753-756. 被引量:6
  • 5陈小会,揭小平,闫洪,李岩.搅拌反应合成Al-Ti金属间化合物强化铝基复合材料的工艺[J].塑性工程学报,2011,18(3):91-94. 被引量:3
  • 6Munoz-Morris M A, Rexach J I, Lieblich M. Comparative study of A1-TiA1 composites with different inter- metallic volume fractions and particle sizes [ J ]. Intermetallics ,2005 ( 13 ) : 141 - 149.
  • 7王衍行,林均品,贺跃辉,王艳丽,陈国良.元素粉末Ti与Al反应机理的研究进展[J].材料导报,2007,21(1):83-85. 被引量:15
  • 8V. Raghavan. A1-Ti (Aluminum-Titanium) [ J ]. JPEDAV,2005 ( 26 ) : 171 - 172.
  • 9张迪,孙彦波,赵业青,等.SiC纤维增强Ti—Al金属间化合物基复合材料的界面反应[J].中国有色金属学报,2010,20(1):1056—1057.
  • 10Mordyuk B N, Silberschmidt V V, Prokopenko G I, et al. Ti particle-reinforced surface layers in Al:Effect ofparticle size on microstructure,hardness and wear[ J]. Materials characterization, 2010 ( 61 ) : 1126 - 1134.

二级参考文献48

  • 1刘峰晓,贺跃辉,刘咏,黄伯云,李智.粉末冶金制备TiAl基合金板材的研究现状及趋势[J].稀有金属材料与工程,2005,34(2):169-173. 被引量:18
  • 2LuoWenzhong(罗文中) ShenJun(沈军) MinZhixian(闵志先)et al.稀有金属材料与工程,2009,38(10):1864-1864.
  • 3Draper S L, Krause D, Lerch B. Materials Science and Engineering A[J], 2007, 464:330.
  • 4Walser R M, Bene R W. Applied Physics Letters[J], 1976, 28: 624.
  • 5Ronay M. Applied Physics Letters[J], 1983, 42:577.
  • 6Pretorius R, Vredenberg A M, Saris F W. Journal of Applied Physics[J], 1991,70:3636.
  • 7Laik A, Bhanumurthy K, Kale G B. Intermetallics[J], 2004, 12: 69.
  • 8Xu L, Cui Y Y, Hao Y L. Materials Science and Engineering A[J], 2006, 436:638.
  • 9Liu Huashan, Wang Hang, Zhu Wenjun. Journal of Materials Research[J], 2007, 22:1502.
  • 10Luo J G, Acoff V L. Materials Science and Engineering A[J], 2004, 379:164.

共引文献31

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部