采用反应自生法制备颗粒增强不同含C量的Ti-11Al合金基复合材料。利用X射线衍射、OM和SEM研究复合材料的微观组织,结果表明:当合金中的C含量增加到一定程度后,合金的基体由α+α2两相变为单相α2基体;颗粒相由单一的TiC变为Ti3AlC和TiC 两相;颗粒形貌由短板条状向不发达树枝晶和等轴晶状发展。结合相图分析了组织变化的原因。
参考文献
[1] | H Liew;G D W Smith;A Cerezo;D J Larson .[J].Materials Science and Engineering,1999,A270:9-13. |
[2] | D G Konizer;M H Loretto .[J].Acta Materialia,1989,37(02):397-406. |
[3] | D G Konizer;M H Loretto .[J].Materials Science and Engineering,1989,A107:217-223. |
[4] | W R Wrzesinski .[J].Materials Science and Technology,1990,6(02):187-191. |
[5] | S Ranganath;T Roy;R S Nishra .[J].Materials Science and Technology,1996,12(03):219-226. |
[6] | J Q Jiang;T S Lim;Y J Kim;B K Kim H S Chung .[J].Materials Science and Technology,1996,12(04):362-365. |
[7] | D Hu;M H Loretto .[J].Journal of Alloys and Compounds,1994,209:167-173. |
[8] | G. LIU;D. ZHU;J.K. SHANG .Enhanced Fatigue Crack Growth Resistance at Elevated Temperature in TiC/Ti-6Al-4V Composite: Microcrack-Induced Crack Closure[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,1995(1):159-166. |
[9] | 吕维洁,张小农,张荻,吴人洁,卞玉君,方平伟.原位合成TiC和TiB增强钛基复合材料[J].材料工程,1999(08):9-11. |
[10] | G Cam;H M Flower;D R F West .[J].Materials Science and Technology,1991,7(05):505-511. |
[11] | M A Pietzka;J C Schuster .[J].Journal of Phase Equilibria,1994,15(04):392-400. |
[12] | Thaddeus B Massalski.Binary Alloy Phase Diagrams[M].American Society for M etals Metals Park Ohio |
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