In the present work, the dispersion casting of Y2O3 particles in aluminum-copper alloy was investigated in terms of microstructural changes with respect to Cu contents of 20 (hypo), 33 (eutectic) and 40 (hyper)wt pct by scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). For the fabrication of Al-Cu alloy dispersed Y2O3 ceramic particles, stir casting method was employed. In case of Al-20 wt pct Cu alloy (hypoeutectic), SEM images revealed that primary Al was grown up in the beginning. After that, eutectic phase with well dispersed ceramic particles was formed. In case of eutectic composition, Y2O3 particles were uniformly dispersed in the matrix. When the Cu is added into Al up to 40 wt pct (hypereutectic), primary θ phase was grown up without any Y2O3 ceramic particles in the early stage of solidification. Thereafter,eutectic phase was formed with well dispersed ceramic particles. It can be concluded that Y2O3 ceramic particles is mostly dispersed in case of eutectic composition in Al-Cu alloy.
参考文献
[1] | R J Arsenault .[J].Material Science and Engineering,1984,44:171. |
[2] | V C Nardone;K M Prewo .[J].Scripta Metall,1986,29:43. |
[3] | A Ibrahim;F A Mohamed;E J Lavernia .[J].Journal of Materials Science,1991,26:1137. |
[4] | N.RAMAKRISHNAN .AN ANALYTICAL STUDY ON STRENGTHENING OF PARTICULATE REINFORCED METAL MATRIX COMPOSITES[J].Acta materialia,1996(1):69-77. |
[5] | J R Groza .[J].International Journal of Powder Metallurgy,1999,35:59. |
[6] | L. M. Peng;S. J. Zhu .Creep of metal matrix composites reinforced by combining nano-sized dispersoids with micro-sized ceramic particulates or whiskers (review)[J].International journal of materials & product technology,2003(1/2/3):215-254. |
[7] | R Zhong;H T Cong;P X Hou .[J].CARBON,2003,41:848. |
[8] | H Hu .[J].Scripta Materialia,1998,39:1015. |
[9] | B W Chua;L Lu;M O Lai .[J].Compd Struct,1999,47:595. |
[10] | L Hu;E Wang .[J].Material Science and Engineering,2000,A278:267. |
[11] | R A Saravanan;M K Surappa .[J].Materials Science and Engineering,2000,A276:108. |
[12] | S. C. Sharma;B. Anand;M. Krishna .Evaluation of sliding wear behaviour of feldspar particle-reinforced magnesium alloy composites[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,2000(1):33-40. |
[13] | H. Ferkel;B. L. Mordike .Magnesium strengthened by SiC nanoparticles[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2001(1/2):193-199. |
[14] | C Mayencourt;R Schaller .[J].Material Science and Engineering,2005,A325:286. |
[15] | J. Hashim;L. Looney;M. S. J. Hashmi .Metal matrix composites: production by the stir casting method[J].Journal of Materials Processing Technology,1999(0):1-7. |
[16] | H Chang;C H Pitt;G B Alxander .[J].Journal of Materials Science Letters,1993,12:215. |
[17] | Y.H. Seo;C.G. Kang .Effects of hot extrusion through a curved die on the mechanical properties of SiCp/Al composites fabricated by melt-stirring[J].Composites science and technology,1999(5):643-654. |
[18] | A R Kennedy;A E Karantzalis .[J].Material Science and Engineering,1999,A264:122. |
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