Fatigue crack propagation (FCP) behaviors were studied to understand the role of SiC particles in 10 wt pct SiCp/A2024 composites and Si particles in casting aluminum alloy A356. The results show that a few particles appeared on the fracture surfaces in SiCp/Al composites even at high AK region, which indicates that cracks propagated predominantly within the matrix avoiding SiC particles due to the high strength of the particles and the strong particle/matrix interface. In casting aluminum alloy, Si particle debonding was more prominent.Compared with SiCp/Al composite, the casting aluminum alloy exhibited lower FCP rates, but had a slight steeper slope in the Paris region. Crack deflection and branching were found to be more remarkable in the casting aluminum alloy than that in the SiCp/Al composites, which may be contributed to higher FCP resistance in casting aluminum alloy.
参考文献
[1] | D J Lloyd .[J].International Migration Review,1994,39(01):1. |
[2] | Y Sahin .[J].Materials & Design,2003,24(08):671. |
[3] | I Ozdemir;U Cocen;K Onel .[J].Composites Science and Technology,2000,60(03):411. |
[4] | Y H F Su;Y C Chen;C Y A Tsao .[J].Materials Science and Engineering A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2004,364(1-2):296. |
[5] | G Tosun;M Muratoglu .[J].Composites Science and Technology,2004,64(02):299. |
[6] | N P Hung;F Y C Boey;K A Khor;C A Oh H F Lee .[J].Journal of Materials Processing Technology,1995,48(1-4):291. |
[7] | R T Coelho;S Yamada;D K Aspinwall;M L H Wise .[J].Int J Mach Tool Manu,1995,35(05):761. |
[8] | H S Lee;J S Yeo;S H Hong;D J Yoon K H Na .[J].Journal of Materials Processing Technology,2001,113(1-3):202. |
[9] | F T Lee;J F Major;F H Samuel .[J].Fatigue Fract Eng M,1995,18(03):385. |
[10] | K. Tokaji;H. Shiota;K. Kobayashi .Effect of particle size on fatigue behaviour in SiC particulate reinforced aluminium alloy composites[J].Fatigue & Fracture of Engineering Materials and Structures,1999(4):281-288. |
[11] | S Kumai;K Yoshida;Y Higo;S Nunomura .[J].INTERNATIONAL JOURNAL OF FATIGUE,1992,14(02):105. |
[12] | P Prader;H P Degischer .[J].Materials Science and Technology,2000,16:893. |
[13] | J.Z. YI;Y.X. GAO;P.D. LEE .Scatter in Fatigue Life Due to Effects of Porosity in Cast A356-T6 Aluminum-Silicon Alloys[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2003(9):1879-1890. |
[14] | O Botstein;R Arone;B Shpigler .[J].MATERIAL SCIENCE AND ENGINEERING,1990,A128(01):15. |
[15] | K Gall;N Yang .[J].Metallurgical and Materials Transactions,1999,30A:3079. |
[16] | S Suresh .[J].Metallurgical Transactions,1983,14A:2375. |
[17] | Zhirui Wang;Ruby J Zhang .[J].Acta Metallurgica Et Materialia,1994,42(04):1433. |
[18] | K. Gall;N. Yang;M. Horstemeyer;D. L. McDowell;J. Fan .The influence of modified intermetallics and Si particles on fatigue crack paths in a cast A356 Al alloy[J].Fatigue & Fracture of Engineering Materials and Structures,2000(2):159-172. |
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