Characterization of a powder metallurgy SiC/Cu–Al composite
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[1] L. Gao,et al. Spheroid Growth during Sintering of Copper Coated Silicon Carbide Particles in the Fabrication of Nanocomposite , 2004 .
[2] L. Gao,et al. Effect of Cu2O on the fabrication of SiCp/Cu nanocomposites using coated particles and conventional sintering , 2004 .
[3] L. Gao,et al. Preparation and characterization of coated nanoscale Cu/SiCp composite particles , 2004 .
[4] L. Gao,et al. Thermodynamic Behavior of Copper‐Coated Silicon Carbide Particles during Conventional Heating and Spark Plasma Sintering , 2003 .
[5] T. Goto,et al. Oxidation of Boron Carbide-Silicon Carbide Composite at 1073 to 1773 K , 2003 .
[6] Byung Gon Kim,et al. Effects of thermal processing on thermal expansion coefficient of a 50 vol.% SiCp/Al composite , 2001 .
[7] Christopher W. San Marchi,et al. “Assessment of Metal Matrix Composites for Innovations” — intermediate report of a European Thematic Network , 2001 .
[8] Hyo Sug Lee,et al. The fabrication process and mechanical properties of SiCp/Al–Si metal matrix composites for automobile air-conditioner compressor pistons , 2001 .
[9] V. Sarin,et al. Mullite interfacial coatings for SiC fibers , 2001 .
[10] T. Wen. Oxidation of SiC and Its Effect on the Interface Stability of SiC/Fe , 2001 .
[11] Chongmu Lee,et al. Statistical evaluation of strength for die-cast SiCp/Al alloy composites , 2000 .
[12] I. Sinclair,et al. Microstrucure and strengthening of Al–Li–Cu–Mg alloys and MMCs: I. Analysis and Modelling of Microstructural changes , 1999 .
[13] Seh Chun Lim,et al. The tribological properties of Al–Cu/SiCp metal–matrix composites fabricated using the rheocasting technique , 1999 .
[14] M. Gu,et al. Structure and amorphization of the oxide on the silicon carbide surface in an SiCp/Al composite , 1999 .
[15] M. Gupta,et al. Effect of silicon carbide volume fraction on the work hardening behaviour of thermomechanically processed aluminium-based metal–matrix composites , 1999 .
[16] E. Lavernia,et al. Mechanical properties and fracture behavior of layered 6061/SiCp composites produced by spray atomization and co-deposition , 1998 .
[17] F. Mohamed. On the creep strengthening of SiC particulates in SiC-Al composites , 1997 .
[18] P. Prangnell,et al. The effect of particle distribution on damage formation in particulate reinforced metal matrix composites deformed in compression , 1996 .
[19] D. Watt,et al. A numerical analysis of the effects of reinforcement content on strength and ductility in Al(SiC)p MMCs , 1996 .
[20] D. Lloyd,et al. Effects of particle morphology and spacing on the strain fields in a plastically deforming matrix , 1996 .
[21] J. Shang,et al. Fatigue crack tip opening behavior in particulate reinforced Al-alloy composites , 1996 .
[22] F. Mohamed,et al. Creep strengthening in a discontinuous SiC-Al composite , 1995 .
[23] S. Hong,et al. Effects of vacuum hot pressing parameters on the tensile properties and microstructures of SiC-2124 Al composites , 1995 .
[24] A. Samuel,et al. Effect of solidification rate and metal feedability on porosity and SiCAl2O3 particle distribution in an Al-Si-Mg (359) alloy , 1995 .
[25] T. Srivatsan,et al. The quasi-static fracture behavior of an aluminum alloy metal-matrix composite , 1995 .
[26] S. Corbin,et al. The influence of particle distribution on the mechanical response of a particulate metal matrix composite , 1994 .
[27] P. Withers,et al. An introduction to metal matrix composites , 1993 .