STRENGTHENING MECHANISMS IN ALUMINUM CERAMIC PARTICLE COMPOSITE ALLOYS PRODUCED BY MECHANICAL ALLOYING

被引:28
|
作者
HASEGAWA, T [1 ]
MIURA, T [1 ]
TAKAHASHI, T [1 ]
YAKOU, T [1 ]
机构
[1] YOKOHAMA NATL UNIV,COLL EDUC,YOKOHAMA,KANAGAWA 240,JAPAN
关键词
MECHANICAL ALLOYING; POWDER METALLURGY; AL CERAMIC PARTICLE COMPOSITE ALLOYS; TENSILE DEFORMATION; ROOM-TEMPERATURE YIELD STRENGTH; STRENGTHENING MECHANISM;
D O I
10.2355/isijinternational.32.902
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Room-temperature yield strength of powder-metallurgy Al-ceramic particle composite alloys produced by mechanical alloying was analyzed from a viewpoint of microstructure which was characterized by several features: high dislocation density (in the order of 10(14) m-2), uniform dispersion of fine Al4C3 and Al2O3 particles (approximately 35 nm in size) and coarse ceramic particles (0.4-1.0-mu-m), and small grain size (approximately 0.5-mu-m). A large portion (more than 80%) of yield strength was concluded to be contributed through dispersion hardening by the line particles and particle reinforcing by the coarse particles; the contribution was greater through the former mechanism than through the latter one for a given volume fraction of particles. The former mechanism was based on detaching pinned-down dislocations at the fine particles from them, and the latter one on restricting matrix deformation by mechanical constraint around the coarse particles. Impurities in the Al matrix made a modest contribution to strength, probably through solution hardening. These mechanisms raised the strength additively. Work hardening due to a high density of dislocations introduced during processing and grain boundary strengthening due to small grain size were considered not to be principal mechanisms for determining the yield strength.
引用
收藏
页码:902 / 908
页数:7
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