Preparation and mechanical properties of Al2O3 reinforced by submicrometer Co particles

被引:28
作者
Tai, WP [1 ]
Watanabe, T [1 ]
机构
[1] Kyushu Natl Ind Res Inst, Dept Inorgan Composite Mat, Saga 8410052, Japan
关键词
D O I
10.1023/A:1004493830194
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Al2O3/Co composites were fabricated by vacuum hot-pressing a mixture of alpha-Al2O3 powder and a fine cobalt powder. Submicron-sized cobalt particles were uniformly dispersed into the Al2O3 matrix, and the dispersed type was a more inter-/intragranular one with increases of cobalt content up to 40 wt % Co addition. The growth of cobalt particles occurred with increasing cobalt content. At 50 wt % Co addition, however, the growth as well as coalescence of cobalt particles occurred. The phases formed in the Al2O3/Co composites were f-Co(fcc), h-Co(hcp), alpha-Al2O3, and a small amount of graphite. Significant improvements in bending strength (from 341 to 771 MPa) and fracture toughness (from 3.7 to 6.7 MPa . m(1/2)) of the Al2O3/40 wt % Co(23 vol % Co) composite compared to monolithic Al2O3 were achieved by dispersing submicron-sized Co particles into the Al2O3 matrix. The improvement in bending strength was attributed to the compressive thermal residual stress in the matrix Al2O3 induced by the mismatch of the coefficients of thermal expansion (CTE) between the matrix Al2O3 grains and cobalt particles during cooling from hot-pressing temperature. The fracture tough ness of the composite was enhanced by crack bridging, crack deflection, and compressive thermal residual stress. (C) 1998 Kluwer Academic Publishers.
引用
收藏
页码:5795 / 5801
页数:7
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