Published 1995 | Version v1
Book

Ductile phase toughened ceramics by partial reduction reactions in the Ni-Al-O system: Mechanical properties and effect of dopants

  • 1. Cornell Univ., Ithaca, NY (United States). Dept. of Materials Science and Engineering

Description

Partial reduction reactions in the Ni-Al-O system, starting with the spinel compound NiAl2O4, are used to form metal-ceramic microstructures in situ. Two different morphologies of nearly pure Ni particles, equiaxed and rod-like, form within a ceramic matrix depending on the choice of processing parameters. Electron microscopy studies were performed for microstructural characterization, phase identification and chemical analysis. The fracture toughness of the Ni-Al2O3 mixture was significantly improved with respect to that of the original spinel phase. It is shown that cracking at the original spinel grain boundaries, likely due to the large volume changes associated with the reduction reaction, can be avoided by the addition of small amounts of ZrO2. It is seen that ZrO2 also acts as a nucleation site for the precipitating metal and hence allows morphology control in microstructures obtained by partial reduction reactions

Additional details

Publishing Information

Publisher
Materials Research Society.
Imprint Place
Pittsburgh, PA (United States)
ISBN
1-55899-266-9
Imprint Title
Ceramic matrix composites -- Advanced high-temperature structural materials
Imprint Pagination
493 p.
Series
Materials Research Society symposium proceedings, Volume 365.
Journal Page Range
p. 125-130.

Conference

Title
1994 fall meeting of the Materials Research Society (MRS).
Dates
28 Nov - 2 Dec 1994.
Place
Boston, MA (United States).

Optional Information

Secondary number(s)
CONF-941144--.