JOURNAL ARTICLE

High-temperature deformation of polycrystalline magnesium oxide

William E. SnowdenJoseph A. Pask

Year: 1974 Journal:   Philosophical magazine Vol: 29 (3)Pages: 441-455   Publisher: Taylor & Francis

Abstract

Abstract The mechanical behaviour of two types of polycrystalline MgO was studied in compression over the temperature range 1200–1400°C. Differences in behaviour between hot-pressed specimens and specimens which were hot-pressed, then annealed, were attributed to differences in the structure of the grain boundary regions. Results indicate that creep in the hot-pressed specimens was controlled by a grain boundary sliding mechanism characterized by the movement of dislocations along grain boundaries, with a stress exponent n = l·8 and an apparent activation energy for the process of ∼70 kcal/mol. Creep in the specimens which were also annealed was found to be controlled by a dislocation climb mechanism within the grains, with a stress exponent n = 7 and an apparent activation energy of ∼110 kcal/mol.

Keywords:
Materials science Grain Boundary Sliding Creep Activation energy Grain boundary Crystallite Atmospheric temperature range Dislocation Climb Exponent Annealing (glass) Composite material Magnesium Deformation (meteorology) Deformation mechanism Metallurgy Crystallography Thermodynamics Microstructure Chemistry

Metrics

27
Cited By
3.59
FWCI (Field Weighted Citation Impact)
36
Refs
0.93
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced ceramic materials synthesis
Physical Sciences →  Materials Science →  Ceramics and Composites
High-pressure geophysics and materials
Physical Sciences →  Earth and Planetary Sciences →  Geophysics
Boron and Carbon Nanomaterials Research
Physical Sciences →  Materials Science →  Materials Chemistry

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