Pore structure, porosity and compressive strength of highly porous reaction-bonded silicon nitride ceramics with various grain morphologies

Journal of Materials Science(2019)

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摘要
Complex characteristics of the pores and properties of porous reaction-bonded Si 3 N 4 have been investigated and correlated with the microstructure of Si 3 N 4 grains. Porous ceramics with porosities of ≤ 75 vol% and α -Si 3 N 4 matte grains ( α / β phase ratio of 1.5) or α -Si 3 N 4 whiskers ( α / β phase ratio of 0.36) were prepared by in situ nitridation of silicon powder. To obtain various microstructures by α → β -phase transformation and grain morphology modification, samples were heat-treated at 1700 °C while embedded in a Si 3 N 4 powder bed containing MgO. By the growth of α -matte or β -Si 3 N 4 grains on the pore walls, highly interconnected structures with spherical cavities and unimodal pore size distributions resulted with d 50 ≈ 8.8 µm and ≈ 6.5 µm, respectively. In contrast, α -whiskers grew inside the pore cavities; thus, complex and irregular inter-particle pores appeared which generated an extra peak near d 50 ≈ 1 µm forming a bimodal pore size distribution. Compared to the α -matte grains, α -whiskers densified upon heat treatment and produced a large drop in porosity, which resulted in a structure with less interconnectivity. As a consequence of growth of fine β -rods, pore walls became relatively smooth and whisker free; thus, inter-cluster channels were modified to spherical cavities with d 50 ≈ 3.7 µm. Samples exhibiting networked whiskers and fine pores or low porosity demonstrated higher compressive strength than the interconnected structures with spherical cavities.
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关键词
silicon nitride ceramics,porosity,reaction-bonded
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