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Two‐Step Sintering of Ceramics with Constant Grain‐Size, I. Y <sub>2</sub> O <sub>3</sub>

365

Citations

35

References

2005

Year

Abstract

Isothermal and constant‐grain‐size sintering have been carried out to full density in Y 2 O 3 with and without dopants, at as low as 40% of the homologous temperature. The normalized densification rate follows Herring's scaling law with a universal geometric factor that depends only on density. The frozen grain structure, however, prevents pore relocation commonly assumed in the conventional sintering models, which fail to describe our data. Suppression of grain growth but not densification is consistent with a grain boundary network pinned by triple‐point junctions, which have a higher activation energy for migration than grain boundaries. Long transients in sintering and grain growth have provided further evidence of relaxation and threshold processes at the grain boundary/triple point.

References

YearCitations

2000

1.5K

1949

1.2K

1961

1.1K

1950

1K

1955

860

1974

586

1960

568

1961

567

1969

472

1981

402

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