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      Effects of YAG-Phase Amount on the Microstructure and Phase Transformation during the Liquid-Phase Sintering of B-Sic

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      https://www.riss.kr/link?id=E804972

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      다국어 초록 (Multilingual Abstract)

      β-silicon carbides with yttrium aluminum garnet(YAG) of 2, 5, 10 mol% were prepared by a liquid-phase sintering, and the microstructural evolution and phase transformation were investigated during sintering as functions of liquid-phase(YAG) amount and sintering time. By increasing the amount of YAG addition in the SiC starting powder, the rate of grain growth during sintering decreases, but the apparent density and the aspect ratio of grains in sintered body increase. The phase transformation from β - to α -SiC was enhanced by increasing the liquid-phase amount, and the kinds of transformed polytypes of α-silicon carbide were dependent on the liquid-phase amount and sintering time.
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      β-silicon carbides with yttrium aluminum garnet(YAG) of 2, 5, 10 mol% were prepared by a liquid-phase sintering, and the microstructural evolution and phase transformation were investigated during sintering as functions of liquid-phase(YAG) amount an...

      β-silicon carbides with yttrium aluminum garnet(YAG) of 2, 5, 10 mol% were prepared by a liquid-phase sintering, and the microstructural evolution and phase transformation were investigated during sintering as functions of liquid-phase(YAG) amount and sintering time. By increasing the amount of YAG addition in the SiC starting powder, the rate of grain growth during sintering decreases, but the apparent density and the aspect ratio of grains in sintered body increase. The phase transformation from β - to α -SiC was enhanced by increasing the liquid-phase amount, and the kinds of transformed polytypes of α-silicon carbide were dependent on the liquid-phase amount and sintering time.

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      목차 (Table of Contents)

      • Ⅰ. Introduction
      • Ⅱ. Experimental Procedure
      • Ⅲ. Results and discussion
      • Ⅳ. Conclusion
      • Acknowledgements
      • Ⅰ. Introduction
      • Ⅱ. Experimental Procedure
      • Ⅲ. Results and discussion
      • Ⅳ. Conclusion
      • Acknowledgements
      • References
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