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Information Journal Paper

Title

OPTIMIZED MICROSTRUCTURE OF NON-OXID CERAMICS OBTAINED BY DIFFERENT ROUTES AND THEIR CORRESPONDING MECANICAL PROPERTIES

Pages

  59-70

Abstract

 The slip-casting process and the resultant monolith are strongly dependent on the nature of the powder dispersion (powder activity, phase composition, impurity content and particle morphology). Specially, the volume loading of particle, the degree of dispersion, pH, temperature and the particle packing contribute to the microstructure of the cake. This paper will I describe results of investigation of the ability to fabricate sintered materials from I different SILICON NITRIDE powders having different properties by three method of fabrication: 1-Hot-pressing 2-Slipcasting forming followed by a natural SINTERING 3-Cold isostatic forming followed by a natural SINTERING. Evaluation is carried out on .the influence of starting powders characteristics on the forming process (green density), on the microstructural and MECHANICAL PROPERTIES of sintered materials.

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  • Cite

    APA: Copy

    KALANTAR, M., DUBOIS, J., & FANTOZZI, G.. (2001). OPTIMIZED MICROSTRUCTURE OF NON-OXID CERAMICS OBTAINED BY DIFFERENT ROUTES AND THEIR CORRESPONDING MECANICAL PROPERTIES. JOURNAL OF SCHOOL OF ENGINEERING, 13(2), 59-70. SID. https://sid.ir/paper/22573/en

    Vancouver: Copy

    KALANTAR M., DUBOIS J., FANTOZZI G.. OPTIMIZED MICROSTRUCTURE OF NON-OXID CERAMICS OBTAINED BY DIFFERENT ROUTES AND THEIR CORRESPONDING MECANICAL PROPERTIES. JOURNAL OF SCHOOL OF ENGINEERING[Internet]. 2001;13(2):59-70. Available from: https://sid.ir/paper/22573/en

    IEEE: Copy

    M. KALANTAR, J. DUBOIS, and G. FANTOZZI, “OPTIMIZED MICROSTRUCTURE OF NON-OXID CERAMICS OBTAINED BY DIFFERENT ROUTES AND THEIR CORRESPONDING MECANICAL PROPERTIES,” JOURNAL OF SCHOOL OF ENGINEERING, vol. 13, no. 2, pp. 59–70, 2001, [Online]. Available: https://sid.ir/paper/22573/en

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