Effect of heat treatment of alumina granules on the compaction behavior and properties of green and sintered bodies
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K. Uematsu | M. Naito | K. Nakahira | T. Hotta | N. Shinohara | Yong-Ick Cho | M. Okumiya | Shigemi Katori
[1] J. S. Reed,et al. Influence of Granule Character on Strength and Weibull Modulus of Sintered Alumina , 2004 .
[2] K. Uematsu,et al. Seasonal Variation of Microstructure and Sintered Strength of Dry‐Pressed Alumina , 2004 .
[3] K. Uematsu,et al. Morphological Changes in Process-Related Large Pores of Granular Compacted and Sintered Alumina , 2004 .
[4] K. Uematsu,et al. Variation of the microstructure and fracture strength of cold isostatically pressed alumina ceramics with the alteration of dewaxing procedures , 2000 .
[5] K. Uematsu,et al. Formation mechanisms of processing defects and their relevance to the strength in alumina ceramics made by powder compaction process , 1999 .
[6] K. Uematsu,et al. Characterization of processing pores and their relevance to the strength in alumina ceramics , 1999 .
[7] K. Uematsu,et al. Origin of strength change in ceramics associated with the alteration of spray dryer , 1999 .
[8] K. Uematsu,et al. Effect of seasons on density, strength of alumina , 1999 .
[9] H. Kamiya,et al. Microscopic analysis on the consolidation process of granule beds , 1998 .
[10] K. Uematsu. Immersion microscopy for detailed characterization of defects in ceramic powders and green bodies , 1996 .
[11] Hideo Takahashi,et al. Influence of Granule Character and Compaction on the Mechanical Properties of Sintered Silicon Nitride , 1996 .
[12] Hideo Takahashi,et al. Influence of Slurry Flocculation on the Character and Compaction of Spray‐Dried Silicon Nitride Granules , 1995 .
[13] K. Uematsu,et al. Effect of Moisture on the Structure and Fracture Strength of Ceramic Green Bodies , 1994 .
[14] H. Takahashi,et al. Microstructure evolution and mechanical strength of silicon nitride ceramics , 1994 .
[15] K. Uematsu,et al. Liquid Immersion-Polarized Light Microscopy as a Powerful Tool in the Research of Ceramic Processing , 1993 .
[16] K. Uematsu,et al. Direct Study of the Behavior of Flaw‐Forming Defect in Sintering , 1992 .
[17] Z. Kato,et al. Effect of Forming Pressure on the Internal Structure of Alumina Green Bodies Examined with Immersion Liquid Technique , 1991 .
[18] Charles G. Sammis,et al. An automaton for fractal patterns of fragmentation , 1991, Nature.
[19] K. Uematsu,et al. Direct observation of internal structure in spray-dried alumina granules , 1990 .
[20] Z. Kato,et al. Direct Observation Method for Internal Structure of Ceramic Green Body , 1990 .
[21] F. Lange,et al. Powder Processing Science and Technology for Increased Reliability , 1989 .
[22] J. S. Reed,et al. Particle and Granule Parameters Affecting Compaction Efficiency in Dry Pressing , 1988 .
[23] Frederick F. Lange,et al. Sinterability of Agglomerated Powders , 1984 .
[24] G. Messing,et al. CHARACTERIZATION OF CERAMIC POWDER COMPACTION. , 1982 .
[25] J. Halloran,et al. COMPACTION OF SPRAY-DRIED POWDERS. , 1982 .
[26] Yukitoshi Oka,et al. DETERMINATION OF THE TENSILE STRENGTH OF ROCK BY A COMPRESSION TEST OF AN IRREGULAR TEST PIECE , 1966 .