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Publication
Featured researches published by Kazunori Nakano.
Journal of The Japan Society of Powder and Powder Metallurgy | 1996
Kazunori Nakano; Masaru Inoue; Kazuyuki Koike; Ken-ichi Takagi
Ternary Cr3C2-Ni-WB cermets can be sintered to full density at temperatures lower than 1450K. The lower densification temperatures, compared with the Cr3C2-Ni system (1550K), were attributed to the liquid phase formation as the results of WB-Ni quasi-eutectic reaction prior to Cr3C2-Ni reaction. The bonding of the interface proceeds during the liquid phase sintering of the cermets. A direct reaction between the Cr3C2 particles and the substrate material should be avoided for a satisfactory sintered body of the cermet and sufficient interface bonding strength. In case of the cermets without WB, an excessive reaction occurred due to higher sintering temperatures than the reaction temperature at the interface. The direct reaction between the Cr3C2 and S45C generates a large amount of a liquid phase and causes remarkable grain coarsening of the carbides. The coarsened carbide particles were identified as a M7C3 type containing W and Fe.
Archive | 1987
Tsuneyuki Ide; Kazunori Nakano; Masaru Inoue; Yoshikazu Kondo
Archive | 1997
Yuji Yamazaki; Ken-ichi Takagi; Kazunori Nakano
Archive | 1999
Kazunori Nakano; Hirofumi Tashiro; Mari Yonetsu
Journal of The Japan Institute of Metals | 1999
Satoru Matsuo; Mari Yonetsu; Hirofumi Tashiro; Kazunori Nakano; Ken-ichi Takagi
Journal of The Japan Society of Powder and Powder Metallurgy | 1995
Yuji Yamasaki; Kazunori Nakano; Mitsuharu Okada; Ken-ichi Takagi
Journal of The Japan Society of Powder and Powder Metallurgy | 1992
Tsuneyuki Ide; Kazunori Nakano; Ken-ichi Takagi
Journal of The Japan Society of Powder and Powder Metallurgy | 1995
Yuji Yamasaki; Kazunori Nakano; Mitsuharu Okada; Ken-ichi Takagi
Journal of The Japan Society of Powder and Powder Metallurgy | 1995
Kazunori Nakano; Masaru Inoue; Ken-ichi Takagi
Journal of The Japan Society of Powder and Powder Metallurgy | 1998
Hisashi Ito; Kazunori Nakano; Ken-ichi Takagi; Hidenori Kuroki