Kazuhiro Kojima
Nippon Steel
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Featured researches published by Kazuhiro Kojima.
Science and Technology of Advanced Materials | 2017
Naoto Fujiyama; Toshinobu Nishibata; Akira Seki; Hiroyuki Hirata; Kazuhiro Kojima; Kazuhiro Ogawa
Abstract The pinning effect is useful for restraining austenite grain growth in low alloy steel and improving heat affected zone toughness in welded joints. We propose a new calculation model for predicting austenite grain growth behavior. The model is mainly comprised of two theories: the solute-drag effect and the pinning effect of TiN precipitates. The calculation of the solute-drag effect is based on the hypothesis that the width of each austenite grain boundary is constant and that the element content maintains equilibrium segregation at the austenite grain boundaries. We used Hillert’s law under the assumption that the austenite grain boundary phase is a liquid so that we could estimate the equilibrium solute concentration at the austenite grain boundaries. The equilibrium solute concentration was calculated using the Thermo-Calc software. Pinning effect was estimated by Nishizawa’s equation. The calculated austenite grain growth at 1473–1673 K showed excellent correspondence with the experimental results.
Archive | 2009
Ryuichi Shimura; Toshiei Hasegawa; Kazuhiro Kojima; Tadashi Kasuya
Archive | 2010
Kazuhiro Kojima; Ryuichi Shimura; Kiyohito Sasaki
Archive | 2009
Toshinaga Hasegawa; Tadashi Kasuya; Kazuhiro Kojima; Ryuichi Shimura; 一浩 児嶋; 竜一 志村; 正 糟谷; 俊永 長谷川
Archive | 2011
Toshinaga Hasegawa; Kazuhiro Kojima; Shuichi Nakamura; Masahito Sasaki; Ryuichi Shimura; 修一 中村; 一浩 児嶋; 竜一 志村; 聖人 笹木; 俊永 長谷川
Archive | 2009
Toshinaga Hasegawa; Tadashi Kasuya; Kazuhiro Kojima; Ryuichi Shimura; 一浩 児嶋; 竜一 志村; 正 糟谷; 俊永 長谷川
Archive | 2011
Shuichi Nakamura; Kazuhiro Kojima
Quarterly Journal of The Japan Welding Society | 2004
Nobutaka Yurioka; Kazuhiro Kojima
Archive | 2010
Kazuhiro Kojima; Ryuichi Shimura; Kiyohito Sasaki
Archive | 2013
Shuichi Nakamura; Yasuhito Totsuka; Kazuhiro Kojima; Ryuichi Shimura