Rchr
J-GLOBAL ID:200901014689456579
Update date: Mar. 05, 2024
Shinagawa Kazunari
シナガワ カズナリ | Shinagawa Kazunari
Affiliation and department:
Job title:
Professor
Research field (1):
Material fabrication and microstructure control
Research keywords (8):
モデリングとシミュレーション
, 焼結
, 粉末
, 塑性
, Modeling and Simulation
, Sintering
, Powder
, Plasticity
Research theme for competitive and other funds (20):
- 2020 - 2023 ニッケル基超合金粉末成形体の焼結における炭素および酸素の挙動に関する解析的研究
- 2018 - 2023 Topological analysis of 3D pore distribution in sintered metals-Elucidation of a fatigue failure process of porous materials.
- 2020 - 2022 ニッケル基超合金粉末成形体の焼結における炭素および酸素の挙動に関する解析的研究
- 2019 - 2022 Modelling of sintering behavior of different metal powder mixtures and extension of hybrid analytical method for sintering deformation and microstructural evolution
- 2018 - 2021 Innovative process for high aspect ratio structure of metal injection molded products
- 2014 - 2017 PFM/DEM Analysis for Controlling Shape, Size and Microstructure of Object by Selective Laser Melting
- 2011 - 2013 Development of hybrid method for analyzing deformation and microstructural evolution in sintering process of micro-scale powder compacts
- 2007 - 2009 Construction of prototype materials database for mechanical analysis of sintering of layered mixed powder compacts
- 2004 - 2006 Establishments of sintering theory of powder metal hollow spheres and process for cell structures
- 2002 - 2003 Optimum design of graded powder compacts with microstructure through prediction of crack formation
- 2000 - 2001 Theoretical and experimental study of optimal sintering condition for flat ceramic substrates with graded porous structure
- 1994 - 1994 ファインセラミックス製品のネットシェイプ成形
- 1989 - 1991 A System for Computer Aided Design of Cold Forging Process
- 1990 - 1990 高力アルミニウム合金の超塑性鍛造における加工速度の最適化
- 焼結モデルの構築
- 傾斜発泡によるフォーム製品の形状・構造制御
- 粉末積層材の焼結過程の解析
- Micromechanical modeling of sintering
- Control of shape and cell structure of foam products by graded foaming
- Analysis of sintering process of graded powder compacts
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Papers (38):
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Isshin Ando, Kentaro Kudo, Kyosuke Hirayama, Yuji Shigeta, Kazunari Shinagawa, Akihisa Takeuchi, Masayuki Uesugi, Yukiko Ozaki. Quantitative estimation of contribution of pore size and the distance between nearest neighbour pores on high cycle fatigue (HCF) crack initiation in Ti-6Al-4V MIM-sintered materials. International Journal of Fatigue. 2023. 171
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Kentaro Kudo, Kazunari Shinagawa, Hideshi Miura. Effect of α + β region sintering on the mechanical properties of injection molded Ti-6Al-4V compacts. Mechanical Engineering Journal. 2018. 5. 4. 1-8
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Kentaro Kudo, Kazunari Shinagawa, Hideshi Miura. Evaluation of influence factors on the microstructure, static and dynamic mechanical properties of injection molded Ti-6Al-4V based compacts by multiple addition of Mo and B Elements. Funtai Oyobi Fummatsu Yakin/Journal of the Japan Society of Powder and Powder Metallurgy. 2018. 65. 145-153
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Fumihiro Wakai, Kota Katsura, Shun Kanchika, Yutaka Shinoda, Takashi Akatsu, Kazunari Shinagawa. Sintering force behind the viscous sintering of two particles. ACTA MATERIALIA. 2016. 109. 292-299
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Yuichi Yamamoto, Teruhiko Setsu, Takafumi Kusunose, Kazunari Shinagawa, Qi Feng. Hydrothermal synthesis and particle morphology control of K0.8Li0.27Ti1.73O4 with lepidocrocite-like structure. Funtai Oyobi Fummatsu Yakin/Journal of the Japan Society of Powder and Powder Metallurgy. 2016. 63. 4. 185-191
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MISC (42):
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秋武幸汰, 工藤健太郎, 吉年規治, 品川一成. 異周速粉末圧延の有限要素解析と板状粒子配向挙動のシミュレーション. 塑性加工春季講演会講演論文集(CD-ROM). 2023. 2023
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工藤健太郎, 与那覇舜, 吉年規治, 品川一成. 段付き圧粉体の焼結変形とクラック発生のその場観察. 粉体粉末冶金協会講演大会(Web). 2022. 2022
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Kentaro Kudo, Kazunari Shinagawa, Hideshi Miura. The Effects of Grain Size and Pore Size on the High Cycle Fatigue Behavior of Injection Molded Ti-6Al-4V Compacts. Advances in Powder Metallurgy & Particle Materials-2018,Proceedings of the 2018 International Conference on Powder Metallurgy & Particulate Materials, POWDERMET2018. 2018. 243-252
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SHINAGAWA Kazunari, YOSHIMURA Hidenori, MIHARA Yutaka. J0330303 Sintering Behavior of Metallic Hollow Sphere Compacts under Partial Uniaxial Pressure. Mechanical Engineering Congress, Japan. 2015. 2015. "J0330303-1"-"J0330303-3"
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J0300103 Mechanical properties of ball chain type metallic hollow sphere structure. Mechanical Engineering Congress, Japan. 2015. 2015. "J0330103-1"-"J0330103-4"
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Books (5):
-
機械屋のための分析装置ガイドブック
コロナ社 2012
-
粉体粉末冶金便覧
内田老鶴圃 2010
-
JSMEテキストシリーズ「機械材料学」
丸善 2008
-
塑性加工便覧
コロナ社 2006
-
Functionally Graded Materials in the 21st Century
Kluwer Academic Publishers 2001
Lectures and oral presentations (1):
-
Three-dimensional computer simulation of time-dependent skeletal structure evolution during liquid phase sintering
(ICC3 2010)
Education (4):
- - 1989 Nagoya University
- - 1989 Nagoya University Graduate School, Division of Engineering 金属工学及び鉄鋼工学
- - 1984 Nagoya University School of Engineering
- - 1984 Nagoya University Faculty of Engineering 金属及び鉄鋼工学
Professional career (1):
- Dr. Eng. (Nagoya University)
Work history (7):
- 2016 - 現在 Kyushu University Faculty of Engineering
- 2008 - 2016 Kagawa University Faculty of Engineering
- 2001 - 2008 Kagawa University Faculty of Engineering
- 1993 - 2001 Anan National College of Technology
- 1993 - 2001 阿南工業高等専門学校, 助教授
- 1989 - 1993 Osaka University School of Engineering Science Direct Affiliates
- 1989 - 1993 大阪大学基礎工学部, 助手
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Committee career (8):
- 2023/06 - 2024/06 日本塑性加工学会 副会長
- 2014/04 - 2024/05 粉体粉末冶金協会 理事
- 2019/06 - 2021/06 日本塑性加工学会 理事
- 2019/04 - 2021/03 日本機械学会 理事
- 2018/05 - 2020/04 粉体粉末冶金協会 副会長
- 2015/05 - 2017/04 日本塑性加工学会 理事
- 2014/04 - 2015/03 日本機械学会 機械材料・材料加工部門 部門長
- 2010/05 - 2012/05 日本塑性加工学会 理事
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Awards (13):
- 2019 - 粉体粉末冶金協会 研究進歩賞
- 2016 - 日本機械学会 機械材料・材料加工部門 功績賞
- 2015 - 粉体粉末冶金協会 研究功績賞
- 2015 - 粉体粉末冶金協会 論文賞
- 2013 - 日本機械学会 機械材料・材料加工部門 業績賞
- 2012 - 粉体粉末冶金協会 研究進歩賞
- 2012 - 日本軽金属学会中国四国支部 研究・開発奨励賞
- 2011 - 天田財団助成研究成果発表会 優秀賞
- 2011 - Tubehydro 2011 Best Paper award
- 2010 - 日本塑性加工学会 論文賞
- 2006 - 日本塑性加工学会 優秀賞 会田技術奨励賞
- 2001 - 日本セラミックス協会 2000JCerSJ優秀論文賞
- 1993 - 日本塑性加工学会 新進賞
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Association Membership(s) (8):
The American Ceramic Society
, 日本セラミック協会
, 粉体粉末冶金協会
, 日本金属学会
, 日本機械学会
, 日本鉄鋼協会
, 日本塑性加工学会
, The American Powder Metallurgy Institute
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