AMEYAMA Kei

J-GLOBAL         Last updated: Jun 8, 2019 at 02:44
 
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Name
AMEYAMA Kei
Affiliation
Ritsumeikan University
Section
College of Science and Engineering, Department of Mechanical Engineering
Job title
Professor
Degree
Doctor of Engineering(Kyoto University)
Other affiliation
Ritsumeikan UniversityRitsumeikan UniversityRitsumeikan UniversityRitsumeikan UniversityRitsumeikan UniversityRitsumeikan UniversityRitsumeikan University

Research Areas

 
 

Education

 
 
 - 
Mar 1979
Department of Metallurgy, Faculty of Engineering, Kyoto University
 
 
 - 
Mar 1983
"Graduate School, Division of Engineering", Kyoto University
 
 
 - 
Mar 1986
Metal Processing, Doctoral coursework completed without degree, "Graduate School, Division of Engineering", Kyoto University
 

Awards & Honors

 
May 2015
JSPM Award for Distinguished Achievements in Research, Japan Society of Powder and Powder Metallurgy 
 
Sep 2015
第63回日本金属学会論文賞 (社)日本金属学会, (社)日本金属学会
 
Apr 2009
日本コンピュータ外科学会誌論文賞, 日本コンピュータ外科学会
 
Nov 2007
日本粉末冶金工業会PM研究促進奨励賞
 
Sep 2001
第49回日本金属学会論文賞 (社)日本金属学会, (社)日本金属学会
 

Published Papers

 
調和組織制御された純Niの機械的性質に及ぼす微細組織の影響
永田勝也,堀川直樹,川畑美絵,飴山惠
日本金属学会誌   83(7)    Jul 2019
Ruixiao Zheng,Zhang, Zhang Zhe, Yue Yitan, Chen Shengyu, Xu Chen, Kei Ameyama, Chaoli Ma
Materials Research Letters   Vol.7(No.6) 217-224   Jun 2019
Ruixiao Zheng, Maowen Liu, Zhe Zhang; Kei Ameyama, Chaoli Ma
Scripta Materialia   Vol.169 76-81.   May 2019
Guodong Li, Shaoyuan Lyu, Ruixiao Zheng, Qiushi Li, Kei Ameyama, Wenlong Xiao, Chaoli Ma
Materials Science & Engineering A   Vol.755 231-234.   Apr 2019
Shoichi Kikuchi, Yuta Nakatsuka, Yoshikazu Nakai, Masashi Nakatani, Mie Ota Kawabata, Kei Ameyama
Frattura ed Integrità Strutturale   Vol.48 545-553.   Mar 2019

Books etc

 
Technological Trend for the Last 50 Years and Latest Technology in Hetero-structured Materials
Mie O Kawabata, Kei Ameyama
日本工業出版   Mar 2019   ISBN:978-4-8190-3106-6
Proceedings Book: "Int. Workshop on Bulk Nanostructured Metals" Mechanical Properties of Tool Steel / Mild Steel Composite Materials with Harmonic Structure
Y. Yamada, H. Fujiwara, H. Miyamoto and K. Ameyama
Bulk Nano Metals, Ed. By Shibata and Tsuji   Dec 2013   ISBN:978-4-9906794-0-8
Proceedings Book: "Int. Workshop on Bulk Nanostructured Metals" Mechanical Properties of Harmonic Structured Composite Material with Pure Titanium and Ti-48at%Al Alloy by MM/SPS Process
T. Kawabata, H. Fujiwara, H. Miyamoto and K. Ameyama
Bulk Nano Metals, Ed. By Shibata and Tsuji   Dec 2013   ISBN:978-4-9906794-0-8
Proceedings Book: "Int. Workshop on Bulk Nanostructured Metals" Improvement in the Mechanical Properties of a Duplex Stainless Steel by Applying a New Concept in Microstructure Design
Octav Ciuca, Shan Deng and Kei Ameyama
Bulk Nano Metals, Ed. By Shibata and Tsuji   Dec 2013   ISBN:978-4-9906794-0-8
電子顕微鏡法の実践と応用写真集
井尚志、飴山恵、他
(社)日本鉄鋼協会、(社)日本金属学会編   2000   

Conference Activities & Talks

 
Unique Mechanical Properties of Harmonic Structure Designed Materials
TMS2019, TMS 2019 Annual Meeting & Exhibition   11 Mar 2019   
IMPROVEMENT OF MECHANICAL PROPERTIES IN A HARMONIC STRUCTURE DESIGNED SUS304L STAINLESS STEEL VIA THERMOMECHANICAL PROCESSING
6th International Conference on Advanced Steels   18 Nov 2018   
Application of harmonic structure design to biomedical Co-Cr-Mo alloy
International Workshop on Giant Straining Process for Advanced Materials (GSAM2018)   2 Sep 2018   
Application of TMP to Harmonic Structure Designed Materials
International Conference on PROCESSING & MANUFACTURING OF ADVANCED MATERIALS Processing, Fabrication, Properties, Applications (THERMEC2018)   8 Jul 2018   
Unique Microstructure Evolution of Harmonic Structure Designed Metals and Alloys via Thermo-Mechanical Processing
NANO 2018   25 Jun 2018   

Teaching Experience

 

Research Grants & Projects

 
調和組織制御による革新的力学特性を有する金属材料の創製とその特性発現機構の解明
JST、産学共創基礎基盤研究
Project Year: Feb 2011 - 2015
調和組織制御による高性能金型用ハイス材の開発
A-STEP探索タイプ
Project Year: 2010 - 2010

Patents

 
特開2001-89258 : 金属を含む化合物の製造法及びその化合物
特許公開2001-316703 : 高密度アルミナセラミックスの製造方法
特許公開平9-194966 : バイモルフ型圧電アクチュエータ及び2重構造体の振動・音波遮断構造