Rchr
J-GLOBAL ID:202001017042351403   Update date: Oct. 31, 2024

Pham Anh Hoang

Pham Hoang Anh | Pham Anh Hoang
Affiliation and department:
Job title: Associate Professor
Research theme for competitive and other funds  (5):
  • 2022 - 2025 New method for preparation of nanoparticles of high entropy metal nitrides for future energy applications
  • 2018 - 2021 Selective growth of ultra-long grain in metal thin film for microelectronic application
  • 2020 - 2021 In situ and 3D Characterizations to Reveal the Recrystallization Kinetics of the New Superalloy ABD-900AM for Additive Manufacturing
  • 2020 - 2021 IN718 Ni基超合金における、フレックケル欠陥の形成に及ぼす硫黄の影響
  • 2019 - 2020 高温レーザー走査顕微鏡を用いたフレッケル欠陥の融解挙動のその場観察
Papers (36):
  • Tu Le Manh, Jose Alberto Benitez Perez, Pedro Martinez-Ortiz, Anh Hoang Pham, Thuy-Linh Phi, Meinander Kristoffer, Eero Kontturi, H’Linh Hmŏk, Hoang Thi Thanh Thuy, Nguyen Van Hieu. Nucleation and Diffusion-Controlled Growth of FeNi Permalloy Nanoparticles in a Deep Eutectic Solvent Based on Choline Chloride: Kinetic Behavior and Magnetic Property. The Journal of Physical Chemistry C. 2024. 128. 6. 2688-2704
  • Bao Trung Tran, Hoang Anh Pham, Van Toan Nguyen, Dinh Phuong Doan, Thi Thanh Thuy Hoang, Nang Xuan Ho, Duy Vinh Nguyen, Tu Le Manh. Outstanding performance of FeNiCoCr-based high entropy alloys: The role of grain orientation and microsegregation. Journal of Alloys and Compounds. 2024. 973. 172860-172860
  • Anh Hoang Pham. Nucleation and growth of metallic crystals in metallurgy and materials processing. Nucleation and Growth in Applied Materials. 2024. 101-118
  • Trung Trinh Van, Son Anh Nguyen, Prof. Dr. Gia Khanh Pham, Prof. Dr.-Ing. Christian Seidel, A.H. Pham, Anh H. Pham, Anh Hoang Pham, Hoang Anh Pham, H.A Pham, Pham Hoang Anh, Pham H.A., Cuong Nhu Phung. CHANGE IN MICROSTRUCTURE AND HARDNESS OF ADDITIVELY MANUFACTURED AISI H13 STEEL BY HEAT TREATMENT AND NITRIDING PROCESSES. Acta Metallurgica Slovaca. 2023
  • A.H. Pham, Anh H. Pham, Anh Hoang Pham, Hoang Anh Pham, H.A Pham, Pham Hoang Anh, Pham H.A. Three-dimensional Characterisation of Microstructures in Low-carbon Lath Martensite. ISIJ International. 2022. 62. 10. 1972-1980
more...
MISC (3):
  • Heat Treatment Processing of Japanese Swords Passing from Generation to Generation. ふぇらむ = Bulletin of the Iron and Steel Institute of Japan : (一社)日本鉄鋼協会会報. 2021. 26. 11. 658-663
  • Morito Shigekazu, Pham Anh Hoang, Ohba Takuya, Hayashi Taisuke, Furuhara Tadashi, Miyamoto Goro. Three Dimensional Analyses of Low Angle Boundaries in Ultra-low Carbon Lath Martensite. Materia Japan. 2016. 55. 12. 594-594
  • Pham Anh Hoang, Ohba Takuya, Morito Shigekazu, Hayashi Taisuke. New Application of Prior-austenite Reconstruction Method. Materia Japan. 2016. 55. 12. 584-584
Education (3):
  • 2011 - 2014 Shimane University Interdisciplinary Graduate School of Science and Engineering
  • 2005 - 2007 Volgograd State Technical University
  • 2001 - 2005 Volgograd State Technical University
Work history (5):
  • 2023/04 - 現在 Shimane University Faculty of Materials for Energy Associate Professor
  • 2017/04 - 現在 Shimane University Interdisciplinary Faculty of Science and Engineering Assistant Professor
  • 2016/03 - 2017/03 Shimane University Interdisciplinary Faculty of Science and Engineering
  • 2014/04 - 2016/02 Shimane University Center for The Promotion of Research
  • 2009/09 - 2014/03 Hanoi University of Science and Technology Faculty of Materials Science and Technology Lecturer
Awards (5):
  • 2024/03 - 応用物理学会 優秀論文賞 Tendency of crystal orientation rotation toward stable {001} <100> during lateral crystal growth of Si thin film sandwiched by SiO2
  • 2023/05 - 日本熱処理技術協会 口絵写真賞 日本刀に含まれるマルテンサイトの旧オーステナイト粒径解析 熱処理
  • 2016/12 - Materials Science and Engineering A Outstanding Contribution in Reviewing Award Outstanding Contribution in Reviewing Award
  • 2016/06 - Japan Association of Heat Treatment Japan Association of Heat Treatment Paper Award
  • 2016/03 - Japan Institute of Metals Best young paper award Automatic reconstruction approach for characterization of prior-austenite microstructure in various Japanese swords
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