Publications/原著論文

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2022

1. Hirobumi Tobe, Shunsuke Kojima, Eiichi Sato, “Facilitation of detwinning through controlling crystal structure in Ti-Zr-Ni-Pd high temperature shape memory alloys”, Acta Materialia 229 (2022): 117811.
2. Fei Shen Ong, Ryotaro Nishi, Hirobumi Tobe, Eiichi Sato, “Strength optimization of two-step-bonded Ti-6Al-4V/Si3N4 joint with Nb interlayer via transient-liquid-phase bonding and active-metal brazing”, Journal of the European Ceramic Society, 42.6 (2022): 2707-2717.

2021

1. Naoki Fujita, Tatsuya Nakatsuji, Sunao Hasegawa, Naoko Ikeo, Eiichi Sato, Toshiji Mukai, “Microstructural Evolution in Magnesium after Hyper-Velocity Impact of Alumina Projectile”, Materials transactions 62.9 (2021): 1401-1406.
2. Shien Ri, Takeshi Yoshida, Hiroshi Tsuda, Eiichi Sato, “Optical three-dimensional displacement measurement based on moiré methodology and its application to space structures”, Optics and Lasers in Engineering, 148 (2022): 106752.
3. Fei Shen Ong, Bastian Rheingans, Kenta Goto, Hirobumi Tobe, Takahito Ohmura, Jolanta Janczak-Rusch, Eiichi Sato, “Residual stress induced failure of Ti-6Al-4V/Si3N4 joints brazed with Ag-Cu-Ti filler: The effects of brazing zone's elasto-plasticity and ceramics' intrinsic properties”, Journal of the European Ceramic Society, 41.13 (2021): 6319-6329.
4. Amit Patel, Eiichi Sato, Takeshi Takagi, Naohiro Shichijo, “Bending fatigue behavior in an advanced SiC/SiC ceramic matrix composite component at elevated temperature in air”, Composites Part C: Open Access 5 (2021): 100127.

2020

1. Hiroshi Masuda, Eiichi Sato, “Diffusional and dislocation accommodation mechanisms in superplastic materials”, Acta Materialia, 197 (2020): 235-252.
2. Fei Shen Ong, Hirobumi Tobe, Go Fujii, Eiichi Sato, “Microstructural evolution and mechanical characterization of Nb-interlayer-inserted Ti–6Al–4V/Si3N4 joints brazed with AuNiTi filler”, Materials Science and Engineering A, 778 (2020): 139093.
3. Hirobumi Tobe, Yuichi Matsuki, Shinsuke Takeuchi, Eiichi Sato, “Deployable Rocket Nozzle Utilizing Superelastic Titanium Alloy Sheet”, Materials Transactions, 61 (2020): 68-71.
4. Nobuaki Kawai, Mikio Nagano, Sunao Hasegawa, Eiichi Sato, “In-situ observation of damage evolution in polycarbonate subjected to hypervelocity impact”, International Journal of Impact Engineering, 142 (2020): 103584.

2019

1. Fei Shen Ong, Hirobumi Tobe, Eiichi Sato, “Intermetallics evolution and fracture behavior of Nb interlayer inserted Si3N4/Ti joints brazed with AgCuTi filler”, Materials Science and Engineering A, 762 (2019): 138096.
2. Hiroshi Masuda, Hirobumi Tobe, Eiichi Sato, Yoshito Sugino, Shigeharu Ukai,“Diffusional mass flux accommodating two-dimensional grain boundary sliding in ODS ferritic steel”, Acta Materialia, 176 (2019): 63-72.
3. Hiroshi Masuda, Hirobumi Tobe, Toru Hara, Eiichi Sato,“Three-dimensional characterization of superplastic grain boundary sliding inside Al-Zn-Mg-Cu alloy sheet”, Scripta Materialia, 164 (2019): 82-85.
4. Mina Blume, Myriam Brochu, Hirobumi Tobe, Eiichi Sato, “Creep-fatigue behavior of annealed Cu-Cr-Zr alloy tested at 650K and 750K”, Journal of Japan Institute of Copper, 58(1) (2019): 268-272.

2018

1. Hiroshi Masuda, Takaaki Kanazawa, Hirobumi Tobe, Eiichi Sato,“Dynamic anisotropic grain growth during superplasticity in Al–Mg–Mn alloy”, Scripta Materialia, 149 (2018): 84-87.
2. Hiroshi Masuda, Takaaki Kanazawa, Hirobumi Tobe, Eiichi Sato, “Dynamic anisotropic grain growth during superplasticity in quasi-single phase aluminium alloys”, 13th International Conference on Superplasticity in Advanced Materials ICSAM 2018, 2018.
3. Eiichi Sato, Hiroshi Masuda, Yoshito Sugino, Shigeharu Ukai, “Local Accommodation Processes of Superplastic Grain Boundary Sliding: Their Direct Observation in Two-Dimensional Grain Boundary Sliding”, Defect and Diffusion Forum, 385 (2018): 155-160.
4. Eiichi Sato, Kenta Higane, Hiroshi Masuda, Koichi Kitazono, “Four Regions in Low-Temperature Creep of Ultrafine-Grained Aluminum”, Proc. 16th Int. Aluminum Alloys Conference (ICAA16), 2018.
5. 戸部裕史,御手洗容子“高温形状記憶合金の現状と展望”,金属,第88巻第8号649-656頁,2018.
6. 戸部裕史,道上啓亮,澤井秀次郎,佐藤英一,田中伸彦,三島弘行,松尾哲也,白岩大次郎,野中吉紀,“セラミックス/金属接合スラスタの接合部強度評価”,航空宇宙技術, 17 (2018) 97-103.
7. Yuichi Matsuki, Hirobumi Tobe, and Eiichi Sato,“Effect of Heat-treatment Conditions on Microstructure and Shape Memory Properties of Ti-4.5Al-3V-2Fe-2Mo Alloy”, Proceedings of the International Conference on Martensitic Transformations: Chicago, Springer, Cham, (2018): 271-274.
8. 山本鴻司, 出口雅也, 戸部裕史, 佐藤英一,“Cu-Cr-Zr系合金のクリープ疲労における逆遷移クリープ”,銅と銅合金, 57 (2018) 25-29.
9. Masaya Deguchi, Koji Yamamoto, Hirobumi Tobe, Eiichi Sato, “Transient creep behavior and dislocation cell structure developed during creep-fatigue deformation of fully annealed Cu-Cr-Zr alloy”, Internatinal Journal of Fatigue, 116 (2018): 156-162.
10. Keita Sekiguchi, Hiroshi Masuda, Hirobumi Tobe and Eiichi Sato,“Continuous Dynamic Recrystallization in Dual-Phase Titanium Alloy in Superplasticity”, Defect and Diffusion Forum, 385 (2018): 126-130.
11. Ryoma Kamikawa, Shoki Ukai, S. Kasai, Naoki Oono, Shenghua Zhang, Yoshito Sugino, Hiroshi Masuda, Eiichi Sato, “Cooperative grain boundary sliding in creep deformation of FeCrAl-ODS steels at high temperature and low strain rate”, Journal of Nuclear Materials, 511 (2018): 591-597.

2017

1. Hiroshi Masuda, Hirobumi Tobe, Eiichi Sato, Yoshito Sugino, Shigeharu Ukai, “Transgranular dislocation activities and substructural evolutions accommodating two-dimensional grain boundary sliding in ODS ferritic steel”, Acta Materialia, 132 (2017): 245-254.
2. 比金健太, 増田紘士, 戸部裕史, 北薗幸一, 佐藤英一,“超微細粒アルミニウムの低温領域におけるクリープ機構”,軽金属, 67 (2017): 228-233.
3. 金澤孝昭, 増田紘士, 戸部裕史, 筧幸次, 佐藤英一,“超塑性Al-Mg-Mn合金における連続動的再結晶の初期過程”,軽金属, 67 (2017): 95-100.

2016

1. Hiroshi Masuda, Hirobumi Tobe, Eiichi Sato, Yoshito Sugino, Shigeharu Ukai,“Two-dimensional grain boundary sliding and mantle dislocation accommodation in ODS ferritic steel.”, Acta Materialia, 120 (2016): 205-215.
2. Masaya Deguchi, Hirobumi Tobe, Eiichi Sato,“Damage propagation mechanism in low-cycle creep fatigue of Cu-Cr-Zr alloy”, International Journal of Fatigue, 87 (2016): 351-358.
3. Eiichi Sato, Hiroshi Masuda, Yoshito Sugino, Shigeharu Ukai, “Direct observation of two-dimensional grain boundary sliding and switching in ODS ferritic steel”, Materials Science Forum, 838-839 (2016): 43-50.
4. 戸部裕史,佐藤英一,“Ti-4.5Al-3V-2Fe-2Mo合金の形状記憶特性に及ぼす熱処理温度の影響”,軽金属, 66 (2016): 174-179.
5. Hirobumi Tobe, Eiichi Sato,“Shape Memory Behavior of Superplastic Ti-4.5Al-3V-2Fe-2Mo Alloy”, Proceedings of the 13th World Conference on Titanium (eds V. Venkatesh, A. L. Pilchak, J. E. Allison, S. Ankem, R. Boyer, J. Christodoulou, H. L. Fraser, M. A. Imam, Y. Kosaka, H. J. Rack, A. Chatterjee and A. Woodfield), TMS (The Minerals, Metals & Materials Society), (2016): 1577-1580.
6. R. Kamikawa, S. Ukai, N. Oono, T. Kaito, T. Torimaru, A. Kimura, S. Hayashi, H. Masuda, E. Sato, “Grain boundary sliding associated with low strain rate at 10 0 0 °C in recrystallized ODS ferritic steel”, Nuclear Materials and Energy, 9 (2016): 338-341.

2015

1. Hiroshi Masuda, Hirobumi Tobe, Eiichi Sato, Yoshito Sugino, Shigeharu Ukai, “Mantle region accommodating two-dimensional grain boundary sliding in ODS ferritic steel”, Philosophical Magazine Letters, 95 (2015): 359-366.
2. 出口雅也,堀恭暢,戸部裕史,佐藤英一,“ロケットエンジン燃焼室銅合金のクリープ疲労における損傷過程の調査”,銅と銅合金,第54巻,2015,67-72.

2014

1. Hiroshi Masuda, Satoshi Taniguchi, Eiichi Sato, Yoshito Sugino, Shigeharu Ukai, “Two-Dimensional Observation of Grain Boundary Sliding of ODF Ferritic Steel in High Temperature Tension”, Materials Transactions, 55 (2014): 1599-1605.

Before 2014

Available upon request.