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電子ビーム積層造形により作製したTiAl合金の熱間等方圧加圧法による高温疲労特性改善

趙 研、安田弘行、 當代光陽、 上田 実、 竹山雅夫、 中野貴由
電子ビーム積層造形により作製したTiAl合金の熱間等方圧加圧法による高温疲労特性改善
スマートプロセス学会誌, Vol.9 [4](2020年7月号)pp180-184
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多元系合金における界面偏析のフェーズフィールド解析

奥川将行,泉川大智,小泉雄一郎
多元系合金における界面偏析のフェーズフィールド解析
計算工学講演会論文集, Vol. 25 (2020) E-05-02.

Development of Ti–Zr–Hf–Y–La high-entropy alloys with dual hexagonal-close-packed structure

T. Nagase, M. Todai, T. Nakano,
Development of Ti–Zr–Hf–Y–La high-entropy alloys with dual hexagonal-close-packed structure
Scripta Materialia, 186 (2020), pp.242-246
dx.doi.org/10.1016/j.scriptamat.2020.05.033

Low Young’s Modulus and High Strength Obtained in Ti-Nb-Zr-Cr Alloys by Optimizing Zr Content

Q. Li, C. Cheng, J. Li, K. Zhang, K. Zhou, M. Nakai, Mi. Niinomi, K. Yamanaka, D. Wei, A. Chiba, T. Nakano,
Low Young’s Modulus and High Strength Obtained in Ti-Nb-Zr-Cr Alloys by Optimizing Zr Content
Journal of Materials Engineering and Performance, (2020), on line
doi.org/10.1007/s11665-020-04826-6

Bone apatite anisotropic structure control via designing fibrous scaffolds

S. Lee, F. Nagata, K. Kato, T. Nakano,
Bone apatite anisotropic structure control via designing fibrous scaffolds
RSC Advances, 10,(2020), pp.13500–13506
dx.doi.org/10.1039/D0RA01295E

Titanium as an Instant Adhesive for Biological Soft Tissue

M. Okada, E. S. Hara, A. Yabe, K Okada, Y. Shibata, Y. Torii, T. Nakano, T. Matsumoto
Titanium as an Instant Adhesive for Biological Soft Tissue
Advanced Materials Interfaces, 7[9](2020), 192089(1-7)
dx.doi.org/10.1002/admi.201902089

Crystallographic Orientation Control of 316L Austenitic Stainless Steel via Selective Laser Melting

T. Ishimoto, S. Wu, Y. Ito, S.-H. Sun, T. Nakano,
Crystallographic Orientation Control of 316L Austenitic Stainless Steel via Selective Laser Melting
ISIJ International, 60 [8](2020), on line
dx.doi.org/10.2355/isijinternational.ISIJINT-2019-744

Microstructure and Mechanical Behavior of Ti–25Nb–25Zr Alloy Prepared from Pre-Alloyed and Hydride-Mixed Elemental Powders

B. Sharma, S.K. Vajpai, M. Kawabata, T. Nakano, K Ameyama,
Microstructure and Mechanical Behavior of Ti–25Nb–25Zr Alloy Prepared from Pre-Alloyed and Hydride-Mixed Elemental Powders
Materials Transactions, 6[4](2020), pp.562-566
dx.doi.org/10.2320/matertrans.MT-MK2019001

Development of Co–Cr–Mo–Fe–Mn–W and Co–Cr–Mo–Fe–Mn–W–Ag High-Entropy Alloys Based on Co–Cr–Mo Alloys

T. Nagase, M. Todai, T. Nakano,
Development of Co–Cr–Mo–Fe–Mn–W and Co–Cr–Mo–Fe–Mn–W–Ag High-Entropy Alloys Based on Co–Cr–Mo Alloys
Materials Transactions, 61[4], (2020), pp.567-576
dx.doi.org/10.2320/matertrans.MT-MK2019002

Loading Orientation Dependence of the Formation Behavior of Deformation Kink Bands in the Mg-Based Long-Period Stacking Ordered (LPSO) Phase

K. Hagihara, T. Okamoto, R. Ueyama, M. Yamasaki, Y. Kawamura,
Loading Orientation Dependence of the Formation Behavior of Deformation Kink Bands in the Mg-Based Long-Period Stacking Ordered (LPSO) Phase
Materials Transactions, 61[5](2020), pp.821-827
dx.doi.org/10.2320/matertrans.MT-MM2019001

Selective patterning of netrin-1 as a novel guiding cue for anisotropic dendrogenesis in osteocytes

A. Matsugaki, D. Yamazaki, T. Nakano,
Selective patterning of netrin-1 as a novel guiding cue for anisotropic dendrogenesis in osteocytes
Materials Science & Engineering C, 108 (2020), 110391:pp.1-6
dx.doi.org/10.1016/j.msec.2019.110391

Design and fabrication of Ti–Zr-Hf-Cr-Mo and Ti–Zr-Hf-Co-Cr-Mo high-entropy alloys as metallic biomaterials

T. Nagase, Y. Iijima, A. Matsugaki, K. Ameyama, T. Nakano,
Design and fabrication of Ti–Zr-Hf-Cr-Mo and Ti–Zr-Hf-Co-Cr-Mo high-entropy alloys as metallic biomaterials
Materials Science and Engineering C, 107(2019), 110322:pp.1-9
dx.doi.org/10.1016/j.msec.2019.110322

Overcoming the strength-ductility trade-off by the combination of static recrystallization and low-temperature heat-treatment in Co-Cr-W-Ni alloy for stent application

K. Ueki, S. Yanagihara, K. Ueda, M. Nakai, T. Nakano, T. Narushima,
Overcoming the strength-ductility trade-off by the combination of static recrystallization and low-temperature heat-treatment in Co-Cr-W-Ni alloy for stent application
Materials Science and Engineering A, 766(2019) , 138400: pp.1-11
dx.doi.org/10.1016/j.msea.2019.138400

Low Springback and Low Young’s Modulus in Ti–29Nb–13Ta–4.6Zr Alloy Modified by Mo Addition

Q. Li Q. Qi J. Li M. Nakai M. Niinomi Y. Koizumi D. Wei K. Yamanaka T. Nakano A. Chiba X. Liu D. Pan
Low Springback and Low Young’s Modulus in Ti–29Nb–13Ta–4.6Zr Alloy Modified by Mo Addition
Materials Transactions, 60 [9],(2019), pp.1755-1762
dx.doi.org/10.2320/matertrans.ME201912

Effect of Nb Content on Microstructures and Mechanical Properties of Ti-xNb-2Fe Alloys

Q. Li, P. Miao, J. Li, M. He, M.Nakai , M. Niinomi, A. Chiba, T. Nakano, X. Liu, K. Zhou, D. Pan,
Effect of Nb Content on Microstructures and Mechanical Properties of Ti-xNb-2Fe Alloys
Journal of Materials Engineering and Performance, 28(2019), pp.5501-5508
dx.doi.org/10.1007/s11665-019-04250-5

Enhancement of plastic anisotropy and drastic increase in yield stress of Mg-Li single crystals by Al-addition followed by quenching

K. Hagihara K. Mori T. Nakano
Enhancement of plastic anisotropy and drastic increase in yield stress of Mg-Li single crystals by Al-addition followed by quenching
Scripta Materialia, 172, (2019), pp 93-97
dx.doi.org/10.1016/j.scriptamat.2019.07.012

Development of non-equiatomic Ti-Nb-Ta-Zr-Mo high-entropy alloys for metallic biomaterials

T. Hori, T. Nagase, M. Todai, A. Matsugaki, T. Nakano,
Development of non-equiatomic Ti-Nb-Ta-Zr-Mo high-entropy alloys for metallic biomaterials
Scripta Materialia, 172(2019), pp.83-87
dx.doi.org/10.1016/j.scriptamat.2019.07.011

Crystallographic Texture Formation of Pure Tantalum by Selective Laser Melting Method

O.J. Yeong T. Ishimoto S.-H. Sun T. Nakano
Crystallographic Texture Formation of Pure Tantalum by Selective Laser Melting Method
スマートプロセス学会誌、8 [4] 、「Additive Manufacturingプロセスが切り開く革新的ハードマテリアルの開発(2)」、(2019)、pp.151-154
dx.doi.org/10.7791/jspmee.8.151

Effects of Heat Treatment on Unique Layered Microstructure and Tensile Properties of TiAl Fabricated by Electron Beam Melting

M Sakata, J Y Oh, K Cho, H Yasuda, M Todai, T Nakano, A Ikeda, M Ueda, M Takeyama,
Effects of Heat Treatment on Unique Layered Microstructure and Tensile Properties of TiAl Fabricated by Electron Beam Melting
Materials Science Forum, 941 (2018) 1366-1371.
dx.doi.org/10.4028/www.scientific.net/MSF.941.1366

Microstructure and Fatigue Properties of TiAl with Unique Layered Microstructure Fabricated by Electron Beam Melting

K Cho, R Kobayashi, T Fukuoka, J Y Oh, H Yasuda, M Todai, T Nakano, A Ikeda, M Ueda, M Takeyama,
Microstructure and Fatigue Properties of TiAl with Unique Layered Microstructure Fabricated by Electron Beam Melting
Materials Science Forum, 941 (2018) 1597-1602.
dx.doi.org/10.4028/www.scientific.net/MSF.941.1597

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