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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

Influence of unique layered microstructure on fatigue properties of Ti-48Al-2Cr-2Nb alloys fabricated by electron beam melting

K Cho, R Kobayashi, J Y Oh, H Yasuda, M Todai, T Nakano, A Ikeda, M Ueda, M Takeyama
Influence of unique layered microstructure on fatigue properties of Ti-48Al-2Cr-2Nb alloys fabricated by electron beam melting
Intermetallics, 95 (2018) pp,1-10
dx.doi.org/10.1016/j.intermet.2018.01.009

Strengthening of Mg-based long-period stacking ordered (LPSO) phase with deformation kink bands

K. Hagihara M. Yamasaki Y. Kawamura T. Nakano
Strengthening of Mg-based long-period stacking ordered (LPSO) phase with deformation kink bands
Materials Science & Engineering A 763 (2019) 138163; 1-9
dx.doi.org/10.1016/j.msea.2019.138163

Effects of Fe on Microstructures and Mechanical Properties of Ti–15Nb–25Zr–(0, 2, 4, 8)Fe Alloys Prepared by Spark Plasma Sintering

Q. Li X. Yuan J. Li P. Wang M. Nakai M. Niinomi T. Nakano A. Chiba X. Liu D. Pan
Effects of Fe on Microstructures and Mechanical Properties of Ti–15Nb–25Zr–(0, 2, 4, 8)Fe Alloys Prepared by Spark Plasma Sintering
Materials Transactions, 60 [9] (2019), pp.1763-1768
dx.doi.org/10.2320/matertrans.ME201913

Quantitative ultrasound (QUS) axial transmission method reflects anisotropy in micro-arrangement of apatite crystallites in human long bones: A study with 3-MHz-frequency ultrasound

T. Ishimoto R. Suetoshi D. Cretin K. Hagihara J. Hashimoto A. Kobayashi T. Nakano
Quantitative ultrasound (QUS) axial transmission method reflects anisotropy in micro-arrangement of apatite crystallites in human long bones: A study with 3-MHz-frequency ultrasound
Bone, 127(2019), pp.82-90
dx.doi.org/10.1016/j.bone.2019.05.034

Quantitative and Qualitative Relationship between Microstructural Factors and Fatigue Lives under Load- and Strain-Controlled Conditions of Ti–5Al–2Sn–2Zr–4Cr–4Mo (Ti-17) Fabricated Using a 1500-ton Forging Simulator

M. Niinomi, T. Akahori, M. Nakai, Y. Koizumi, A. Chiba, T. Nakano, T. Kakeshita, Y. Yamabe-Mitarai, S. Kuroda, N. Motohashi, Y. Itsumi, T. Choda,
Quantitative and Qualitative Relationship between Microstructural Factors and Fatigue Lives under Load- and Strain-Controlled Conditions of Ti–5Al–2Sn–2Zr–4Cr–4Mo (Ti-17) Fabricated Using a 1500-ton Forging Simulator
Materials Transactions, 60 [9](2019), pp.1740-1748
dx.doi.org/10.2320/matertrans.ME201904

Additive ManufacturingプロセスによるNi基超合金のクリープ特性向上に向けた異方性組織制御

岡田竜太朗 野村嘉道 井頭賢一郎 中野貴由
Additive ManufacturingプロセスによるNi基超合金のクリープ特性向上に向けた異方性組織制御
スマートプロセス学会誌 8 [3] 5月号「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(1)」,(2019),pp.106-111
dx.doi.org/10.7791/jspmee.8.106

レーザ積層造形における雰囲気中の酸素がスパッタ発生に与える影響

天野宏紀, 佐々木智章, 野村祐司, 石本卓也,
レーザ積層造形における雰囲気中の酸素がスパッタ発生に与える影響
スマートプロセス学会誌、8 [3] 、5月号、「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(1)」,(2019),pp.102-105
dx.doi.org/10.7791/jspmee.8.102

Solidification microstructures of the ingots obtained by arc-melting and cold crucible levitation melting in an equiatomic TiNbTaZr medium-entropy alloy and TiNbTaZrX (X = V, Mo, W) high-entropy alloys

T. Nagase, K. Mizuuchi, T. Nakano,
Solidification microstructures of the ingots obtained by arc-melting and cold crucible levitation melting in an equiatomic TiNbTaZr medium-entropy alloy and TiNbTaZrX (X = V, Mo, W) high-entropy alloys
Entropy, 21[5](2019), pp.483: 1-17
dx.doi.org/10.3390/e21050483

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