論文 Paper

  1. 2024年 (7)
  2. 2023年 (28)
  3. 2022年 (16)
  4. 2021年 (36)
  5. 2020年 (15)
  6. 2019年 (27)
  7. 2018年 (20)
  8. 2017年 (30)
  9. 2016年 (36)
  10. 2015年 (12)

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

Beta titanium single crystal with bone-like elastic modulus and large crystallographic elastic anisotropy,

P. Wang, M. Todai, T. Nakano,
Beta titanium single crystal with bone-like elastic modulus and large crystallographic elastic anisotropy,
Journal of Alloys and Compounds, 782(2019), pp.1-17.
dx.doi.org/10.1016/j.jallcom.2018.12.236

Diffusionless isothermal omega transformation in titanium alloys driven by quenched-in compositional uctuations,

M.Tane H.Nishiyama A.Umeda N.L.Okamoto K.Inoue M.Luckabauer Y.Nagai T.Sekino T.Nakano T.Ichitsubo
Diffusionless isothermal omega transformation in titanium alloys driven by quenched-in compositional uctuations,
Physical Review Materials, 3(2019), 043604:pp.1-9.
dx.doi.org/10.1103/PhysRevMaterials.3.043604

Preparation of Titanium Alloy/Bioactive Glass Composite for Biomedical Applications via Selective Laser Melting

S. Lee, J. Y. Oh, S. Mukaeyama, S.-H. Sun, T. Nakano,
Preparation of Titanium Alloy/Bioactive Glass Composite for Biomedical Applications via Selective Laser Melting
Materials Transactions, 60 (2019), pp.1779-1784
dx.doi.org10.2320/matertrans.ME201914/

Additive manufacturing of dense components in beta‑titanium alloys with crystallographic texture from a mixture of pure metallic element powders

T. Nagase, T. Hori, M. Todai, S.-H. Sun, T. Nakano,
Additive manufacturing of dense components in beta‑titanium alloys with crystallographic texture from a mixture of pure metallic element powders
Materials & Design, 173 (2019), 107771
dx.doi.org/10.1016/j.matdes.2019.107771

レーザ積層造形法によるβ型Ti-15Mo-5Zr-3Al合金の集合組織形成

石本卓也, 安冨淳平, 杉本昌太, 中野貴由,
レーザ積層造形法によるβ型Ti-15Mo-5Zr-3Al合金の集合組織形成
スマートプロセス学会誌、7 [6], (2018), pp.229-232

dx.doi.org/10.7791/jspmee.7.229

Neural network modelling on temperature coefficient of surface tension and its usage in melting point prediction of nanosized metal particles

J. Yeon P. Ni M. Nakamoto T. Tanaka
Neural network modelling on temperature coefficient of surface tension and its usage in melting point prediction of nanosized metal particles
Calphad, 64 (2019), 267-271
dx.doi.org/10.1016/j.calphad.2018.12.008

ニューラルネットワークによる溶鉄中相互作用母係数の推算

中本将嗣 田中敏宏
ニューラルネットワークによる溶鉄中相互作用母係数の推算
鉄と鋼vol. 105, No. 3(2019), pp.395-399
dx.doi.org/10.2355/tetsutohagane.TETSU-2018-116

二元系溶融Fe合金の表面張力からの無限希薄溶Fe中活量係数の算出

中本将嗣 田中敏宏
二元系溶融Fe合金の表面張力からの無限希薄溶Fe中活量係数の算出
鉄と鋼vol. 105, No. 3(2019), pp.400-406
dx.doi.org/10.2355/tetsutohagane.TETSU-2018-115

Development of low-Young’s modulus Ti–Nb-based alloys with Cr addition,

Q. Li G. Ma J. Li M. Niinomi M. Nakai Y. Koizumi D-X. Wei T. Kakeshita T. Nakano A. Chiba X. Liu K. Zhou D. Pan
Development of low-Young’s modulus Ti–Nb-based alloys with Cr addition,
Journal of Materials Science, 54(2019), pp.8675-8683.
dx.doi.org/10.1007/s10853-019-03457-0

Strengthening mechanisms acting in extruded Mg-based long-period stacking ordered (LPSO)-phase alloys

K. Hagihara Z. Lia M. Yamasaki Y. Kawamura T. Nakano
Strengthening mechanisms acting in extruded Mg-based long-period stacking ordered (LPSO)-phase alloys
Acta Materialia, 163 (2019), pp.226-239
dx.doi.org/10.1016/j.actamat.2018.10.016

Excellent mechanical and corrosion properties of austenitic stainless steel with a unique crystallographic lamellar microstructure via selective laser melting

S.-H. Sun T. Ishimoto K. Hagihara Y. Tsutsumi T. Hanawa T. Nakano
Excellent mechanical and corrosion properties of austenitic stainless steel with a unique crystallographic lamellar microstructure via selective laser melting
Scripta Materialia, 159 (2019), pp.89-93
dx.doi.org/10.1016/j.scriptamat.2018.09.017

Energy condition of isothermal magnetoelectric switching of perpendicular exchange bias in Pt/Co/Au/Cr2O3/Pt stacked films

T. V. A. Nguyen, Y. Shiratsuchi, S. Yonemura, T. Shibata, R. Nakatani
Energy condition of isothermal magnetoelectric switching of perpendicular exchange bias in Pt/Co/Au/Cr2O3/Pt stacked films
Journal of Applied Physics, 124 (2018), 233902
dx.doi.org/10.1063/1.5047563

Antiferromagnetic domain wall creep driven by magnetoelectric effect

Y. Shiratsuchi H. Yoshida Y. Kotani K. Toyoki T. V. A. Nguyen T. Nakamura R. Nakatani
Antiferromagnetic domain wall creep driven by magnetoelectric effect
APL Materials, 6 (2018), 121104
dx.doi.org/10.1063/1.5053928

Frustration and relaxation of antiferromagnetic domains reversed by magneto-electric field cooling in a Pt/Co/Au/Cr2O3/Pt-stacked film

Y. Shiratsuchi, S. Watanabe, S. Yonemura, T. Shibata R. Nakatani
Frustration and relaxation of antiferromagnetic domains reversed by magneto-electric field cooling in a Pt/Co/Au/Cr2O3/Pt-stacked film
AIP Advances 8, (2018), 125313
dx.doi.org/10.1063/1.5053136

Fabrication of the Beta-Titanium Alloy Rods from a Mixture of Pure Metallic Element Powders via Selected Laser Melting

M. Todai T. Nagase T. Hori H. Motoki S.-H. Sun K. Hagihara T. Nakano
Fabrication of the Beta-Titanium Alloy Rods from a Mixture of Pure Metallic Element Powders via Selected Laser Melting
Materials Science Forum, 941, (2018), pp.1260-1263
dx.doi.org/10.4028/www.scientific.net/MSF.941.1260

Magnetoelectric control of antiferromagnetic domain state of Cr2O3 thin film toward spintronic application

Y. Shiratsuchi T. V. A. Nguyen R. Nakatani
Magnetoelectric control of antiferromagnetic domain state of Cr2O3 thin film toward spintronic application
Journal of the Magnetics Society of Japan, 42 (2018), 119-126
dx.doi.org/10.3379/msjmag.1811R001

Metal–Metal Joining Using Super-Spread Wetting into Interface Fine Mesh Structure

J. Yeon Y.-M. Yen M. Nakamoto T. Tanaka
Metal–Metal Joining Using Super-Spread Wetting into Interface Fine Mesh Structure
Materials Transactions, Vol. 59, No.11 (2018), pp.1811-1816
dx.doi.org/10.2320/matertrans.MAW201804

レーザ積層造形法によるβ型Ti-15Mo-5Zr-3Al合金の集合組織形成

石本卓也 安冨淳平 杉本昌太 中野貴由
レーザ積層造形法によるβ型Ti-15Mo-5Zr-3Al合金の集合組織形成
スマートプロセス学会, 7 [6], (2018), pp.229-232

ω-phase transformation and lattice modulation in biomedicalβ-phase Ti-Nb-Al alloys

P. Wang M. Todai T. Nakano
ω-phase transformation and lattice modulation in biomedicalβ-phase Ti-Nb-Al alloys
Journal of Alloys and Compounds,(2018) pp.511-516.
dx.doi.org/10.1016/j.jallcom.2018.06.266

ページの先頭へ戻る