¸“Ç•t‚«˜_•¶
1.
J. Taendl, S. Nambu,
A. Orthacker, G. Kothleitner, J. Inoue, T. Koseki, C. Poletti, gIn-situ
observation of recrystallization in an AlMgScZr alloy using confocal laser
scanning microscopyh, Mater. Characterization, 108, (2015), 137-144
2.
H. Na, S. Nambu, M.
Ojima, J. Inoue, T. Koseki, gCrystallographic and Microstructural Studies of
Lath Martensitic Steel during Tensile Deformationh, Metall. Mater. Trans. A, 45A,
(2014), 5029-5043
3.
T. Koseki, J. Inoue
and S. Nambu, gDevelopment of Multilayer Steels for Improved Combinations of
High Strength and High Ductilityh, Mater. Trans., 55 (2014), 227-237
4.
R. I. Barabash, O. M.
Barabash, M. Ojima, Z. Z. Yu, J. Inoue, S. Nambu, T. Koseki, R. Q. Xu, Z. L. Feng,
gInterphase Strain Gradients in Multilayered Steel Composite from
Microdiffractionh, Metall. Mater. Trans. A, 45A (2014), 98-108
5.
ˆäã, ŽO—Ö,
¬ŠÖ, uƒˆŸ‰”—Z‰t^|ŠE–Ê‚É‚¨‚¯‚éFe-ZnŒn‹à‘®ŠÔ‰»‡•¨Œ`¬‚É‹y‚Ú‚·|’†Si‚̉e‹¿v, “S‚Æ|, 100
(2014), 390-396
6.
ˆäã, ŽO—Ö,
¬ŠÖ, uFe-ZnŒn‹à‘®ŠÔ‰»‡•¨”ç–Œ‚Ì”j‰óx«•]‰¿v, “S‚Æ|, 100 (2014), 383-389
7.
H. Na, S. Nambu, M.
Ojima, J. Inoue, T. Koseki, gStrain localization behavior in low-carbon
martensitic steel during tensile deformationh, Scripta Mater., 69 (2013), 793-796
8.
S. Nambu, N. Shibuta,
M. Ojima, J. Inoue, T. Koseki, H. K. D. H. Bhadeshia, gIn situ observations and
crystallographic analysis of martensitic transformation in steelh, Acta Mater.,
61 (2013), 4831-4839
9.
N. Kyokuta, M. Koba,
T. Araki, S. Nambu, J. Inoue, T. Koseki, gFracture Toughness Evaluation of Thin
Fe-Al Intermetallic Compound Layer at Reactive Interface between Dissimilar
Metalsh, Mater. Trans., 54 (2013), 994-1000
10.
Y. Mishiro, S. Nambu,
J. Inoue, T. Koseki, gEffect of Stress on Variant Selection in Lath Martensite
in Low-carbon Steelh, ISIJ Intfl, 53 (2013), 1453-1461
11.
G. Reboul, S. Nambu,
J. Inoue, and T. Koseki, gPhase Evolution During the Liquid-Phase Bonding of
Zirconium and Austenitic Stainless Steel with Zinc Insertionh, Metall. Mater.
Trans. A, 43A (2012), 2366-2377
12.
‹È“c, –Ø’ë,
r–Ø, “ì•”, ˆäã, ¬ŠÖ, uˆÙŽí‹à‘®”½‰žŠE–Ê‚ÉŒ`¬‚·‚éFe-Al
Œn‹à‘®ŠÔ‰»‡•¨”––Œ‚Ì”j‰óx«•]‰¿v, “ú–{‹à‘®Šw‰ïŽ, 76
(2012), 272-277
13.
J. Taendl, S. Nambu,
J. Inoue, N. Enzinger, and T. Koseki, gFriction stir welding of multilayered
steelh, Sci. Technol. Welding And Joining, 17 (2012), 244-253
14.
M. Ojima, J. Inoue, S.
Nambu, P. Xu, K. Akita, H. Suzuki, and T. Koseki, gStress partitioning behavior
of multilayered steels during tensile deformation measured by in situ neutron
diffractionh. Scripta Materialia, 66 (2012), 139-142
15.
M. Koba, T. Araki, S.
Nambu, J. Inoue and T. Koseki, gBonding Interface Formation between Mg Alloy
and Steel by Liquid-phase Bonding using Ag Interlayerh, Metall. Mater. Trans.
A, 43A (2012), 592-597
16.
ŽO‘ãC“ì•”CˆäãC¬ŠÖ, u’á’Y‘f|ƒ‰ƒXƒ}ƒ‹ƒeƒ“ƒTƒCƒg‚̃oƒŠƒAƒ“ƒg‘I‘ð‚É‹y‚Ú‚·‰ž—͂̉e‹¿v, “S‚Æ|C98 (2012), 425-433.
17.
K. Asakura, T.
Koseki, T. Sato, M. Arai, T. Horiuchi, K. Tamura, and T. Fujita, gEffect of
Chromium, Aluminum and Nickel on Microstructure and Reverse-S Type Creep
Rupture Strength of High Cr Ferritic Heat Resistant Steelsh, ISIJ Intfl, 52
(2012), 902-909
18.
A. Cetin, J. Krebs,
A. Durussel, A. Rossoll, J. Inoue and T. Koseki, S. Nambu and A. Mortensen,
gLaminated Metal Composites by Infiltrationh, Metall. Mater. Trans. A, 42A
(2011), 3509-3520
19.
C. Lee, S. Nambu, J.
Inoue and T. Koseki, gFerrite Formation Behaviors from B1 Compounds in Steelsh,
ISIJ Intfl, 51 (2011), 2036-2041
20.
T. Araki, M. Koba, S.
Nambu, J. Inoue and T. Koseki, gReactive
transient liquid phase bonding between AZ31 magnesium alloy and low carbon
steelh,
Materials Transactions 52 (2011), 568-571
21.
P. Lhuissier, J. Inoue
and T. Koseki, gStrain field in a brittle/ductile multilayered steel compositeh,
Scripta Materialia, 64 (2011), 970-973
22.
Vˆä, ’©‘q, “yˆä, ì’†, ¬ŠÖ, –x“à, uƒ{ƒƒ“ŠÜ—L10CrŒn‘Ï”M|‚Ì’·ŽžŠÔƒNƒŠ[ƒv”j’f‹“x‚É‹y‚Ú‚·CAN‚¨‚æ‚ÑNi‚ÌŒø‰Êv, “S‚Æ|, 97 (2011), 295-304
23.
C. Schneider, T.
Weinberger, J. Inoue, T. Koseki and N. Enzinger, gCharacterisation of interface of steel/magnesium FSWh, Sci. Technol.
Welding and Joining, 16 (2011), 100-106
24.
VˆäC’©‘qC“yˆäCì’†C¬ŠÖC–x“àCu12CrŒn‘Ï”M|‚Ì’·ŽžŠÔƒNƒŠ[ƒv”j’f‹“x‚É‹y‚Ú‚·Co‚¨‚æ‚ÑB‚ÌŒø‰Êv, “S‚Æ|, 96 (2010),
620-628
25.
’©‘q, ¬ŠÖ, Vˆä, ²“¡, “c‘º, “¡“c, u‚CrƒtƒFƒ‰ƒCƒgŒn‘Ï”M|‚Ì‘gDA‹tSŽšƒNƒŠ[ƒv”j’f‹“x‚É‹y‚Ú‚·CrAAlANi‚̉e‹¿v, “S‚Æ|, 96 (2010), 665-672
26.
T. Oya, N. Tiesler,
S. Kawanishi, J. Yanagimoto and T. Koseki, gExperimental
and numerical analysis of multilayered steel sheets upon bendingh, J. Mater. Process. Technol., 210 (2010), 1926?1933
27.
J. Yanagimoto, T. Oya, S. Kawanishi, N. Tiesler and
T. Koseki, gEnhancement of bending formability of brittle sheet metal in
multilayer metallic sheetsh, CIRP Annals-Manuf. Technol., 59 (2010), 287-290
28.
‰Í¼, —›, “ì•”, ˆäã, ¬ŠÖ, u|/‚a‚P‰»‡•¨ŠE–Ê‚É‚¨‚¯‚éƒtƒFƒ‰ƒCƒg•Ï‘Ô‹““®v, “S‚Æ|, 96 (2010)C 123-128
29.
M. Michiuchi, S. Nambu, Y. Ishimoto, J. Inoue and
T. Koseki, gRelationship between local deformation behavior and
crystallographic features of as-quenched lath martensite during uniaxial tensile
deformationh, Acta Materialia, 57 (2009), 5283-5291
30.
T. Hara, N. Maruyama, Y. Shinohara, H. Asahi, M.
Shigesato and T. Koseki, gAbnormal a to g
Transformation Behavior of Steels with Martensite and Bainite Microstructure at
Slow Reheating Rateh, ISIJ Intfl, 49 (2009), 1787-1795
31.
S. Nambu, M. Michiuchi, J. Inoue and T. Koseki,
gEffect of interfacial bonding strength on tensile ductility of multilayered
steel compositesh, Composites Science and Technology, 69 (2009), 1936-1941
32.
ÎŒ³, “¹“à, “ì•”, ’©‘q, ˆäã, ¬ŠÖ, uƒ‰ƒXƒ}ƒ‹ƒeƒ“ƒTƒCƒg‘gD‚̈ø’£•ÏŒ`‚É”º‚¤‚Ђ¸‚Ý•ª•z‚Ì‘ª’èv, “ú–{‹à‘®Šw‰ïŽ, 73 (2009), 720-727
33.
S. Nambu, M. Michiuchi, Y. Ishimoto, K. Asakura, J.
Inoue and T. Koseki, gTransition in deformation behavior of martensitic steel
during large deformation under uniaxial tensile loadingh, Scripta Materialia 60
(2009) 221?224
34.
T. Suzuki, J. Inoue and T. Koseki, gFerrite
Transformation in C-Mn Steel containing High Volume Fraction Oxide Particlesh,
J. Japan Soc. Heat Treatment, 49 (2009) 474-477
35.
J. Inoue, S. Nambu, Y. Ishimoto and T. Koseki, gFracture
elongation of brittle/ductile multilayered steel composites with a strong
interfaceh, Scripta Materialia 59 (2008) 1055?1058
36.
‰œ, ’©‘q, ˆäã, ¬ŠÖF@’á’Y‘f|‚̘A‘±—â‹p‰ß’ö‚É‚¨‚¯‚éƒtƒFƒ‰ƒCƒgƒvƒŒ[ƒgŒ`¬‚»‚ÌêŠÏŽ@C“S‚Æ|A94 (2008), 363-368
37.
T. Koseki, H. Kato, M. Tsutsumi, K. Kasai and J.
Inoue, gFerrite Transformation from Oxide-Steel Interface in HAZ-simulated C-Mn
Steelh, Int. J. Mat. Res., 99 (2008), 347-351
38.
J. Inoue, Y. Fujii and T. Koseki, gVoid formation
in Nanocrystalline Cu Film during Uniaxial Relaxation Testh, Acta Materialia,
56 (2008), 4921-4931
39.
E. El-Kashif and T. Koseki, gEffect of Niobium on
HAZ Microstructure and Toughness of HSLA Steelsh, Materials Science Forum, 539 (2007),
4838-4843
40.
T. Koseki and T. Araki, gModeling of Steel Weld
Microstructure Using Monte Carlo and Finite Difference Hybrid Methodh, Materials
Science Forum, 539 (2007), 4002-4007
41.
’©‘qC¬ŠÖCìŽèCΖ{, uJRR-3‹y‚ÑJRR-4‚Ì‹C‘—ŠÇÝ”õ‚ð—p‚¢‚½ƒ¿üƒgƒ‰ƒbƒNƒGƒbƒ`ƒ“ƒO–@‚É‚æ‚é|’†ƒ{ƒƒ“‚Ìó‘Ô•ª•zŠÏŽ@–@‚ÌŠm—§‚Æ–â‘è“_vC“S‚Æ|C93 (2007), 634-641
42.
T. Suzuki, J, Inoue and T. Koseki, gSolidification
of Iron and Steel on Single-crystal Oxideh, ISIJ Intfl, 47 (2007), 847-852
43.
K. Shinoda, T. Koseki and T. Yoshida, gInfluence of
impact parameters of zirconia droplets on splat formation and morphology in
plasma sprayingh, J. Appl. Phys., 100 (2006), No. 074903
44.
—é–Ø, ¬ŠÖ,@u—n|]Ž_‰»•¨ŠÔ‚Ì”½‰ž”G‚ê«‚É‹y‚Ú‚·|‘g¬‚̉e‹¿v, “S‚Æ|, 92 (2006), 411-416
45.
H. Kim, Y. Naito, T. Koseki, T. Ohba, T. Ohta, Y.
Kojima, H. Sato and Y. Shimogaki, gMaterial consideration on Ta, Mo, Ru and Os
as glue layer for ultra-large scale integration Cu interconnectsh, J. J. Appl.
Phys., 45(4A) (2006), 2497-2501
46.
H. Kim, T. Koseki, T. Ohba, T. Ohta, Y. Kojima, H.
Sato, S. Hosaka and Y. Shimogaki, gEffect of Ru crystal orientation on the
adhesion characteristics of Cu for ultra-large scale integration interconnectsh,
Appl. Surf. Sci., 252 (2006), 3938-3942
47.
T. Koseki and G. Thewlis, gInclusion Assisted
Microstructure Control in C-Mn and Low Alloy Steel Weldsh, Mater. Sci. Tech.,
21 (2005), 867-879
48.
H. Kim, T. Koseki, T. Ohba, T. Ohba, Y. Kojima, H.
Sato and Y. Shimogaki, gProcess design of Cu(Sn) alloy deposition for highly
reliable ultra large-scale integration interconnectsh, Thin Solid Films, 491 (2005),
221-227
49.
H. Kim, T. Koseki, T. Ohba, T. Ohba, Y. Kojima, H.
Sato and Y. Shimogaki, gCu wettability and diffusion barrier property of Ru
thin film for Cu metallizationh, J. Electrochem. Soc., 152 (2005), G594-600
50.
T. Koseki, gA Review on Inclusion-assisted Microstructure
Control in C-Mn and Low Alloy Steel Weldsh, Welding in The World, 49 (2005), 22-28
51.
¬ŠÖ, u|—nÚ•”‚Ì‘gDŒ`¬‚ƧŒäv, “S‚Æ|, 90 (2004), 61-72
52.
E. ElKashif, K. Asakura, T. Koseki, and K. Shibata,
gEffect of Boron, Niobium and Titanium on Grain Growth in Ultra High Purity 18%Cr
Ferritic Stainless Steelh, ISIJ Intfl, 44 (2004), 1568-1575
53.
T. Koseki, H. Inoue, Y. Fukuda and N. Nogami, gNumerical
Simulation of Equiaxed Grain Formation in weld Solidificationh, Sci. and Tech.
of Adv. Mater., 4 (2003), 183-195
54.
M. C. Flemings and T. Koseki, gSolidification
of Steelh, The Making, Shaping and Treating of Steel 11th edition -
Casting Volume, ‚b‚ˆD6, AISE, (2003)
55.
–ìã, ¬ŠÖ, •Ÿ“c,@uƒ‚ƒ“ƒeƒJƒ‹ƒE·•ªƒnƒCƒuƒŠƒbƒhƒ‚ƒfƒ‹‚ÆŒvŽZ”M—ÍŠw˜A¬‚É‚æ‚é‹ÃŒÅ‘gDƒVƒ~ƒ…ƒŒ[ƒVƒ‡ƒ“v, “ú–{‹à‘®Šw‰ïŽ, 67 (2003), 506-513
56.
¬ŠÖCˆäã, u‚s‚‰‚m‚ðŠj‚Æ‚µ‚½|‚Ì“™Ž²»‹ÃŒÅvC“ú–{‹à‘®Šw‰ïŽC65 (2001), 644-651
57.
ˆäãC¬ŠÖ, u“ñ‘Š‚ª“Æ—§‚µ‚Ĭ’·‚·‚éƒI[ƒXƒeƒiƒCƒgŒnƒXƒeƒ“ƒŒƒX|‚̋ÌŌ`‘Ô‚Ì’ñˆÄvC“S‚Æ|C87
(2001), 692-699
58.
ˆäãC¬ŠÖ, “¡C¼–{, uƒI[ƒXƒeƒiƒCƒgŒnƒXƒeƒ“ƒŒƒX‚—nÚ‹à‘®‚É‚¨‚¯‚éŒ`‘Ԃ̈قȂéƒÂƒtƒFƒ‰ƒCƒg‚ÌŒ`¬‹@\‚¨‚æ‚ђቷx«‚Æ‘ÏH«‚É‹y‚Ú‚·ƒÂƒtƒFƒ‰ƒCƒgŒ`‘Ԃ̉e‹¿vC—nÚŠw‰ï˜_•¶WC19 (2001), 100-113
59.
¬ŠÖ, u—nÚ‹à‘®‚̋ÌłƋÌőgD§ŒävC—nÚŠw‰ïŽC70 (2001), 119-135
60.
H. Inoue, T. Koseki, S. Ohkita and M. Fuji, gFormation
Mechanism of Vermicular and Lacy Ferrite in Austenitic Stainless Steel Weld Metalsh,
Sci. and Tech. of Welding and Joining, 5 (2000), 385-396
61.
–, ŽR–{, Îì, ¬ŠÖ, •ŸŠÔ, u•\‘w’´×—±|”‚̊C…’†”æ˜J‹“x‚Æ‚»‚Ì•]‰¿i‚»‚Ì‚SjvC¼•”‘¢‘DŠw‰ï‰ï•ñ, 100 (2000), 335-343
62.
C. Whinkler, G. Amberg, H. Inoue, T.
Koseki and M. Fuji, gThe Effect of Surfactant Redistribution on the Weld Pool
Shape during GTA-weldingh, Sci. and Tech. of Welding and Joining, 5 (2000), 1-13
63.
H. Mabuchi and T. Koseki, gNano-investigation on
Grain Boundary Periodic Alternating Segregation Based on Divorced Coincident
Segregation Mechanism Resulted in the Replacement of Conventional Site
Competition in Steelsh, ISIJ Intfl, 40 (2000), 809-818
64.
–CŽR–{CÎìC¬ŠÖ, •ŸˆäC•½‰º, u•\‘w’´×—±|”‚̊C…’†”æ˜J‹“x‚Æ‚»‚Ì•]‰¿i‚»‚Ì‚RjvC¼•”‘¢‘DŠw‰ï‰ï•ñ, 98 (1999), 249-256
65.
H. Mabuchi, R. Uemori and T. Koseki, gNano
Investigation on the Grain Boundary Periodic Segregation Based on the Divorced
Coincident Segregation in 5% Ni Steelh, ISIJ Intfl, 39 (1999), 937-946
66.
–CŽR–{CÎìC¬ŠÖ, •ŸˆäC“Ú“c, u•\‘w’´×—±|”‚̊C…’†”æ˜J‹“x‚Æ‚»‚Ì•]‰¿i‚»‚Ì‚QjvC¼•”‘¢‘DŠw‰ï‰ï•ñ, 97 (1999), 147-154
67.
T. Koseki and M. C. Flemings, gSolidification of
Undercooled Fe-Cr-Ni Alloys: Part III. Phase Selection in Chill Castingh,
Metall. Mater. Trans. A, 28A (1997), 2385-2395
68.
K. Ichikawa, T. Koseki and M. Fuji, gThermodynamic
Estimation of Inclusion Characteristics in Low Alloy Steel Weld Metalsh, Sci. Technol.
Welding and Joining, 2 (1997), 231-235
69.
ˆäã, ¬ŠÖC‘å–k, “¡,@uƒtƒFƒ‰ƒCƒg’P‘Š‚ŋÌł·‚éƒI[ƒXƒeƒiƒCƒgŒnƒXƒeƒ“ƒŒƒX|—nÚ‹à‘®‚É‚¨‚¯‚éƒAƒVƒLƒ…ƒ‰[ó‘gD‚ÌŒ`¬‚É‹y‚Ú‚·ƒ}ƒbƒVƒu•Ï‘Ԃ̉e‹¿v, —nÚŠw‰ï˜_•¶W, 15 (1997), 305-313
70.
ˆäã, ¬ŠÖC‘å–k, “¡, uƒtƒFƒ‰ƒCƒg’P‘Š‚ŋÌł·‚éƒI[ƒXƒeƒiƒCƒgŒnƒXƒeƒ“ƒŒƒX|—nÚ‹à‘®‚Ì‹ÃŒÅE•Ï‘Ô‹““®v, —nÚŠw‰ï˜_•¶W, 15 (1997), 292-304
71.
T. Koseki, S. Ohkita and N. Yurioka, gThermodynamic
Study of Inclusion Formation in Low-Alloy Steel Weld Metalsh, Sci. Technol.
Welding and Joining, 2 (1997), 65-69
72.
ˆäã, ¬ŠÖC‘å–k, “¡, uiƒÂ{ƒÁj“ñ‘Š‚ŋÌł·‚éƒI[ƒXƒeƒiƒCƒgŒnƒXƒeƒ“ƒŒƒX|—nÚ‹à‘®‚̃Gƒsƒ^ƒLƒVƒƒƒ‹‹ÃŒÅ‚Æ»o‘Š‚Ì‘I‘ðv, —nÚŠw‰ï˜_•¶W, 15 (1997), 281-291
73.
ˆäã, ¬ŠÖC‘å–k, “¡, u‰»ƒtƒFƒ‰ƒCƒg‚ŋÌł·‚éƒI[ƒXƒeƒiƒCƒgŒnƒXƒeƒ“ƒŒƒX|—nÚ‹à‘®‚Ì‹ÃŒÅE•Ï‘Ô‹““®v, —nÚŠw‰ï˜_•¶W, 15 (1997), 88-99
74.
ˆäã, ¬ŠÖC‘å–k, “¡, u‰»ƒI[ƒXƒeƒiƒCƒg‚ŋÌł·‚éƒI[ƒXƒeƒiƒCƒgŒnƒXƒeƒ“ƒŒƒX|—nÚ‹à‘®‚Ì‹ÃŒÅE•Ï‘Ô‹““®v, —nÚŠw‰ï˜_•¶W, 15 (1997), 77-87
75.
T. Koseki and M. C. Flemings, gSolidification of
Undercooled Fe-Cr-Ni Alloys: Part II. Microstructural Evolutionh, Metall.
Mater. Trans. A , 27A (1996), 3226-3240
76.
T. Ogawa and T. Koseki, gWelding High-Molybdenum
Super-austenitic Stainless Steelh, Mater. Performance, 35 (1996), 87-91
77.
T. Koseki and M. C. Flemings, gSolidification of
Undercooled Fe-Cr-Ni Alloys: Part I. Thermal Behaviorh, Metall. Mater. Trans.
A, 26A (1995), 2991-2999
78.
H. Inoue, T. Koseki, S. Ohkita and T. Tanaka, gEffect
of Solidification on Subsequent Ferrite-to-Austenite Massive Transformation in
An Austenitic Stainless Steel Weld Metalh, ISIJ Intfl, 35 (1995), 1248-1257
79.
T. Koseki and M. C. Flemings, gEffect of External
Heat Extraction on Dendritic Growth into Undercooled Meltsh, ISIJ Intfl, 35 (1995),
1224-1230
80.
T. Koseki, T. Matsumiya, W. Yamada and T. Ogawa, gNumerical
Modeling of Solidification and Subsequent Transformation of Fe-Cr-Ni Alloysh,
Metall. Mater. Trans. A, 25A (1994), 1309-1321
81.
T. Koseki and T. Ogawa, gAn Investigation of Weld
Solidification in Cr-Ni-Fe-Mo Alloysh, Weld. Intfl, 6 (1992), 516-522
82.
H. Madarame, T. Sukegawa, T. Ogawa and T. Koseki, gSurface
Ripple of Resolidified Stainless Steel after Disruption Loadh, Fusion Engr.
Design, 15 (1991), 75-81
83.
¬ìC¬ŠÖ, u‘ÏŠC…6%MoƒXƒeƒ“ƒŒƒX|‚Ì—nÚv,
—nÚŠw‰ï˜_•¶W, 9 (1991), 154-160
84.
¬ŠÖC¬ì, uCr-Ni-Fe-Mo‚‡‹à‚Ì—nڋÌł̌Ÿ“¢v, —nÚŠw‰ï˜_•¶W, 9 (1991),@143-149
85.
T. Ogawa, T. Koseki, S. Ohkita and H. Nakajima, g4K
Properties of High-Nitrogen Stainless Steel Weldmentsh, Weld. J., 69 (1990),
205s-212s
86.
T. Ogawa and T. Koseki, gEffect of Composition
Profiles on Metallurgy and@Corrosion Behavior of Duplex Stainless Steel Weld Metalsh, Weld. J.,
68 (1989), 181s-191s
87.
T. Ogawa and T. Koseki, gWeldability of Newly
Developed Austenitic Alloys for Cryogenic Service: Part 2 - High-Nitrogen
Stainless Steel Weld Metalh, Weld. J., 67 (1988), 8s-17s
88.
T. Ogawa and T. Koseki, gWeldability of Newly
Developed Austenitic Alloys for Cryogenic Service: Part 1 - Up-to-date Overview
of Welding Technologyh, Weld. J., 66 (1987), 323s-341s
89.
¬ìC¬ŠÖ, u‹É’ቷ—pƒXƒeƒ“ƒŒƒX|‚Ì—nÚv, —nÚŠw‰ïŽ, 57 (1988), 443-449@
90.
Žoì, ¬ŠÖC‹g“c, –¾Î, u‹à‘®‚‰·ö‹C‚Ì‹¤‹Ãk‰ß’ö‚ÉŠÖ‚·‚錤‹†v, “ú–{‹à‘®Šw‰ïŽ, 49 (1985), 451-456
91.
Œ´“c, ¬ŠÖC‹g“c, –¾Î, u‹à‘®‚‰·ö‹C‚Ì‹¤‹Ãk‰ß’ö‚ÉŠÖ‚·‚錤‹†v, “ú–{‹à‘®Šw‰ïŽ, 45 i1981j, 1138-1145
‰ðàA“™
1.
¬ŠÖCuŠO•”ÝŒvŒ^‚Ì“S|Þ—¿vC‚Ó‚¥‚ç‚ÞC20 (2015) 374-377
2.
¬ŠÖ, ˆäãCuˆÙŽíÞ—¿ŠE–Ê‚¨‚æ‚ÑŠE–Ê”½‰ž‘w‚Ìx«‚Ì•]‰¿v, •\–Ê‹Zp, 63 (2012), 725-727
3.
¬ŠÖ, u‰îÝ•¨‚É‚æ‚é|‚̋ÌőgD‚Ì”÷׉»v, ‚Ó‚¥‚ç‚Þ 15 (2010), 30-35
4.
¬ŠÖCˆäãC—é–ØC’·ˆäC’JŒû, u’´‚‹“xŒy—ʈړ®‘Ì‚ð‰Â”\‚É‚·‚é•¡‘w|”ŠJ”ƒvƒƒWƒFƒNƒgv, ‹à‘®C80 i2010j, 271-275.
5.
ˆäãC“ì•”C“¹“àC¬ŠÖ, u‹“xE‰„«‚Ì—¼—§‚ð‰Â”\‚É‚·‚é•¡‘w|”‚ÌÝŒvŽwjv, ‹à‘®C80i2010j@276-282.
6.
“¹“àC“ì•”CˆäãC¬ŠÖ, u•¡‘w|”Â’†‚̒ᇋàƒ}ƒ‹ƒeƒ“ƒTƒCƒg|‚Ì•ÏŒ`‹@\v, ‹à‘®, 80 i2010j 283-288.
7.
“ì•”C“¹“àCˆäãC¬ŠÖ, u•¡‘w|”‚̊E–ÊŒ`¬‚Æ‹“x”Œ»‹@\v, ‹à‘®C80i2010j, 289-293.
8.
‘å‰ÆC‰Í¼C–ö–{CˆäãC¬ŠÖ, u•¡‘w|”‚̋Ȃ°‰ÁH«‚ÉŠÖ‚·‚錤‹†v, ‹à‘®C80i2010j, .299-304.
9.
”‹Œ´CˆäãC¬ŠÖ, u•¡‘w|”‚̅‘fƉ»“Á«v, ‹à‘®C80i2010j, 305-309
10.
¬ŠÖ, u‹@ŠBÞ—¿‚̃j[ƒY‚ÆŠJ”“®Œüv, ‹@ŠBÝŒv, 54(8) (2010) 14-18
11.
¬ŠÖ, ˆäã, u•¡‘w|”‚ɂæ‚éV‚½‚È’´‚‹“x-‚‰„«|‚ÌŠJ”v, ”zŠÇ‹Zp,
52(6) (2010), 7-11
12.
¬ŠÖ, ˆäã, u’´‚‹“x‚Æ‚‰„«‚ª—¼—§‚µ‚½•¡‘w|”‚̊J”v, ‹à‘®, 79 (2009), 908-912
13.
r–Ø, ¬ŠÖ, u|—nÚ•”‚Ì‘gDŒ`¬ƒVƒ~ƒ…ƒŒ[ƒVƒ‡ƒ“v, —nÚŠw‰ïŽ, 77 (2008), 279-283
14.
¬ŠÖC‘å–k, u‘¢‘D•ª–ì‚É‚¨‚¯‚é—nÚ‹Zp‚Ìi•à‚Æ—nÚ•”M—Š«‚ÌŒüãvC‚Ó‚¥‚ç‚ÞC13 (2008),
9-14
15.
¬ŠÖ, uŒú|”‚̗nÚ‹Zp‚¨‚æ‚Ñ|—nÚ•”‚ÌM—Š«‚ÉŠÖ‚·‚éÅ‹ß‚Ìi•àv, ‘æ191/192‰ñ¼ŽR‹L”OuÀ u21¢‹I‚ð‘ñ‚‚«”\Œú”Âv, iŽÐj“ú–{“S|‹¦‰ï, (2007) 25-46
16.
–ìã, ¬ŠÖ, •Ÿ“c,@uƒnƒCƒuƒŠƒbƒhƒ‚ƒfƒ‹‚ÆŒvŽZ”M—ÍŠw˜A¬‚É‚æ‚é‹ÃŒÅ‘gDƒVƒ~ƒ…ƒŒ[ƒVƒ‡ƒ“v,@‚Ü‚Ä‚è‚ , 42 (2003), 731-737
17.
T. Koseki and T. Z. Kattamis, gSolidification of
Highly Undercooled Meltsh, Merton C. Flemings Symposium: Solidification
Processing, TMS, Warrendale, PA, (2001), 129-141
18.
¬ŠÖ, u—nÚ‹à‘®‚̋Ìłƃ~ƒNƒ•Î͂̃Vƒ~ƒ…ƒŒ[ƒVƒ‡ƒ“vCh—nÚ•”‚ÌÞ—¿‹““®‚̃‚ƒfƒŠƒ“ƒO‚ƃVƒ~ƒ…ƒŒ[ƒVƒ‡ƒ“hC—nÚŠw‰ïC(1999), 210-218
19.
N. Yurioka and T. Koseki, gModeling Activities in
Japanh, Mathematical Modelling of Weld Phenomena 3, H. Cerjak ed., TIM, London,
(1997), 489-530
20.
•S‡‰ªC¬ŠÖ, u—nÚ«‚ÆŒpŽè«”\‚É‹y‚Ú‚·‘gD‚̉e‹¿v, ‘æ‚P‚U‚PE‚P‚U‚Q‰ñ¼ŽR‹L”OuÀ
g“S|‚ƃ`ƒ^ƒ“‚Ì‘gD§Œäh, “ú–{“S|‹¦‰ï, (1996), 241-271
21.
’†‘ò, ²“¡C¬ŠÖ, uFe-Cr‡‹à‚ÌèÕ«‚É‹y‚Ú‚·‡‹àŒ³‘f‚Æ”Mˆ—‚̉e‹¿v, g‚ƒ“xFe-Cr‡‹à‚Ì”«Ž¿h, “ú–{“S|‹¦‰ï, 1995, 2-19
22.
¬ŠÖC¬ì, uƒXƒeƒ“ƒŒƒX|‚Ì—nÚ‹ÃŒÅv, —nÚ‹Zp, (1989), 154-159
23.
¬ì, ¬ŠÖ, uΖûŠÖ˜A—p“r‚É‚¨‚¯‚é“ñ‘ŠƒXƒeƒ“ƒŒƒX|—nÚ•”‚̉ۑè‚ÆÞŽ¿‰ü‘Pv, —nÚŠw‰ïŽ, 57 (1988), 92-99
24.
¬ì, ÷ˆäC¬ŠÖ. uƒCƒ“ƒo[ i36%Ni|j
‚Ì—nÚ«‚Æ‚»‚Ì‘åŒaŠÇ—nÚv, ˆ³—Í‹Zp, 25 (1987), 27-37
“Á‹–i“o˜^‚Ì‚ÝA2013ˆÈ‘O‚ÍÈ—ªj
1.
¬ŠÖC—é–ØC‹g“cCˆäãC“c’†Cu•¡‘w|‹y‚Ñ•¡‘w|‚Ì»‘¢•û–@v, ‰¢BoŠè07791394.5† (2016.3)
2.
¬ŠÖCˆäãC“ì•”C“¹“àCˆ¢•”C—ÑC’ª“cC’JŒûCu•¡‘w|‚¨‚æ‚Ñ‚»‚Ì»‘¢•û–@vC“Á‹–‘æ5352766† (2013.9)
3.
¬ŠÖCˆäãC“ì•”C“¹“àCˆ¢•”C—ÑC’ª“cC’JŒûCuŠE–Ê”—£”j’fAƒlƒbƒLƒ“ƒO”j’f‚Ì‚È‚¢‹“x|‰„«ƒoƒ‰ƒ“ƒX‚É—D‚ꂽ•¡‘w|vC“Á‹–‘æ5326097† (2013, 8)
4.
¬ŠÖC—é–ØC‹g“cCˆäãC“c’†Cu•¡‘w|‹y‚Ñ•¡‘w|‚Ì»‘¢•û–@vC“Á‹–‘æ5221348† i2013.3j
5.
¬ŠÖ, ˆäã, “ì•”, ’ª“c, u•¡‘w|v, “Á‹–‘æ4960289† (2012.3)
6.
¬ŠÖC—é–ØC‹g“cCˆäãC“c’†Cu•¡‘w|‹y‚Ñ•¡‘w|‚Ì»‘¢•û–@vC•Ä‘“Á‹–oŠè12/374997† (2011.12)
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