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(1) ŽÔ‘Ì‚ÌŒy—ʉ»‚ðŽÀŒ»‚·‚éƒAƒ‹ƒ~ƒjƒEƒ€‡‹à‚ÌŽ©“®ŽÔ•”Þ‚Ö‚Ì“K—p
iœAàVˆêjH‹ÆÞ—¿C65(12), 26-30, (2017).
     

     
(2) Concurrent strengthening of ultrafine-grained age-hardenable Al-Mg alloy by means of high-pressure torsion and spinodal decomposition
i Y.Tang, W.Goto, S.Hirosawa, Z.Horita, S.Lee, K.Matsuda, D.Terada jActa Materialia, 131, 57-64, (2017).
     

     
(3) Al-Mg“ñŒ³Œn‡‹à‚Ì”M—ÍŠw“I‰ð͂ƃXƒsƒm[ƒ_ƒ‹ü‚ðŠÜ‚Þó‘Ô}‚ÌŒˆ’è
i ŒÃŒããÄ—C, Šâ‰ªG–¾, œAàVˆê jŒy‹à‘®, 67, 173-178, (2017).
     

     
(4) ƒAƒ‹ƒ~ƒjƒEƒ€‡‹à‚Ì’´”÷×—±‹­‰»‚ÆŽžŒøÍo‹­‰»‚ð•À—§‚³‚¹‚é‚R‚‚̕ûô
i œAàVˆê, “‚ ‰i–Q, –x“c‘PŽ¡, ¼“cŒ’“ñ, —› ¸Œ´, Ž›“c‘å« j‚Ü‚Ä‚è‚ , 55, 45-52, (2016).
     

     
(5) Comparative and complementary characterization of precipitate microstructures in Al-Mg-Si(-Li) alloys by transmission electron microscopy, energy dispersive X-ray spectroscopy and atom probe tomography
( Y. Koshino, M.Kozuka, S.Hirosawa, Y.Aruga ) Journal of Alloys and Compounds, 622, 765-770, (2015).
     

     
(6) 3ŽŸŒ³ƒAƒgƒ€ƒvƒ[ƒu‚É‚æ‚éƒAƒ‹ƒ~ƒjƒEƒ€‡‹à’†‚̃iƒm‘gD‰ðÍ
i œAàVˆêA¬–¸’qA‹ÚàVˆ¤A¬‹{—ÇŽ÷A—¢’B—Y jŒy‹à‘®C64, 542-550, (2014).
     

     
(7) Methods for designing concurrently strengthened severely deformed age-hardenable aluminum alloys by ultrafine-grained and precipitationhardenings
i S.Hirosawa, T.Hamaoka, Z.Horita, S.Lee, K.Matsuda, D.Terada jMetallurgical and Materials Transactions A, 44, 3921-3933 , (2013).
     

     
(8) ’´”÷×—±‹­‰»‚ÆŽžŒøÍo‹­‰»‚ð•À—§‚³‚¹‚éV‹KƒAƒ‹ƒ~ƒjƒEƒ€‡‹à“WLÞ‚ÌŠJ”­‚Æ‚»‚̇‹àÝŒvŽw“±Œ´—‚ÌŠm—§
i œAàVˆê, à_‰ª I, –x“c‘PŽ¡, —› ¸Œ´, ¼“cŒ’“ñ, Ž›“c‘å« j ‚Ó‚¥‚ç‚Þ, 17, 769-774 (2012).
     

     
(9) ‚“]ˆÊ–§“x‚¨‚æ‚Ñ’´”÷×—±‘gD‚ð‚à‚ÂAl-Mg-Si‡‹à‚ÅŠÏŽ@‚³‚ê‚é‹£‡ÍoŒ»Û‚ÌŽÀŒ±“I‚È‚ç‚Ñ‚ÉŒvŽZ‰ÈŠw“IŒ¤‹†
i ‘“c“N–ç, œAàVˆê, –x“c‘PŽ¡, ¼“cŒ’“ñ j“ú–{‹à‘®Šw‰ïŽ, 75, 283-290 (2011).
     

     
(10) ƒAƒ‹ƒ~ƒjƒEƒ€‚¨‚æ‚уAƒ‹ƒ~ƒjƒEƒ€‡‹à‚Ì”«Ž¿ Al-CuŒn‡‹à
i œAàVˆê j Œy‹à‘®, 61, 341-354 (2011).
     

     
(11) Combined effect of pre-straining and pre-aging on bake-hardening behavior of an Al-0.6mass%Mg-1.0mass%Si alloy
( T.Masuda, Y.Takaki, T.Sakurai, S.Hirosawa ) Mater.Trans., 52, 325-332 (2010).
     

     
 
’˜‘
(1) Advanced Materials in Aerospace Engineering
( S. Hirosawa et al. ) Trans Tech Publications Inc., 161-166, (2016).

(2) Ž©“®ŽÔ‚ÌŒy—ʉ»ƒeƒNƒmƒƒW[ Þ—¿E¬Œ`EÚ‡E‹­“xA”R”ïE“d”ï«”\‚ÌŒüã‚ð–ÚŽw‚µ‚Ä ‘æ‚PÍ ‘æ‚Qß ‘æ‚P€@‹‘å‚Ђ¸‚݉ÁH‚ÆŽžŒøÍo‹­‰»‚ð•À—§‚³‚¹‚éV‹KƒAƒ‹ƒ~ƒjƒEƒ€‡‹à‚ÌŠJ”­
i œAàVÂˆê ‹¤’˜ j ƒGƒkEƒeƒB[EƒGƒX, 31-39 (2014).

(3) ƒiƒmƒ}ƒeƒŠƒAƒ‹HŠw‘åŒn ‘æ‚QŠªƒiƒm‹à‘® ‘æ‚VÍ ‘æ‚Sß ƒ‚ƒ“ƒeƒJƒ‹ƒ–@‚ð—p‚¢‚½ŒvŽZ‹@ƒVƒ~ƒ…ƒŒ[ƒVƒ‡ƒ“
i œAàVÂˆê ‹¤’˜ j ƒtƒWEƒeƒNƒmƒVƒXƒeƒ€, 465-472 (2006).
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