1.論文
・Y. Matsumoto, T. Miyashita, K. Takai: "Hydrogen behavior in high strength steels during various stress applications corresponding to different hydrogen embrittlement testing methods", Mater. Sci. Eng. A, 735, 61-72(2018).
T. Nagase, T. Ito, Y. Nishimura, H. Suzuki and K. Takai:Hydrogen Embrittlement and Local Characterization at Crack Initiation Associated with Phase Transformation of High-strength Steel Containing Retained Austenite”, ISIJ International,vol.58, pp.349-358 (2018).
・Y. Matsumoto and K.Takai: “
Method of evaluating hydrogen embrittlement susceptibility of tempered martensitic steel showing intergranular fracture”, Metallurgical and Materials Transactions A, Vol. 49A (2018) 490-497.

今野良佑,真鍋敏之,平上大輔,高井健一:"水素存在下で弾性・塑性域破壊した冷間伸線パーライト鋼の格子欠陥形成挙動", 鉄と鋼,104 (2018) 36-45.
・Motomichi Koyama, Takuro Ogawa, Dingshun Yan, Yuya Matsumoto, Cemal Cem Tasan, Kenichi Takai, Kaneaki Tsuzaki:"Hydrogen desorption and cracking associated with martensitic transformation in Fe-Cr-Ni-Based austenitic steels with different carbon contents", International Journal of Hydrogen Energy, 42 (2017), 26423-26435.
M. Hattori, H. Suzuki, Y. Seko and K.Takai“The Role of Hydrogen-Enhanced Strain-Induced Lattice Defects on Hydrogen Embrittlement Susceptibility of X80 Pipeline Steel”, JOM, 69,,pp.1375-1380 (2017).
・Y. Matsumoto and K.Takai: “Method of evaluating delayed fracture susceptibility of tempered martensitic steel showing quasi-cleavage fracture”, Metallurgical and Materials Transactions A, Vol. 48A (2017) 666-677.
M. Kaneko,T. Doshida and K. Takai: "Changes in mechanical properties following cyclic prestressing of martensitic steel containing vanadium carbide in presence of
nondiffusible hydrogenl
", Mater. Sci. Eng. A, 674 (2016) 375-383.
長瀬拓
,伊藤卓弥,西村貴郎,鈴木啓史,高井健一:"残留オーステナイトを含む高強度鋼の水素脆化と相変態に起因するき裂発生点の局所解析", 鉄と鋼,102 (2016) 534-543
・D. HIRAKAMI, T.MANABE, K. USHIODA, K. NOGUCHI, K. TAKAI, Y. HATA, S. HATA and H. NAKASHIMAEffect of Aging Treatment on Hydrogen Embrittlement of Drawn Pearlitic Steel Wire, ISIJ International, vol.56, pp.893-898 (2016).
M. Koyama, Y. Abe, K. Saito, E. Akiyama, K. Takai and K. Tsuzaki:Martensitic Transformation-Induced Hydrogen Desorption Characterized by Utilizing Cryogenic Thermal Desorption Spectroscopy during Cooling, Scripta Materialia, vol.122, pp.50-53 (2016).
M. Ichiba, K.Takai andJ. SakaiEffects of Test Conditions on Corrosion Reactions and Hydrogen Absorption in Hydrogen Embrittlement Tests Using an Ammonium Thiocyanate Solution, ISIJ International, vol.56, pp.397-404 (2016).
市場幹之,高井健一, 酒井潤一チオシアン酸イオン含有水溶液中での鋼材の腐食反応と水素吸蔵に及ぼす比液量と溶液pHの影響,材料と環境, vol. 65, pp.67-74 (2016).
平上大輔,真鍋敏行,潮田浩作,野口慧,高井健一羽田佳哲波多聡中島英治伸線パーライト鋼の耐水素脆化特性に及ぼす時効処理の影響,鉄と鋼, vol. 101, pp.59-64 (2015).
M. Ichiba, J. Sakai, T. Doshida and K.TakaiCorrosion reaction and hydrogen absorption of steel for prestressed concrete in a 20 mass% ammonium thiocyanate solutionl, Scripta Materialia, vol.102, pp.59-62 (2015).
・鈴木啓史, 福島寛登, 高井健一,:“純チタンの水素脆化における水素化物および固溶水素の役割”,日本金属学会誌, vol.79. pp.82-88 (2015).
T. Doshida and K.TakaiDependence of hydrogen-induced lattice defects and hydrogen embrittlement of cold-drawn pearlitic steels on hydrogen trap state, temperature, strain rate and hydrogen content, Acta Materialia, vol.79, pp.93-107 (2014).
T. Doshida, M. Nakamura, H. Saito, T. Sawada and K.TakaiHydrogen-enhanced lattice defect formation andhydrogen embrittlement of cyclically prestressedtemperedmartensitic steel, Acta Materialia, vol.61, pp.7755-7766 (2013).
・高井健一, 廣田翔子, 鈴木啓史, 瀬古祐介, 本橋裕之水素ガス暴露および電解チャージによる冷間圧延純鉄中の水素存在状態変化”,日本金属学会誌, vol.77. pp.615-621 (2013).
Y. Matsumoto, K. Takai, M. Ichiba, T. Suzuki, T. Okamura, S. MizoguchiReduction of Delayed Fracture Susceptibility of Tempered Martensitic Steel through Increased Si Content and Surface Softening”, ISIJ International,vol.53, pp.714-722 (2013).
T.Kasuya, Y.Hashoba, H.Inoue, S.Nakamura and K.Takai Hydrogen diffusion in weld metals with retained austenite and its application to the welded joints”, Weld World, vol.57, pp.581-593 (2013).
松本優,高井健一市場幹之鈴木崇久岡村司溝口茂Si添加と表層軟化による焼戻しマルテンサイト鋼の遅れ破壊感受性低減,鉄と鋼, vol. 99, pp.236-244 (2013).
T. Doshida, H. Suzuki, K. Takai, N. Oshima and T. Hirade:“Enhanced Lattice Defect Formation Associated with Hydrogen and Hydrogen Embrittlement under Elastic Stress of a Tempered Martensitic Steel”, ISIJ International,vol.52, pp.198-207 (2012).
H. Suzuki and K. Takai“Summary of round-robin tests for standardizing hydrogen analysis procedures”, ISIJ International,vol.52, pp.174-180 (2012).
T. Doshida, K.Takai and M.Ichiba:Hydrogenabsorption behavior of steel bar for prestressed concrete in a solution of ammonium thiocyanate”,Corrosion Engineering,vol.61, pp.249-246 (2012).
Y. Hagihara, T.Shobu, N.Hismori, h.Sizuki K.Takai and K.Hirai“Delayed fracture using CSRT and hydrogen Trapping characteristic of V-bearing high-strength steel”, ISIJ International,vol.52, pp.298-306 (2012).
・土信田知樹,高井健一,市場幹之:チオシアン酸アンモニウム水溶液中におけるPC鋼中の水素吸蔵挙動,材料と環境, vol. 61, pp.249-256 (2012).
・土信田知樹,鈴木啓史,高井健一,大島永康,平出哲也:弾性応力下における焼戻しマルテンサイト鋼中の水素誘起格子欠陥の形成と水素脆化,鉄と鋼, vol. 98, pp.197-206 (2012).
H. Suzuki, H. Taniguchi, N. Hanada, K. Takai, and Y. Hagihara, “Effect of deformation on hydrogen absorption and desorption properties of titanium”, J. Alloys and Compounds,509S,S759-S762(2011).           
・N. Hanada, A. Kamura, H. Suzuki, K. Takai, T., Ichikawa, and Y. Kojima, “Electrochemical charge and discharge properties for the formation of magnesium and aluminum hydrides”, J. Alloys and Compounds,509S,S584-S587(2011).      .

萩原行人,大場剛,久森紀之,鈴木啓史,高井健一高強度鋼の遅れ破壊特性に及ぼす塑性ひずみと予荷重の影響,鉄と鋼, vol. 97, pp.623-630 (2011).
萩原行人,菖蒲敬人,久森紀之,鈴木啓史,高井健一, 平井敬二V添加鋼のCSRTによる遅れ破壊特性評価と水素トラップ挙動,鉄と鋼, vol. 97, pp.143-151 (2011).
・N. Hanada, S. Hino, T. Ichikawa, H. Suzuki, K. Takai, and Y. Kojima, “Hydrogen generation by elecrolysis of liquid ammonia”, Chem. Comm.,46,pp.7775-7777 (2010).

・H.Shoda, H.Suzuki
K.Takai and Y.Hagihara
“Hydrogen Desorption Behavior of Pure Iron and Inconel 625 during Elastic and Plastic Deformation”, ISIJ International,vol.50, pp.115-123 (2010).
・鈴木啓史,小林大輔,花田信子,高井健一,萩原行人:電解チャージにより水素吸蔵した純アルミニウムにおける水素存在状態と引張特性に与える水素の影響,日本金属学会誌、vol.74, pp.65-71(2010)
K.Ebihara, H.Kaburaki,T.Suzudo, and K.Takai“A Numerical Study on the Validity of the Local Equilibrium Hypothesis in Modeling Hydrogen Thermal Desorption Spectra”, ISIJ International, vol.49, pp.1907-1913 (2009).
・生田裕樹
,鈴木啓史,高井健一,萩原行人:弾性・塑性変形過程における純鉄およびInconel 625の水素放出挙動,鉄と鋼, vol. 95, pp.573-581 (2009).
萩原行人,伊藤睦人,切替大善,久森紀之,鈴木啓史,高井健一CSRT法による遅れ破壊特性の確率統計的評価,鉄と鋼, vol. 95, pp.489-497 (2009).
K.Takai, H.Shoda, H.Suzuki and M.Nagumo“Lattice defects dominating hydrogen-related failure of metals”, Acta Materialia, vol.56, pp.5158-5167 (2008).
高井健一,村上耕太,矢部宣明,鈴木啓史,萩原行人:“Inconel 625SUS 316Lの水素昇温脱離特性と電解チャージによる高圧水素ガス環境の模擬:日本金属学会誌, vol.72, pp.448-456 (2008).
・海老原健一,鈴土知明,蕪木英雄,高井健一,竹林重人純鉄及び共析鋼の昇温脱離分析による水素放出プロファイルのモデリング:鉄と鋼, vol.94, pp.522-531 (2008).
・萩原行人,伊藤睦人,久森紀之,鈴木啓史,高井健一,秋山英二:“CSRT法による高強度鋼の遅れ破壊特性の評価:鉄と鋼, vol.94, pp.215-221 (2008).
K.Takai“Hydrogen degradation and Its Mechanism in FCC Metals for High-Pressure Hydrogen Storage Tanks”, Advances in Materials Science, vol.7, pp.205-210 (2007) . 
K.Ebihara, T.Suzudo, H.Kaburaki, K.Takai and S.Takebayashi“Modeling of Hydrogen Thermal Desorption Profile of Pure Iron and Eutectoid Steel”, ISIJ International, vol.47, pp.1131-1140 (2007). 
N.Nagumo, S.Sekiguchi, H.Hayashi and K.Takai:“Enhanced susceptibility to delayed fracture in pre-fatigued martenstic stee”, Materials Science & Engineering A, vol.A344, pp.86-91(2003).
K.Takai and R.Watanuki“Hydrogen in Trapping States Innocuous to Environmental Degradation of High-Strength Steels”, ISIJ International,vol.43, pp.520-526 (2003).
K.Takai, Y.Chiba, K.Noguchi and A.Nozue: “Visualization of Hydrogen Desorption Process from Ferrite, Pearlite and Graphite by Secondary Ion Mass Spectrometry”, Metallurgical and Materials Transactions A, vol.33A, pp.2659-2665 (2002).
M.Nagumo, M.Nakamura and K.Takai“Hydrogen Thermal Desorption Relevant to Delayed-Fracture Susceptibility of High-Strength Steels”, Metallurgical and Materials Transactions A, vol.32A, pp.339-347 (2001).
K.Takai: “Visualization of Hydrogen in Steels by Secondary Ion Mass Spectrometry”, Corrosion Engineering, vol.49, pp.395-405 (2000).  
・高井健一,野末章:共析鋼の水素吸蔵特性に及ぼす恒温変態温度および伸線加工の影響”,日本金属学会誌, vol.64, pp.669-676 (2000).
・野末章,高井健一,大戸路暁,藤野俊之:“Ti-10V-2Fe-3Al合金の水素脆性き裂進展速度に及ぼす組織と力学因子の影響”,材料と環境 , vol.49, pp.619-624 (2000).
G.Yamauchi, K.Takai and H.Saito,“PTFE Based Water Repellent Coating for Telecommunication Antennas”, IEICE Trans. Electronics, vol.E83-C, pp.1139-1141 (2000).
A.Nakajima, K.Hashimoto, T.Watanabe, K.Takai, G.Yamauchi and A.Fujishima,“Transparent Superhydrophobic Thin Films with Self-Cleaning Properties”, Langmuir, vol.16, pp.7044-7047 (2000).
・村上敬宜,小西寛,高井健一,村上保夫:超長寿命疲労破壊に及ぼす介在物にトラップされた水素の影響”,鉄と鋼, vol.86, pp.777-783 (2000).
A.Nozue, K.Takai, M.Ohto and T.Fujino: “Effect of Microstructural and Mechanical Factors on Crack Propagation Rate of Hydrogen Embrittlement in Ti-10V-2Fe-3Al Alloys”, Corrosion Engineering, vol.49, pp.961-973 (2000).
M.Nagumo, K.Takai and N.Okuda: “Nature of Hydrogen Trapping Sites in Steels Induced by Plastic Deformation”, Alloys and Compounds, vol.29, pp.310-316 (1999).
・斎藤博之,高井健一,山内五郎,菅原宣義,林幸成:着氷が電波反射に及ぼす影響のはっ水性材料による軽減効果”,電子情報通信学会論文誌, vol.J81 C-2, pp.342-348 (1998).・高井健一,山内五郎,中村真理子,南雲道彦:冷間伸線加工した純鉄および共析鋼の昇温脱離法による水素吸蔵特性評価”,日本金属学会誌, vol.62, pp.267-275 (1998).
・斎藤博之,高井健一,高沢壽佳:はっ水性表面への湿雪の付着に関する一検討”,表面技術, vol.48, pp.235-236 (1997).
G.Yamauchi, K.Takai and H.Saito“Water- and Ice- Repellent Coatings”, Surface Coatings International, vol.80, pp.168-171 (1997).
・斎藤博之,高井健一,高沢壽佳,山内五郎:はっ水性塗膜上への着雪量の検討”,材料, vol.46, pp.551-554 (1997).
H.Saito, K.Takai and G.Yamauchi“A Study on Ice Adhesiveness to Water-Repellent Coating”, Mater. Science Research International, vol.3, pp.185-189 (1997).
H.Saito, K.Takai, G.Yamauchi and H.Takazawa“A Study on Snow Sticking Weight  to Water-Repellent Coating”, Mater. Science Research International, vol.3, pp.216-219 (1997).
・斎藤博之,高井健一,山内五郎,西千恵美:はっ水性表面の機能低下に関する検討”,材料と環境, vol.46, pp.445-448 (1997).   
・井筒香,高井健一,南雲道彦:高強度鋼の遅れ破壊における変動応力の効果”,鉄と鋼, vol.83, pp.371-376 (1997).
H.Saito, K.Takai, G.Yamauchi and C.Nishi“Deterioration of Water Repellency, Corrosion Engineering, vol.46, pp.537-545 (1997).
・斎藤博之,高井健一,高沢壽佳:はっ水性表面に対する氷付着力と表面粗さに関する一検討”,表面技術, vol.47, pp.189-190 (1996).
・渡辺純,高井健一,南雲道彦:粒界フェライト析出による高強度鋼の遅れ破壊強度の改善”,鉄と鋼, vol. 82, pp.947-952 (1996).
・高井健一,本間芳和,井筒香,南雲道彦:昇温脱離した高強度鋼中水素の二次イオン質量分析法によるトラップサイトの同定”,日本金属学会誌, vol.60, pp.1155-1162 (1996).
・斎藤博之,高井健一,高沢壽佳,山内五郎:はっ水性表面への氷の付着に関する熱力学面からの一考察”,表面技術, vol.47, pp.279-280 (1996).
G.Yamauchi, J.D.Miller, K.Takai, H.Saito, H.Takazawa and T.Ueda“The Wetting Characteristics of PTFE Particulate Composites”, Trans. JIM, Vol.37, pp.721-728 (1996).
G.Yamauchi, J.D.Miller, K.Takai, H.Saito, H.Takazawa and T.Ueda“Wetting Characteristics of Newly Developed Water-repellent Material”, Colloids and Surfaces, A, Physicochem. Eng. Aspects 116, p.125-134 (1996).
K.Takai, J.Seki and Y. Homma“Observation of Trapping Sites of Hydrogen and Deuterium in High-strength Steels with Secondary Ion Mass Spectrometry”, Mater. Trans. JIM, vol.36, pp.1134-1139 (1995).
・高井健一,関純一,本間芳和:冷間伸線型および熱処理型PC鋼材の遅れ破壊過程における水素吸蔵特性の比較”,鉄と鋼, vol.81, pp.1025-1030 (1995).
・斎藤博之,高井健一,高沢壽佳:ガラス上に形成したPTFE皮膜上の水滴のESEMによる観察”,表面技術, vol.46, pp.670- 671(1995).
・高井健一,関純一,山内五郎:耐遅れ破壊特性に優れたSi及びSi,Ca複合添加高強度鋼の水素吸蔵特性”,鉄と鋼, vol.80, pp.243-248 (1994).
・高井健一,関純一,山内五郎,本間芳和:二次イオン質量分析法による高強度鋼中の水素,重水素のトラップサイトの観察”,日本金属学会誌, vol.58, pp.1380-1385 (1994).
・高井健一,関純一,崎田栄一,高山康一:高強度鋼の遅れ破壊特性に及ぼすSi, Caの複合添加の影響”,鉄と鋼, vol.79, pp.685-691 (1993).
H.Nakae, K.Takai, H.Koizumi and K.Okauchi“Nucleation of Graphite in Inoculated Cast Iron”, Trans. of the Japan foundrymen's Society, vol.11, pp.34-39 (1992).
・中江秀雄,高井健一,岡内宏爾,小泉弘:接種による黒鉛の不均質核生成について”,鋳物, vol.63, pp.692-698 (1991).

2.国際会議プロシーディングス

・M. Nagumo and K. Takai:"Promoted generation of damage and premature fracture due to hydrogen-enhanced creation of strain-induced vacancies", Materials Performancein Hydrogen Environments, (2017),36-44.
・K. EBIHARA, K. SAITO and K. TAKAI: "DETERMINATION OF DETRAPPING AND TRAPPING RATE CONSTANTS FOR HYDROGEN BASED ON EXPERIMENTAL THERMAL DESORPTION SPECTRA", Materials Performancein Hydrogen Environments,(2017),470-477.

・Y. Matsumoto, N. Kurihara, H. Suzuki and K. Takai: "Hydrogen Embrittlement and Hydrogen-Enhanced Strain-Induced Vacancies in α-Iro", TMS 2017 146th Annual Meeting & Exhibition Supplemental Proceedings, pp.571-577(2017).
・R. Konno, T. Manabe, N. Matsui, D. Hirakami and K. Takai: "Factors Causing Hydrogen Embrittlement of Cold-Drawn Pearlitic Steel Fractured Under Elastic/Plastic Regio", TMS 2017 146th Annual Meeting & Exhibition Supplemental Proceedings, pp.579-586(2017).

M.Kitamura, H.Suzuki, Y.Hagihara, K. Takai: “Hydrogen dragging and transportation by moving dislocation in Type 316L and 304”Proceedings ofMaterials Science & Technology 2011, MS&T’11 CD-ROM, pp.pp.1218-1225(2011).
・T. Nakamoto, H. Suzuki, Y. Hagihara K. Takai and K. Takasawa: “Hydrogen Embrittlement and Lattice Defect Formation Enhanced by Hydrogen and Strain of High-strength Low-alloy Steel”Proceedings ofMaterials Science & Technology 2011, MS&T’11 CD-ROM, pp.pp.1226-1233(2011).
T. Doshida, H. Suzuki, Y. Hagihara and K. Takai: “Enhanced Lattice Defect Formation Associated with Hydrogen and Hydrogen Embrittlement under Elastic Stress of High-Strength Steel”Proceedings ofMaterials Science & Technology 2011, MS&T’11 CD-ROM, pp.pp.12691276-1225(2011).
・N. Abe, H. Suzuki and K. Takai N. Ishikawa, H. Sueyoshi: “Identification of hydrogen trapping sites, binding energies, and occupation ratios at vacancies, dislocations and grain boundaries in iron of varying carbon content”Proceedings ofMaterials Science & Technology 2011, MS&T’11 CD-ROM, pp.pp.1277-1284(2011).
Y. Matsumoto, K. Takai, M. Ichiba, S. Mizoguchi and T. Okamura: “Reduction of Delayed Fracture Susceptibility through Increased Si Content and Surface-softening of Tempered Martensitic Steel”Proceedings ofMaterials Science & Technology 2011, MS&T’11 CD-ROM, pp.pp.1305-1312(2011).

K.Takai and H.Shoda: “Effect of Lattice Defects Induced by Hydrogen and Strain on Environmental Degradation”, TMS2008 Supplemental Proceedings, vol.3, pp.217-222 (2008).
H.Shoda, H.Suzuki, K.Takai and Y.Hagihara: “Role of Vacancies and Dislocations in Hydrogen Degradation”Proceedings ofMaterials Science & Technology 2008, MS&T’08 CD-ROM, pp.1348-1358(2008).
K.Takai and H.Shoda: “Lattice Defect Formation and Degradation Enhanced by Hydrogen and Strain of Metals”, Proceedings of International Hydrogen Conference 2008, (2008) in press.K.Takai: “Effect of Lattice Defects Induced by Hydrogen and Stress on Environmental Degradation”, Corrosion Control 007 Conference Proceedings CD-ROM, paper No.070, pp.1-7 (2007).
K.Takai: “Hydrogen Absorption and Degradation Susceptibility of Cold-Drawn High-Strength Stainless Steels”, Proceedings of EUROCORR 2006, CD-E-179, pp.1-8(2006).
K.Murakami, N.Yabe, H.Suzuki, K.Takai, Y.Hagihara and Y.Wada: “Substitution of High-Pressure Charge by Electrolysis Charge and Hydrogen Environment Embrittlement Susceptibilities for Inconel 625 and SUS 316L”, Proceedings of PVP2006-ICPVT-11, 2006 ASME Pressure Vessels and Piping Division Conference, CD-MF-4-1, pp.1-8 (2006).
K.Takai, N.Yabe, K.Murakami and Y.Hagihara: “Hydrogen State and Degradation of Type 316L and Alloy 625 for High-Pressure Hydrogen Storage Tank of Fuel Cell”, Proceedings of EUROCORR 2005, E-179, pp.1-8 (2005).
K.Takai: “Hydrogen in Trapping States Harmful and Innocuous to Environmental Degradation of High-Strength Steels”, Proceedings of Environment-Induced Cracking of Metals, vol.1, pp.273-282(2004).
K.Takai: “Hydrogen in Trapping States Innocuous to Environmental Degradation of High-Strength Steels”, Environmental Degradation of Materials and Corrosion Control in Metals, pp.217-229 (2003).
K.Takai, T.Noda, D.Yamada and A.Nozue: “Environmental Factors on Embrittlement of Vitreous Silica Fibers”, IPACK-2001, CD-ROM, pp.1-5 (2001).
K.Takai, Y.Chiba and A.Nozue: “Visualization of Hydrogen Desorption Process from ferrite, pearlite, and graphite by Secondary Ion Mass Spectrometry”, Hydrogen Effects on Material Behavior, TMS, pp.45-53 (2001).
K.Takai, T.Noda, D.Yamada and A.Nozue: “Environmental Factors on Embrittlement of Vitreous Silica Fibers”, Hydrogen Effects on Material Behavior, TMS, pp.419-426 (2001).
K.Takai and A.Nozue: “Hydrogen Permeation and Trapping Characteristics of Cold-Drawn Pure Iron and Eutectoid Steel Evaluated by Thermal Desorption Spectrometry”, Corrsion/2000, Paper 468, pp.1-10 (2000).
H.Saito, G.Yamauchi, K.Takai, C.Nishi and T.Ueda: “A Study on Ice Adhesiveness to Newly-Developed Water-Repellent Coating”,ACCM-2000,pp.389-392 (2000).
K.Takai,  H.Saito and G.Yamauchi: “Surface Characteristics of Water-repellent Composite Coating having Photocatalytic Reaction”,Composites: Design for Performance, pp.220 (1997).
H.Saito, K.Takai and G.Yamauchi“Water-Repellent and Anti-Ice Deposition Coatings”, Fluorine in Coatings, Paper 28, pp.1-7 (1997).
K.Takai and J. Seki: “Hydrogen Trapping Sites of High-strength Steels at Delayed Fracture”, Corrosion/96, paper 248, pp.1-13 (1996).
H.Nakae, K.Okauchi, K.Takai, H.Koizumi and T.Oka: “Role of Calcium for Inoculation of Cast Iron”, 60th World Foundry Congress, paper 24, pp.1-8 (1993).
H.Nakae, K.Takai, H.Koizumi and K.Okauchi: “Nucleation of Graphite in Inoculated Cast Iron”, The First Asia Foundry Congress, pp.19-24 (1992).

3.解説・総説等

・南雲道彦、高井健一: "鋼の新しい耐水素脆化評価法と材料設計に向けて", ふぇらむ, 22,(2017) 442.
・MotomichiKoyama, Michael Rohwerder, Cemal Cem Tasanc, Asif Bashirb, ,Eiji Akiyama, Kenichi Takai, DierkRaabe and Kaneaki Tsuzaki: Recent progress in microstructural hydrogen mapping in steels:quantification, kinetic analysis, and multi-scale characterisation, MATERIALS SCIENCE AND TECHNOLOGY,(2017), http://dx.doi.org/10.1080/02670836.2017.1299276
・高井健一:水素脆化研究における水素解析技術の進歩と展望 〜金属組織から原子スケール対応の水素解析を目指して〜”,ふぇらむ,vol.21, pp.639-644 (2016).
・高井健一:水素社会に向けた水素脆化研究の基盤構築”,DENSO TECHNICAL REVIEW,vol.20, pp.8-13 (2015).
・高井健一:
金属材料中の水素存在状態と水素脆化”,燃料電池,vol.15, pp.14-20 (2015).
・高井健一:
鉄鋼材料の水素脆化研究における基盤構築と最近の展開”,Sanyo technical Report,vol.22, pp.14-20 (2015).
・高井健一,木周作,大村朋彦:水素脆化の基盤構築研究の進展と今後の展望”,ふぇらむ,vol.19, pp.911-919 (2014).
・高井健一:
水素存在状態と水素脆性”,材料と環境,vol.60, pp.230-235 (2011).
・K.Takai:Hydrogen Existing States and Hydrogen Embrittlement”,Corrosion Engineering,vol.60, pp.181-187 (2011).
・高井健一:水素存在状態と水素脆性”,材料と環境,vol.60, pp.230-235 (2011).
・高井健一:金属材料中の水素存在状態”,日本機械学会論文集(A編),vol.70, pp.1027-1035(2004).
・高井健一:金属・イオン・共有結合性材料の環境脆化”,熱処理, vol.43, pp.10-17 (2003).
・高井健一:強伸線パーライト鋼の水素存在状態と遅れ破壊”,日本金属学会会報まてりあ, vol.39, pp.239-242 (2000).
・高井健一:二次イオン質量分析法による鉄鋼材料中の水素の可視化”,材料と環境,vol.49, pp.271-276 (2000).
・高井健一,関純一:冷間伸線型および熱処理型高強度鋼の遅れ破壊特性に及ぼす水素の挙動”,NTT R&D, vol.48, pp.325-329,(1999).
・高井健一,斎藤博之,山内五郎:はっ水性材料による衛星用アンテナの着雪防止”, NTT  R&D, vol.47, pp.31-36, (1998).
・高井健一:二次イオン質量分析法と昇温脱離法による高強度鋼中の水素の同定”,遅れ破壊解明の新展開[日本鉄鋼協会編], pp.41-46, (1997).
・高井健一:強化組織および強度レベルで整理した環境強度”,鉄鋼の高強度化と信頼性向上[日本鉄鋼協会編], pp.189-193, (1997).
・高井健一:強加工パーライト鋼と焼戻しマルテンサイト鋼の耐水素脆性の比較”,鉄鋼の高強度化と信頼性向上[日本鉄鋼協会編]pp.194-198 (1997).
・高井健一,崎田栄一,山内五郎:“Ca添加高強度鋼の遅れ破壊特性に及ぼす球状介在物の影響”,材料試験技術, vol. 41, pp.167-172 (1996).
・高井健一:高強度鋼中の水素分析”,材料試験技術, vol.40, pp.15-20 (1995).
・高井健一:強化組織に支配される水素の挙動をみる”,鉄鋼の高強度化の最前線[日本鉄鋼協会編], pp.165-171 (1995).
・高井健一,関純一,山内五郎,三谷進:電気化学的透過法と真空加熱法により測定したSi添加高強度鋼の水素特性”,材料試験技術, vol.39, pp.75-79 (1994).

4.学術講演

 省略

5.特許

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