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Featured researches published by Muneaki Ikeda.


Defect and Diffusion Forum | 2008

Ternary Interdiffusion in L12-Ni3Al with Ir Alloying Addition

Machiko Ode; N. Garimella; Muneaki Ikeda; Hideyuki Murakami; Yongho Sohn

Average ternary interdiffusion coefficients in Ni3Al with Ir additions have been determined using solid-to-solid diffusion couples annealed at 1200°C for 5 hours. Disc shaped alloy specimens were prepared by the vacuum arc melting at compositions of Ni-24Al, Ni-25Al, Ni-26Al, Ni-23.5Al-1Ir, Ni-24.5Al-1Ir, Ni-23Al-2Ir, Ni-23Al-2Ir, Ni-24Al-2Ir, Ni-23Al-3Ir (at.%). Surfaces of alloys were polished down to 1200 grit and diffusion couples were assembled in Si3N4 jig for initial bonding heat treatment at 1200°C for 0.5 hours. Additional diffusion anneal was carried out at 1200°C for 4.5 hours outside of Si3N4 jig so that diffusion couples can be water quenched. Concentration profiles of individual components were measured by electron probe microanalysis using pure standard of Ni, Al and Ir. Interdiffusion flux of individual component was determined directly from the experimental concentration profiles, and the moments of interdiffusion flux were examined to calculate the average ternary interdiffusion coefficients, D˜ ij k either with Al or Ni as dependent component. Calculated interdiffusion coefficients suggest that Ir-alloyed Al2O3-forming oxidation resistant coatings would be beneficial to reduce the interdiffusion flux of Ni from superalloy substrates to the coating, and reduce the interdiffusion flux of Al from the coating to the superalloy substrate.


Archive | 2006

Ultrahigh-strength thin steel sheet

Junichiro Kinugasa; Fumio Yuse; Yoichi Mukai; Shinji Kozuma; Hiroshi Akamizu; Kouji Kasuya; Muneaki Ikeda; Koichi Sugimoto


Intermetallics | 2008

Effects of Ir or Ta Alloying Addition on Interdiffusion of L12–Ni3Al

N. Garimella; M. Ode; Muneaki Ikeda; Hideyuki Murakami; Yongho Sohn


Archive | 2006

ULTRAHIGH-STRENGTH STEEL SHEET

Junichiro Kinugasa; Fumio Yuse; Yoichi Mukai; Shinji Kozuma; Hiroshi Akamizu; Kouji Kasuya; Muneaki Ikeda; Koichi Sugimoto


Archive | 2008

Method for manufacturing high-strength hot-dip galvannealed steel sheet, and high-strength hot-dip galvannealed steel sheet

Muneaki Ikeda; Junichiro Kinugasa; Yoichi Mukai; Fumio Yuse; 陽一 向井; 宗朗 池田; 文雄 湯瀬; 潤一郎 衣笠


Archive | 2013

HIGH STRENGTH COLD-ROLLED STEEL SHEET AND MANUFACTURING METHOD THEREFOR

Tomokazu Masuda; Katsura Kajihara; Toshio Murakami; Masaaki Miura; Muneaki Ikeda


Archive | 2006

HIGH-STRENGTH STEEL SHEET FOR BAKING/HARDENING, AND METHOD FOR PRODUCING THE SAME

Muneaki Ikeda; Koji Kasuya; Junichiro Kinugasa; Yoichi Mukai; Fumio Yuse; 陽一 向井; 宗朗 池田; 文雄 湯瀬; 康二 粕谷; 潤一郎 衣笠


Archive | 2007

High-strength thin steel sheet

Muneaki Ikeda; Kouji Kasuya; Yoichi Mukai; Fumio Yuse; Junichiro Kinugasa


Archive | 2009

Ultrahigh-strength steel sheet excellent in hydrogen embrittlement resistance and workablility, and manufacturing method therefor

Muneaki Ikeda; Yukihiro Utsumi


Archive | 2006

Ultrahigh-strength thin steel sheet for punching

Hiroshi Akamizu; Muneaki Ikeda; Shinji Kamitsuma; Koji Kasuya; Junichiro Kinugasa; Yoichi Mukai; Koichi Sugimoto; Fumio Yuse; 伸二 上妻; 陽一 向井; 公一 杉本; 宗朗 池田; 文雄 湯瀬; 康二 粕谷; 潤一郎 衣笠; 宏 赤水

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