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Volume 1: Aircraft Engine; Ceramics; Coal, Biomass and Alternative Fuels; Education; Electric Power; Manufacturing Materials and Metallurgy | 2010

Development of Innovative Coating Technology, MSCoating, Using Electrical Discharge

Yoshikazu Nakano; Takeshi Araki; Akira Yamada; Hiroyuki Teramoto; Masahiro Okane; Akihiro Goto

MSCoating is a new coating technology using pulse discharge. This coating technology, which is developed by Mitsubishi Electric and IHI, has been put into practical use as an anti-wear coating for low-pressure turbine blades in aero engines. Normally, Z-notch, which is the edge of a low-pressure turbine blade in an aero engine, is treated with anti-wear coating by welding because these edges are frictioned together while the engine is running. However, coating by welding requires pre-heating, removal of excess thickness and advanced skill to ensure high reliability. Therefore, improvement of productivity and cost reduction are required for the anti-wear coating of Z-notch. MSCoating is an innovative coating technology that is able to meet these requirements. MSCoating can eliminate the above processing needed for coating by welding, and has superb productivity and reliability for machine work. It is confirmed that anti-wear performance of the coating formed by MSCoating is about 10 times as high as that formed by welding in a fretting wear test under conditions similar to the real operating condition. It is suggested that hard precipitate such as carbide and oxide of chrome and cobalt oxide in the MSCoating layer play a role in the advantages of the anti-wear performance.© 2010 ASME


Archive | 2006

Coating and method of forming coating

Akihiro Goto; Masahiro Okane; Kazushi Nakamura; Hiroyuki Teramoto; Hiroyuki Ochiai; Mitsutoshi Watanabe


Archive | 2004

Resistance welding electrode, method of manufacturing the same, resistance welding apparatus, and resistance welding line

Akihiro Goto; Tadanao Sugiura; Kazushi Nakamura; Masahiro Okane; Hiroyuki Ochiai


Archive | 2011

POWER SUPPLY DEVICE FOR ELECTRIC DISCHARGE MACHINING APPARATUS AND ELECTRIC DISCHARGE MACHINING METHOD

Masahiro Okane; Satoshi Suzuki; Kiyohito Oda


Archive | 2008

Rotor balance correction method and balance correction device

Akihiro Goto; Kazuji Nakamura; Masahiro Okane; Tadanao Sugiura; Nobuyuki Washimi; 和司 中村; 正裕 岡根; 昭弘 後藤; 忠直 杉浦


Archive | 2006

Coating film and coating-film forming method

Akihiro Goto; Masahiro Okane; Kazushi Nakamura; Hiroyuki Teramoto; Hiroyuki Ochiai; Mitsutoshi Watanabe


Archive | 2012

Electric discharge machine and electric discharge machining method

Yoshinori Asai; Masahiro Okane; Hidetaka Katougi


Archive | 2011

Overlay film and method for forming the same

Akihiro Goto; Kazushi Nakamura; Hiroyuki Teramoto; Mitsutoshi Watanabe; Masahiro Okane; Hiroyuki Ochiai


Archive | 2008

Electric discharge surface treatment method

Akihiro Goto; 後藤 昭弘; Kazushi Nakamura; 和司 中村; Masahiro Okane; 正裕 岡根; Hiroyuki Teramoto; 寺本 浩行


The Proceedings of The Manufacturing & Machine Tool Conference | 2004

Development of Coating Technology by Electrical Discharge

Masahiro Okane; Kazushi Nakamura; Akihiro Goto; Hiroyuki Teramoto; Masao Akiyoshi; Hiroyuki Ochiai; Mitsutoshi Watanabe

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Akihiro Goto

Shizuoka Institute of Science and Technology

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