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Featured researches published by Minoru Ito.


Volume 6: Materials Technology; Polar and Arctic Sciences and Technology; Petroleum Technology Symposium | 2012

Development of Corrosion Resistant Steel for Bottom Plates of Crude Oil Tankers and Onboard Evaluation Results

Minoru Ito; Michio Kaneko; Seiji Nishimura; Hidehiko Sato

Pitting corrosion on the bottom plates of cargo oil tanks (COT) in very large crude carriers (VLCC) is very serious problem. Each tank may suffer up to 1,000 pits, with some reaching a depth of as much as 10 mm. As a result, the workload of repairing such pitting corrosions in periodical dock inspection is extremely heavy. Many studies have already been conducted to clarify the mechanism of pitting corrosion, but it has yet to be fully understood.We have clarified the pitting corrosion mechanism through onboard research on some VLCCs and various corrosion tests, in addition to the findings obtained by previous studies. Based on our understanding of the mechanism, we developed a corrosion test method to simulate the corrosive environment within the pits. Furthermore, we developed a new corrosion resistant steel (CRS) with trace amounts of alloying elements. The corrosion rate for CRS is less than one-fifth of conventional steels. Due to its very low alloy content, the weldability and mechanical properties of CRS remain similar to conventional steels. This CRS has already been applied to several VLCCs and we have examined its corrosion resistance through onboard investigations of the two VLCCs. One was for all its uncoated COT bottom plates, which were built of CRS, at the first docking (after 2.5 years). No pits deeper than 4 mm were found in the bottom plates of any COTs. Also, only about twenty pits of 2∼4-mm depth were found. The other was for the bottom plates of six unpainted COTs built of CRS at her first and second dockings (after 2.3 and 5 years). At five years, tens of pits deeper than 4 mm were found in all, but the pit count was much lower than that of VLCCs constructed of conventional steel. Thus, the good corrosion resistance of CRS was confirmed. In addition, it was also revealed through onboard research during a dock inspection that pit growth halted on VLCCs with more than five years service.SOLAS II-1 Cargo Oil Tank Corrosion Protection, which adopts the test method developed by us as the qualification test for bottom plates, comes into effect in 2013. In addition, CRS has already been certified by Class NK as corrosion resistant steel for COT bottom plates.CRS is set to play its part in the safe navigation of oil tankers. Furthermore, CRS does not require a protective coating of paint, which also benefits the global environment by reducing the use of volatile organic compounds.Copyright


Archive | 2001

High strength and high toughness weather resistant steel having excellent shade weather resistance

Toshinaga Hasegawa; Minoru Ito; Hiroshi Kihira; Koji Tanabe; Akira Usami; 実 伊藤; 明 宇佐見; 康児 田辺; 寛 紀平; 俊永 長谷川


Archive | 2000

Corrosion resistant steel for crude oil and heavy oil storage speed

Shiro Imai; Kimio Ito; Minoru Ito; Kenji Kato; Hiroshi Kihira; Takao Saito; 嗣郎 今井; 公夫 伊藤; 実 伊藤; 謙治 加藤; 隆穂 斎藤; 寛 紀平


Archive | 2007

Highly corrosion-resistant, rust-prevention coating material, highly corrosion-resistant steel, and steel structure

Makoto Nagasawa; Minoru Ito; Michio Kaneko; Kenji Katoh; Shiro Imai; Masatoshi Kominami; Toshiro Terakawa; Takashi Kumai


Archive | 2011

Process for production of Zn alloy particles for highly anticorrosive and rust-inhibiting paint

Toshiro Terakawa; Makoto Nagasawa; Kenji Katoh; Michio Kaneko; Shiro Imai; Takashi Kumai; Minoru Ito; Masatoshi Kominami


Archive | 2008

Paste for highly anticorrosive rust-preventive coating exhibiting excellent processability in service, highly anticorrosive rust-preventive coating, highly anticorrosive steel coated with the coating, and steel structure

Shiro Imai; Minoru Ito; Michiro Kaneko; Kenji Kato; Masatoshi Kominami; Takashi Kumai; Shin Nagasawa; Toshiro Terakawa; 嗣郎 今井; 実 伊藤; 謙治 加藤; 敏郎 寺川; 雅稔 小南; 隆 熊井; 道郎 金子; 慎 長澤


Archive | 2008

Rust prevention method for vessel steel member, and vessel having excellent corrosion resistance

Shiro Imai; Minoru Ito; Michiro Kaneko; Kenji Kato; Masatoshi Kominami; Takashi Kumai; Shin Nagasawa; Toshiro Terakawa; 嗣郎 今井; 実 伊藤; 謙治 加藤; 敏郎 寺川; 雅稔 小南; 隆 熊井; 道郎 金子; 慎 長澤


Archive | 2007

Highly corrosion-resistant rust-preventive coating material, steel material with high corrosion resistance, and steel structure

Makoto Nagasawa; Minoru Ito; Michio Kaneko; Kenji Katoh; Shiro Imai; Masatoshi Kominami; Toshiro Terakawa; Takashi Kumai


Archive | 2007

Zn ALLOY PARTICLES FOR HIGHLY ANTICORROSIVE AND RUST-INHIBITING PAINT, PROCESS FOR PRODUCTION OF THE PARTICLES, HIGHLY ANTICORROSIVE AND RUST-INHIBITING PAINT CONTAINING THE PARTICLES, HIGHLY CORROSION-RESISTING STEEL MATERIAL COATED WITH THE PAINT, AND STEEL STRUCTURES MADE BY USING THE STEEL MATERIAL

Kenji Katoh; Makoto Nagasawa; Minoru Ito; Michio Kaneko; Shiro Imai; Masatoshi Kominami; Toshiro Terakawa; Takashi Kumai


Archive | 2007

Zn alloy particles for high corrosion resistance rust protection paint, method of production of particles, high corrosion resistance rust protection paint containing particles, high corrosion resistance steel material coated with paint, and steel structure having steel material

Kenji Katoh; Makoto Nagasawa; Minoru Ito; Michio Kaneko; Shiro Imai; Masatoshi Kominami; Toshiro Terakawa; Takashi Kumai

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Akira Usami

Nagoya Institute of Technology

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