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2012 9th International Pipeline Conference | 2012

Heavy Gauge UOE Pipe With Improved Compressive Strength for Offshore Pipeline

Nobuyuki Ishikawa; Hitoshi Sueyoshi; Kimihiro Nishimura; Osamu Yamamoto; Akihiko Tanizawa; Yasumitsu Kiyoto; Daisuke Naganuma

Offshore gas pipeline development has been expanding toward deeper water region that requires pipes to have strong resistance against collapse by external pressure. Collapse pressure is mainly dominated by pipe roundness and compressive strength. In order to improve compressive strength, it is quite important to understand the Bauschinger effect caused by cyclic deformation during pipe forming. Compressive strength is reduced by the Bauschinger effect since compression in the circumferential direction is applied after the pipe expansion. Therefore, prevention of Bauschinger effect is an important issue for improving compressive strength of pipes.In this paper, the effect of microstructure on the Bauschinger effect was investigated. It was proved that microstructure that consists of a hard second phase shows a large strength reduction in reverse loading, since a mixed microstructure with soft phase and hard phase enhances the Bauschinger effect. In order to obtain homogeneous bainitic microstructure, advanced plate production technology, where heat treatment on-line process (HOP) is applied after accelerated cooling, was developed. The steel produced by HOP process exhibits a fine bainitic microstructure with very low amount of hard second phase such as MA constituent. It was demonstrated that the trial produced pipe with HOP process has a higher compressive strength than conventional pipes.In addition to the fundamental study on compressive strength, further investigations were conducted to optimize other material properties for offshore linepipe, such as DWTT property, resistance to hydrogen induced cracking and HAZ toughness to comply with DNV requirements. Production tests of Grade X65 linepipe with the 38mm WT and 876mm OD was carried out. Material and mechanical properties of these heavy gauge linepipes were introduced.Copyright


Archive | 1993

Binder system for use in the injection molding of sinterable powders and molding compound containing the binder system

Kimihiro Nishimura; Kenji Yoshino


Archive | 2009

High-tensile strength steel and manufacturing method thereof

Katsuyuki Ichimiya; Tomoyuki Yokota; Kimihiro Nishimura; Nobuo Shikanai


Archive | 2008

High strength thick steel plate for structural purpose having excellent brittle crack propagation arrest property, and method for producing the same

Kimihiro Nishimura; Nobuo Shikauchi; Shinichi Suzuki; 公宏 西村; 伸一 鈴木; 伸夫 鹿内


Archive | 2012

Steel material for high heat input welding

Tomoyuki Yokota; Kimihiro Nishimura; Nobuo Shikanai


Archive | 2011

Steel for high heat input welding

Shinji Mitao; Koichi Nakajima; Kimihiro Nishimura; Tomoyuki Yokota; 眞司 三田尾; 孝一 中島; 智之 横田; 公宏 西村


Archive | 2007

Low-yield-ratio and high-strength thick steel plate superior in toughness at heat-affected zone in high-heat-input weld, and manufacturing method therefor

Shigeru Endo; Kimihiro Nishimura; Nobuo Shikauchi; Keiji Ueda; 圭治 植田; 公宏 西村; 茂 遠藤; 伸夫 鹿内


Archive | 2008

Pearlite steel rail of high internal hardness type excellent in wear resistance and fatigue failure resistance and process for production of the same

Tatsumi Kimura; Shinichi Suzuki; Kimihiro Nishimura; Shinji Mitao; Nobuo Shikanai


Archive | 2006

HIGH-STRENGTH THICK STEEL PLATE FOR STRUCTURAL PURPOSE HAVING EXCELLENT BRITTLE CRACK PROPAGATION PROPERTY AND ITS PRODUCTION METHOD

Tsunehisa Handa; Ryuji Muraoka; Kimihiro Nishimura; Nobuo Shikauchi; Shinichi Suzuki; 恒久 半田; 隆二 村岡; 公宏 西村; 伸一 鈴木; 伸夫 鹿内


Archive | 2003

METHOD FOR MANUFACTURING NON-HEAT-TREATED HIGH-STRENGTH THICK STEEL PLATE SUPERIOR IN BRITTLE CRACK ARRESTABILITY

Toshiyuki Hoshino; Kimihiro Nishimura; Akio Omori; 章夫 大森; 俊幸 星野; 公宏 西村

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Mitsuhiro Okatsu

Kawasaki Steel Corporation

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Shinichi Suzuki

Japan Atomic Energy Agency

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Kazuhiko Shiotani

Kawasaki Steel Corporation

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Toshiyuki Hoshino

Kawasaki Steel Corporation

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Tsunehisa Handa

Kawasaki Steel Corporation

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Kenji Yoshino

Kawasaki Steel Corporation

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Tatsumi Kimura

Kawasaki Steel Corporation

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Fumimaru Kawabata

Kawasaki Steel Corporation

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