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Featured researches published by Masahiro Ohgami.


Experience With Creep-Strength Enhanced Ferritic Steels and New and Emerging Computational Methods | 2004

Metallurgical Investigation of a Type IV Damage at the Heat Affected Zone of Weld for Tungsten Containing Martensitic Heat Resistant Steels

Yasushi Hasegawa; Taro Muraki; Masahiro Ohgami

Metallographic analyses were carried out to clarify the micro-mechanism of Type IV failure at the outer edge of HAZ for W containing martensitic creep resistant 9 to 12% Cr steels. Microstructure observation and the creep rupture test determined the type IV failure location at fine grain HAZ through the welding thermal cycle simulation. Based on the comparison of three candidate mechanisms, grain size refinement, dislocation sub-structure evolution and precipitation morphology alteration, the microstructure evolution by thermal cycle of welding and PWHT was expected to be the main reason for the failure. TEM analysis of the microstructure elucidated the globular sub-grain microstructure formation by PWHT derived from the low dislocation density of the fine grain martensite with ambiguous lath structure. The precipitation morphology change is also one candidate for type IV failure. The quantification of the influence of V-Wing type MX disappearance at fine grain HAZ on creep rupture strength must be accurately estimated in further research.Copyright


Archive | 1994

Martensitic heat-resisting steel excellent in HAZ-softening resistance and process for producing the same

Yasushi Hasegawa; Masahiro Ohgami; Nobuo Mizuhashi; Hisashi Naoi; Toshio Fujita


Tetsu To Hagane-journal of The Iron and Steel Institute of Japan | 2006

Identification and Formation Mechanism of a Deformation Process Determining Microstructure of Type IV Creep Damage of the Advanced High Cr Containing Ferritic Heat Resistant Steel

Yasushi Hasegawa; Tarou Muraki; Masahiro Ohgami


Archive | 1996

High strength, ferritic heat-resistant steel having improved resistance to intermetallic compound precipitation-induced embrittlement

Yasushi Hasegawa; Masahiro Ohgami; Hisashi Naoi


Journal of The Society of Materials Science, Japan | 2003

Grain Boundary Strengthening Mechanism of Tungsten Containing 9 to 12% Chromium Ferritic Heat Resistant Steels at 650.DEG.C.

Yasushi Hasegawa; Masahiro Ohgami; Taro Muraki


Tetsu To Hagane-journal of The Iron and Steel Institute of Japan | 2006

Creep Deformation Process Determining Microstructure of Type IV Creep Damage of the Advanced Ferritic Heat Resistant Steel with High Cr Content

Yasushi Hasegawa; Tarou Muraki; Masahiro Ohgami


Archive | 1996

High-strength ferritic heat-resistant steel excellent in resistance to embrittlement caused by intermetallic compound deposition

Yasushi Hasegawa; Masahiro Ohgami; Hisashi Naoi


Archive | 1992

High-nitrogen ferritic heat-resisting steel with high vanadium content and method of production thereof

Yasushi Hasegawa; Masahiro Ohgami; Hisashi Naoi; Fujimitsu Masuyama


Journal of The Society of Materials Science, Japan | 2003

A Grain Size Dependence of a Creep Deformation of Tungsten Containing High Chromium Ferriric Creep Resistant Steel( High Temperature Strength)

Yasushi Hasegawa; Taro Muraki; Masahiro Ohgami


Archive | 1996

Hochfester, warmfeste, ferritischer stahl mit hervorragender beständigkeit gegen durch ausscheidung intermetallischer verbindungen verursachte versprödung.

Yasushi Hasegawa; Masahiro Ohgami; Hisashi Naoi

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Yasushi Hasegawa

Tokyo Institute of Technology

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