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Dive into the research topics where Naoki Morihiro is active.

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Featured researches published by Naoki Morihiro.


Journal of The Japan Institute of Metals | 2017

Erratum: Change of Microstructure during Thermal Fatigue at Maximum Temperature 1073 K in Nb-Added Ferritic Stainless Steels

Junichi Hamada; Naoki Morihiro; Haruhiko Kajimura

In this study, thermal fatigue tests at maximum temperature 1073 K were performed using 13% Cr–Nb–Si and 18% Cr–Nb–Mo steels as representative heat–resistant ferritic stainless steels for automotive exhaust systems. The changes in the microstructure, the crystal orientation and the hysteresis loop during thermal fatigue in the temperature range from 473 K to 1073 K were investigated. As a result of comparing thermal fatigue life under these conditions, 18% Cr–Nb–Mo steel with high temperature strength was found to have a longer thermal fatigue life than 13% Cr–Nb–Si steel. During the thermal fatigue process, the material was softened by reducing of the amount of solute Nb, and the coarsening of Nb precipitation. By this softening, the form of the hysteresis loops changed with the increase in cycles. By considering the softening of the material, the change in the hysteresis loops could be predicted to some extent. Furthermore, by EBSD analysis, it was recognized that the dynamic recovery and recrystallization accompanied by the uniaxial and fine grain formation occurred during the thermal fatigue process. From the viewpoint of change of the microstructure, the thermal fatigue damage was quantified by the ratio of the low–angle grain boundary, and the change of this index with the progress of the cycle in 18% Cr–Nb–Mo steel had a smaller than 13% Cr–Nb–Si steel. It was thought that this point was caused by the retardation of recrystallization by solute Mo. [doi:10.2320/jinstmet.JC201701]


Materials Transactions | 2003

An XPS and Atomic Force Microscopy Study of the Micro-Wetting Behavior of Water on Pure Chromium

Rongguang Wang; Mitsuo Kido; Naoki Morihiro


Materials Transactions | 2002

Corrosion Behavior of Thermally Sprayed WC Coating in Na2SO4 Aqueous Solution

Mutsumi Takeda; Naoki Morihiro; Ryuichiro Ebara; Yoshio Harada; Rongguang Wang; Mitsuo Kido


Journal of The Japan Institute of Metals | 2002

Surface Composition and Micro-Water Wetting Behavior on Pure Chromium

Rongguang Wang; Naoki Morihiro; Takuji Okabe; Kouji Mukai; Mitsuo Kido


Journal of The Japan Institute of Metals | 2002

Water Micro-Wettability Evaluation of Several Metal Surfaces by Atomic Force Microscopy

Rongguang Wang; Naoki Morihiro; Tarou Tokuda; Mitsuo Kido


Transactions of the Japan Society of Mechanical Engineers. A | 2003

Observation of Micro-Water droplets on Several Materials Surfaces and Evaluation of Wettability by Means of AFM

Rongguang Wang; Mitsuo Kido; Naoki Morihiro


The Abstracts of ATEM : International Conference on Advanced Technology in Experimental Mechanics : Asian Conference on Experimental Mechanics | 2003

OS11(4)-17(OS11W0021) Fatigue Behavior of Thermally Sprayed Materials at High Temperature

Rongguang Wang; Naoki Morihiro; Yoshiko Shinhara; Mitsuo Kido


The Abstracts of ATEM : International Conference on Advanced Technology in Experimental Mechanics : Asian Conference on Experimental Mechanics | 2003

OS11W0021 Fatigue behavior of thermally sprayed materials at high temperature

Rongguang Wang; Naoki Morihiro; Yoshiko Shinhara; Mitsuo Kido


journal of Japan Thermal Spraying Society | 2002

Change of Corrosion Behavior by pH on Surface of WC Thermal Spray Costing in Na_2SO_4 Aqueous Solution

Mutsumi Takeda; Naoki Morihiro; Yoshio Harada; Mitsuo Kido


The proceedings of the JSME annual meeting | 2002

Deformation measurement of ceramics sprayed material under high temperature fatigue

Rongguang Wang; Naoki Morihiro; Masahiro Yamazaki; Mitsuo Kido

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Mitsuo Kido

Hiroshima Institute of Technology

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Rongguang Wang

Hiroshima Institute of Technology

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Mutsumi Takeda

Hiroshima Institute of Technology

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Yoshiko Shinhara

Hiroshima Institute of Technology

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Rong Guang Wang

Hiroshima Institute of Technology

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Gonojo Katayama

Hiroshima Institute of Technology

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Takuji Okabe

Hiroshima Institute of Technology

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