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Dive into the research topics where Kiyotaka Obunai is active.

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Featured researches published by Kiyotaka Obunai.


Materials 2018, Vol. 5, Pages 494-507 | 2018

Microstructure and mechanical properties of newly developed SiC-C/C composites under atmospheric conditions

Kiyotaka Obunai; Daisuke Mikami; Tadao Fukuta; Koichi Ozaki

The purpose of this study is to investigate the relationship between its microstructure and bending strength of SiC-C/C (carbon-carbon) composites. By using the phenolic resin and carbon fiber bundle, the carbon fiber reinforced plastics (CFRP) precursor was prepared by employing filament winding technique. To modify the phenolic resin, the micro-sized glass fiber was added. The CFRP precursor was charred at high temperature at Argon atmosphere to obtain SiC-C/C composites. The matrix of composites was densified by resin impregnation done by cold isostatic pressing (CIP) method. The detail observation of matrix after charred revealed that when precursor resin was modified with glass fiber, the direction of thermal crack at matrix showed complex manner, while thermal crack at un-modified matrix only appeared along fiber direction. Because of the presence of complex thermal crack, the matrix of SiC-C/C composite showed high porosity at un-densified condition and effectively densified by CIP to promoting resin flow toward thermal crack. The bending and compression test results showed that bending strength and inter-laminar shear strength of SiC-C/C composites was increased by densification. Moreover, the fractured surface observations suggested that the presence of synthesized SiC nano-whisker at inter-laminar enhances the apparent shear strength due to mechanical bridging between laminar.


Composites Part A-applied Science and Manufacturing | 2015

Carbon fiber extraction from waste CFRP by microwave irradiation

Kiyotaka Obunai; Tadao Fukuta; Koichi Ozaki


Journal of the Japanese Society for Experimental Mechanics | 2014

Prediction Method of Fracture Strain for Non-Standardized Specimens Based on Local Absorbed Strain Energy Distribution

Tadao Fukuta; Kiyotaka Obunai; Koichi Ozaki; Masato Tsutsui; Takuto Hara


Journal of The Society of Materials Science, Japan | 2014

Synthesization of CNTs on Pore Surfaces in C/C Composites and Effect of CNTs on Tribological Characteristics

Kiyotaka Obunai; Kazuya Okubo; Toru Fujii


Archive | 2013

Study on Patch Bonding for Recovery of Damaged Carbon Fiber Reinforced Thermoplastics by Four-Point Bending Method

Kiyotaka Obunai; Tadao Fukuta; Koichi Ozaki; Rei Yamagishi; Masahiro Yamamoto


Journal of Materials Science Research | 2013

Study on Patch Bonding for Recovery of Damaged Carbon Fiber Reinforced Thermoplastics Subjected to Four-Point Bending Load

Kiyotaka Obunai; Tadao Fukuta; Koichi Ozaki; Rei Yamagishi; Masahiro Yamamoto


Advanced experimental mechanics | 2018

Low Cycle Fatigue Life Estimation of Stainless Steel

Kiyotaka Obunai; koshiro Kawase; Tadao Fukuta; Koichi Ozaki


World Academy of Science, Engineering and Technology, International Journal of Chemical, Molecular, Nuclear, Materials and Metallurgical Engineering | 2017

Moderation in Temperature Dependence on Counter Frictional Coefficient and Prevention of Wear of C/C Composites by Synthesizing SiC around Surface and Internal Vacancies

Noboru Wakamoto; Kiyotaka Obunai; Kazuya Okubo; Toru Fujii


The Proceedings of Conference of Kansai Branch | 2017

Moderation in Temperature Dependence of Counter Frictional Coefficient and Prevention of Wear of C/C composites by Synthesizing SiC on Surface and internal Vacancies

Noboru Wakamoto; Kiyotaka Obunai; Kazuya Okubo; Toru Fujii


The Proceedings of Conference of Chugoku-Shikoku Branch | 2017

Low cycle fatigue behavior of SCM435 at high temperature environment

koshiro Kawase; Kiyotaka Obunai; Tadao Hukuta; Koichi Ozaki

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Tadao Fukuta

Okayama Prefectural University

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Koichi Ozaki

Okayama Prefectural University

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Kazuya Okubo

National Archives and Records Administration

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Masato Tsutsui

Okayama Prefectural University

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Kazuya Okubo

National Archives and Records Administration

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Hitoshi Yamauchi

Okayama Prefectural University

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Takuto Hara

Okayama Prefectural University

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Yoichiro Sato

Okayama Prefectural University

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