宇宙飛翔工学研究系
基本情報
- 所属
- 国立研究開発法人宇宙航空研究開発機構 宇宙科学研究所 宇宙飛翔工学研究系 特任教授
- 学位
- 工学博士(1991年3月 東京大学)
- 研究者番号
- 60237419
- ORCID ID
https://orcid.org/0000-0002-2403-5780
- J-GLOBAL ID
- 202101015987830507
- researchmap会員ID
- R000025142
経歴
7-
2024年4月 - 現在
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2021年11月 - 2024年3月
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2018年4月 - 2021年10月
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2000年4月 - 2018年3月
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1994年4月 - 2000年9月
学歴
1-
1986年4月 - 1991年3月
委員歴
14-
2022年4月 - 2024年3月
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2014年4月 - 2024年3月
受賞
7論文
55-
Mathematics in Engineering, Science and Aerospace 15(3) 889-901 2024年9月 査読有り筆頭著者責任著者The interfacial stress between fibers and matrix plays an important role in the durability and damage initiation of carbon fiber reinforced composites. In this study, thermoelastic analysis was performed on a plate containing randomly distributed multiple fibers. Complex stress functions were employed with a semi-numerical method to ensure displacement continuity along the fiber/matrix interface as a boundary condition. The statistical investigation reveals that the stress concentration due to the presence of multiple fibers increases as the fiber density increases, though its deviation decreases. A numerical case study was conducted to discuss the micromechanics of the inherent scatter of material strength. The stress-strength model with Monte-Carlo simulation demonstrated the fracture probability calculation. The uncertainty obtained is partially attributed to the micromechanical stress variation around the fibers.
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AIAA Journal 62(4) 1311-1317 2024年4月 査読有りThe objective of this study is to develop a novel aircraft design approach using biomimetics as an alternative to traditional airframes. This approach is primarily inspired by the dragonfly wing, which possesses reinforcement structures composed of cross veins and longitudinal veins. These structures are assumed to regulate deformation and enhance stiffness, respectively. The cross veins were replicated using weighted centroidal Voronoi tessellation (WCVT) based on the out-of-plane displacement of the skin. In contrast, the longitudinal veins were replicated by extracting a centerline from the topology optimization (TO) results on the skin, achieved through image analysis techniques such as binarization and skeletonization. The longitudinal layout effectively reduces compliance by distributing internal loads, utilizing only essential reinforcements on the skin without increasing its mass. The WCVT layout significantly enhances the buckling resistance of the reinforced skin. As a result, the skin reinforced using both cross–longitudinal layouts from TO and WCVT exhibited a buckling load 2.7 times greater while maintaining a lower mass compared to conventional layouts.
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Composites Part A: Applied Science and Manufacturing 172 2023年9月 査読有り
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Journal of Composite Materials 57(21) 3377-3391 2023年9月 査読有り
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Composite Structures 306 2023年2月15日 査読有り
MISC
28講演・口頭発表等
190共同研究・競争的資金等の研究課題
1-
日本学術振興会 科学研究費助成事業 1999年 - 2001年