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J-GLOBAL ID:200901059431271950   Update date: Jul. 20, 2024

Kawada Hiroyuki

カワダ ヒロユキ | Kawada Hiroyuki
Affiliation and department:
Job title: Professor
Homepage URL  (1): http://www.kawada.mech.waseda.ac.jp/
Research field  (2): Composite materials and interfaces ,  Machine materials and mechanics
Research keywords  (1): Composite materials, Strength of Materials
Research theme for competitive and other funds  (16):
  • 2022 - 2025 ナノ素材を用いた循環型機械材料の創成
  • 2019 - 2022 Producing high strenght and durable nanocomposites using soluble graphene
  • 2018 - 2021 革新的合成法による無撚CNT繊維強化複合材料の創成と高強度化
  • 2018 - 2020 Fabrication of innovative carbon nanotube metal composite wiring material with large current capacity
  • 2015 - 2018 Development of Innovative Ultra-Light Weighted and High Strength Composite using Densified Untwisted CNT
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Papers (256):
  • Yuki Nishi, Atsushi Hosoi, Hiroyuki Kawada. Evaluation of matrix crack growth in interlaminar toughened quasi-isotropic carbon-fiber reinforced plastic laminates up to the very-high cycle regime by ultrasonic fatigue testing. Composites Science and Technology. 2024. 253
  • Yuki Nishi, Shinji Itoh, Atsushi Hosoi, Hiroyuki Kawada. Stress and energy release rate analysis of cross-ply carbon fiber-reinforced plastic laminate with transverse cracks subjected to ultrasonic vibration using a variational approach. Advanced Composite Materials. 2024
  • Kazuki Harada, Kristine Munk Jespersen, Momoka Shima, Atsushi Hosoi, Hiroyuki Kawada. Experimental evaluation of mode I fracture toughness of dissimilar-material joints with thermal residual stresses. Composites Science and Technology. 2022. 224
  • Takuma Hanaoka, Hiroki Ikematsu, Suguru Takahashi, Natsuki Ito, Noriaki Ijuin, Hiroyuki Kawada, Yoshihiko Arao, Masatoshi Kubouchi. Recovery of carbon fiber from prepreg using nitric acid and evaluation of recycled CFRP. Composites Part B: Engineering. 2022. 231
  • Sugano Moe, Kosugi Kensuke, Miyakoshi Tsuyosi, Hosoi Atsushi, Tsuda Terumasa, Kawada Hiroyuki. Application of Ultrasonic Fatigue Test for Evaluation of Very High Cycle Fatigue Damage Growth in L-Shaped Quasi-Isotropic CFRP Laminates. Zairyo/Journal of the Society of Materials Science, Japan. 2022. 71. 10. 841-846
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MISC (74):
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Patents (5):
  • 酸化銅ナノワイヤおよびその製造方法
  • 樹脂金属接合体の製造方法及び樹脂金属接合体
  • 繊維強化熱可塑性樹脂プリプレグ及び成形体
  • FRP円筒及びその製造方法
  • 積層材料の層間破壊じん性試験装置
Books (1):
  • JSMEテキストシリーズ 機械材料学
    日本機械学会 2008 ISBN:9784888981699
Education (2):
  • - 1980 Waseda University School of Science and Engineering Department of Mechanical Engineering,
  • - 1980 Waseda University Graduate School, Division of Science and Engineering
Professional career (1):
  • 博士(工学) (早稲田大学)
Committee career (2):
  • 2015/04 - 現在 経済産業省 専門家会議(風車)
  • 2020/04 - 2021/03 The Japan Society of Mechanical Engineers President-Elect
Awards (1):
  • 2014 - The Japan Society of Mechanical Engineers JSME Medal for Outstanding Paper Evaluation of transverse crack initiation in interlaminar toughened CFRP cross-ply laminates under cyclic loading
Association Membership(s) (4):
強化プラスチック協会 ,  Japan Society for Composite Materials ,  日本材料学会 ,  日本機械学会
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