Rchr
J-GLOBAL ID:200901043023890533   Update date: Aug. 28, 2024

Wakabayashi Kunihiko

ワカバヤシ クニヒコ | Wakabayashi Kunihiko
Affiliation and department:
Homepage URL  (1): http://www.aist.go.jp/RESEARCHERDB/cgi-bin/worker_detail.cgi?call=namae&rw_id=K74686447
Research field  (1): Safety engineering
Research theme for competitive and other funds  (1):
  • 2014 - 2017 Investigation of initiation dynamics of pentaerythritol tetranitrate single crystal under nanosecond shock compression
Papers (32):
  • Tomotaka Homae, Yuta Sugiyama, Tomoharu Matsumura, Kunihiko Wakabayashi. Blast pressure and TNT-equivalency of small electric detonators comprised of lead azide. Science and Technology of Energetic Materials. 2022. 83. 1. 28-31
  • Y. Sugiyama, T. Homae, T. Matsumura, K. Wakabayashi. Numerical study on the effect of the initiation process of cylindrical high explosives on the blast-wave behavior. Shock Waves. 2021. 31. 5. 427-438
  • Yuta Sugiyama, Tomotaka Homae, Tomoharu Matsumura, Kunihiko Wakabayashi. Numerical study on the mitigation effect of glass particles filling a partially confined space on a blast wave. International Journal of Multiphase Flow. 2021. 136. 103546-103546
  • Tomotaka Homae, Kei Shimura, Yuta Sugiyama, Kunihiko Wakabayashi, Tomoharu Matsumura, Yoshio Nakayama. Blast wave mitigation from a straight tube using glass beads. Sci. Technol. Energ. Mater. 2020. 81. 6. 164-170
  • Yuta Sugiyama, Tomotaka Homae, Tomoharu Matsumura, Kunihiko Wakabayashi. Erratum: Numerical study on the attenuation effect on the blast wave of encircling a high explosive with granular media [Journal of Applied Physics (2020) 127 (164701) DOI: 10.1063/1.5143351). Journal of Applied Physics. 2020. 127. 21
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MISC (37):
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