Development of metal shock absorber for storage of nuclear spent fuel cask

Author:

MATSUBARA Toru1,NAKAGAWA Ryota1,MITSUI Hideaki1,SAITO Yoshiyuki1,SAITO Yuichi1,KISHIMOTO Junichi1,TAMAKI Hiroki1

Affiliation:

1. Nuclear Energy Systems, Mitsubishi Heavy Industries, LTD.

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference9 articles.

1. Kaizu, K., Murata Y., Mitsunobu, Y., Uenishi, R., Kusaka, M. and Kimura M., Impact energy absorption characteristics of aluminium cellular solid with mimetic woody structure, Transactions of the JSME (in Japanese), Vol.84, No.858 (2018), DOI: 10.1299/transjsme.17-00550.

2. Liu, X., Wu, Y., Leung, A. and Hou, J., Mechanical behavior of mild steel compressive yielding blocks, Asia-Pacific Conference on FRP in Structures (2007).

3. Namba, K., Ito, C., Shirai, K., Oiwa, A., Ashida, S., Okada, J. and Sakamoto, Y., Applicability of shock absorber using a new material for radioactive materials transport cask by drop tests, Central Research Institute of Electric Power Industry, Rep. No. N12020 (2013) (in Japanese).

4. Qiao, L., Wieser, G., Zencker, U. and Droste, B., Dynamic finite element analysis of a HLW transport cask with polyurethane impact limiters in 9m drop test, Proceedings of the 15th International Symposium on the Packaging and Transportation of Radioactive Materials (2007).

5. Qiao, L., Zencker, U., Wille, F. and Musolff, A., Numerical simulation of 9 meter drop of a transport and storage cask with aluminum impact limiter, Proceedings of the International Symposium on the Packaging and Transportation of Radioactive Materials (2010).

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