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Evaluation of the Durability of a Nuclear Bomb Shelter Made with Anti-Sievert® Concrete

Published online by Cambridge University Press:  24 July 2018

Teruyoshi O. Hirano*
Affiliation:
GGK Inc., Nishi-Shinbashi, Minato-ku, Tokyo, Japan.
Yhuki Katakami
Affiliation:
GGK Inc., Nishi-Shinbashi, Minato-ku, Tokyo, Japan.
Satoru Hashimoto
Affiliation:
HYOUKAKEN Co., Ltd., Sakumacyou, Chiyoda-ku, Tokyo, Japan.
Ichiro Hatsumura
Affiliation:
GGK Inc., Nishi-Shinbashi, Minato-ku, Tokyo, Japan.
Tsukuru Nishitsunoi
Affiliation:
GGK Inc., Nishi-Shinbashi, Minato-ku, Tokyo, Japan.
Yaoki Yamashita
Affiliation:
REMICMARUHACHI Co., Ltd., Senbiki, Seki-city, Gifu, Japan.
Yasuyuki Mori
Affiliation:
REMICMARUHACHI Co., Ltd., Senbiki, Seki-city, Gifu, Japan.
*
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Abstract

We have developed Anti- Sievert® concrete, which is a concrete reinforced shielding function as a building material that shields the influence from radioactive materials and its radiation. Cement, water, aggregate, sand material, Anti- Sievert® # 210, Anti- Sievert® # 216 formulation was optimized as those materials constituting Anti- Sievert® concrete. As a result, we realized shielding concrete with high fluidity to realize construction suitability by concrete pump[1]. Anti- Sievert® concrete has a shielding function of about 3 times as compared with ordinary concrete with respect to X ray (100 kV), and shows strength of more than 50 N/mm2. The durability characteristics against nuclear explosion using Anti-Sievert® concrete were simulated and reported in this paper.

Type
Articles
Copyright
Copyright © Materials Research Society 2018 

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References

REFERENCES

Sato, I., Hatakeyama, T., Yamashita, Y., Mori, Y., Hashimoto, S., Hatsumura, I., Katakami, Y., Nishitsunoi, T., Hirano, T. O., presented at the 2017 MRS Fall Meeting, Boston, MA, 2017 (unpublished)Google Scholar
Higo, Y., Yoshimoto, M., Hayakawa, T., presented at the 66th annual conference of Japan Society of Civil Engineers, Matsuyama, Ehime, Japan 2011 (unpublished)Google Scholar