Preconditions of Creation of Self-Adhesive Elastic Radiation Shielding Coverings

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Results of scientific researches in the field of creation of self-adhesive radiation shielding materials on the basis of polymers are presented in this article. It is stated, that radiation shielding coverings on the basis of ethylene propylene rubber are more preferable than coverings on the basis of BSR and SBS. Materials on the basis of ethylene propylene rubber possess high hardness at scaling from metal (more than 600 N/m) and hardness at breakoff from concrete (more than 0,1 MPa), have a high linear absorption coefficient.

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429-434

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December 2019

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© 2020 Trans Tech Publications Ltd. All Rights Reserved

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[1] N.I. Alfimova, S.J. Piriev, And. V.Fedorenko, M.S. Shejchenko, J.J. Vishnevskaya, Modern tendencies of development of radiation shielding materials technology [Text] / Bulletin of BSTU named after V.G. Shukhov. 4 (2017) 20-22.

Google Scholar

[2] V. D, Avdonin V.V., Suntsov D.L. Influence of filler content on adhesive properties of radiation-protective sheeting, IOP Conference Series: Materials Science and Engineering: IOP Publishing, Chelyabinsk, Russian Federation. 451 (2018) 1-7 - ISSN 1757-8981.

DOI: 10.1088/1757-899x/451/1/012205

Google Scholar

[3] R.N. Jastrebinsky, V.I. Pavlenko, P.V. Matjuhin, N.A. Chetverikov, For protection against gamma-rays, Bulletin of BSTU named after V.G. Shukhov. 3 (2011) 17-20.

Google Scholar

[4] An elastomeric material protecting from radiation, a multilayered glove for protection from ionising radiation and their application [Text]: a stalemate. 2545350 RF: MPK S 08 K 3/22, A 41 D 19/015 / Larmini Jean-Phillip, Matyo Jean-Paul, Geren Dominik, Dobrovolski Antoine; applicant and patent holder Areva, P'erkan. - № 2012107700/05; appl. 29.07.10; publ. 27.03.15, Bul. № 9.

Google Scholar

[5] A.N. Bormotov, A. P.Proshin, Y. M.Bazhenov, A. M.Danilov, J.A. Sokolova, Polymeric composites for protection from radiation: monography, Publishing house Paleotip, Moscow, (2006).

Google Scholar

[6] Artamonova Т. А, Savchenkova G. A, Savchenkov V. P., Screen for protection from radiation, p. m. of 156351 RF: MPK G 21 F 3/00 /; applicant and patent holder Factory of sealing materials,, LLC. - № 2015115999/07; appl. 27.04.15; publ. 10.11.15, Bul. № 31.

Google Scholar

[7] Way of reception of radiation shielding material on the basis of extremely-macromolecular polyethylene, with the raised radiation shielding properties, Stalemate. 2563650 RF: V 82 V 3, S 08 K 3/08, S 08 K 3/38, S 08 L 23/06, G 21 F 1/10 / Boikov A. А, Gorshenkov M. V, Gulbin V. N, Kaloshkin S. D, Cherdyntsev V.V.; applicant and patent holder NUST MISIS,. № 2014129404/04; appl. 17.07.14; publ. 15.09.15, Bul. № 26.

Google Scholar

[8] V. Telegin, V.N. Saunin, O.N. Draganjuk, M.N. Draganjuk, Heterogeneous radiation shielding screen for space vehicles, Bulletin of Reshetnev Siberian State University of Science and Technology, 16 (4) (2015) 969-974.

Google Scholar

[9] Т. Özdemir, A. Güngör I. A. Reyhancan, Flexible neutron shielding composite material of EPDM rubber with boron trioxide, Mechanical, thermal investigations and neutron Shielding tests, Radiation Physics and Chemistry. 131 (2017) 7-12.

DOI: 10.1016/j.radphyschem.2016.10.012

Google Scholar