Published May 2010 | Version v1
Book

Neutron shielding properties of a new high-density concrete

  • 1. Universidad Politecnica de Madrid (UPM), Nuclear Engineering Department, Jose Gutierrez Abascal, 2, E-28006 Madrid (Spain)
  • 2. Unidades Academicas de Estudios Nucleares e Ing. Electrica, Universidad Autonoma de Zacatecas, Apdo. Postal 336, 98000 Zacatecas, Zac. (Mexico)
  • 3. CIEMAT, Av. Complutense, 22, E-28040 Madrid (Spain)

Description

The neutron shielding properties of a new high-density concrete (commercially available under the name HormiradTM, developed in Spain by the company CT-RAD) have been characterized both experimentally and by Monte Carlo calculations. The shielding properties of this concrete against photons were previously studied and the material is being used to build bunkers, mazes and doors in medical accelerator facilities with good overall results. In this work, the objective was to characterize the material behaviour against neutrons, as well as to test alternative mixings including boron compounds in an effort to improve neutron shielding efficiency. With that purpose, Hormirad slabs of different thicknesses were exposed to an 241Am-Be neutron source under controlled conditions in the neutron measurements laboratory of the Nuclear Engineering Department at UPM. The original mix, which includes a high fraction of magnetite, was then modified by adding different proportions of anhydrous borax (Na2B4O7). In order to have a reference against common concrete used to shield medical accelerator facilities, the same experiment was repeated with ordinary (HA-25) concrete slabs. In parallel to the experiments, Monte Carlo calculations of the experiments were performed with MCNP5. The experimental results agree reasonably well with the Monte Carlo calculations. Therefore, the first and equilibrium tenth-value layers have been determined for the different types of concrete tested. The results show an advantageous behaviour of the Hormirad concrete, in terms of neutron attenuation against real thickness of the shielding. Borated concretes seem less practical since they did not show better neutron attenuation with respect to real thickness and their structural properties are worse. The neutron attenuation properties of Hormirad for typical neutron spectra in clinical LINAC accelerators rooms have been also characterized by Monte Carlo calculation. (author)

Part of:
Proceedings of IRPA12: 12. Congress of the International Radiation Protection Association: Strengthening Radiation Protection Worldwide - Highlights, Global Perspective and Future Trends

Additional details

Publishing Information

Publisher
IAEA
Imprint Place
Vienna (Austria)
ISBN
978-92-0-105410-4
Imprint Title
Proceedings of IRPA12: 12. Congress of the International Radiation Protection Association: Strengthening Radiation Protection Worldwide - Highlights, Global Perspective and Future Trends
Imprint Pagination
vp.
Series
Proceedings Series
Journal Page Range
10 p.
ISSN
0074-1884

Conference

Title
12. Congress of the International Radiation Protection Association: Strengthening Radiation Protection Worldwide - Highlights, Global Perspective and Future Trends
Acronym
IRPA12
Dates
19-24 Oct 2008
Place
Buenos Aires (Argentina)

Optional Information

Notes
15 refs, 8 figs, 4 tabs Imprint:This CD-ROM is attached to the printed publication
Secondary number(s)
STI/PUB--1460 (Companion CD)