Nondestructive Measurement Method to Detect Water/Void inside Slabs using Compact Neutron Source by Backscattered Neutrons
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Published:2017-10-18
Issue:10
Volume:15
Page:603-609
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ISSN:1346-8014
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Container-title:Journal of Advanced Concrete Technology
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language:en
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Short-container-title:ACT
Author:
Ikeda Yoshimasa1, Otake Yoshie1, Mizuta Maki1
Affiliation:
1. RIKEN Center for Advanced Photonics, Neutron Beam Technology Team, Wako, Saitama Pref., Japan.
Publisher
Japan Concrete Institute
Subject
General Materials Science,Building and Construction
Reference19 articles.
1. 1) Abe, Y., (1972). “Lecture of asphalt technologies for civil engineers (Road): Session 2. Manufacturing method and composition of asphalt.” Asphalt, 92-93 Combined Number, 46-52. (in Japanese) 2. 2) Agostinelli, S., Allison, J., Amako, K., Apostolakis, J., Araujo, H., Arce, P., Asai, M., Axen, D., Banerjee, S., Barrand, G., Behner, F., Bellagamba, L., Boudreau, J., Broglia, L. and Brunengo, A., (2003). “Geant4, A Simulation Toolkit.” Nuclear Instruments and Methods in Physics Research Section A, 506(3), 250-303. 3. 3) Fujiwara, H., (2014). “Research report on road bridge concrete slabs affected by water.” J-BEC Report, 10, 11-17. (in Japanese) 4. 4) de Beer, F. C., Strydom, W. J. and Griesel, E. J., (2004) “The drying process of concrete: a neutron radiography study.” Applied Radiation and Isotopes, 61, 617-623. 5. 5) Ikeda, Y., Takamura, M., Taketani, A., Sunaga, H., Otake, Y., Suzuki, H., Kumagai, M. and Oba, Y., (2016). “Prospect for application of compact accelerator-based neutron source to neutron engineering diffraction.” Nuclear Instruments and Methods in Physics Research A, 833, 61-67.
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12 articles.
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