Electrical properties of mineral-insulated cable under fusion neutron irradiation

Author:

Tanaka Teruya,Sato F.,Iida T.,Nishitani T.,Ochiai K.,Okuda S.,Ikeda T.

Publisher

Elsevier BV

Subject

Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering

Reference12 articles.

1. I.Y. Emelyanov, V.I. Vlasov, Y.I. Volod'ko, et al., Radiation and thermal tests of electron-emissive neutron detectors and cables with magnesia insulation, Soviet Atomic Energy, translated from Russian, SATAEAZ 37 (1) (1974) 679–790, translated from Atomnaya Energiya, 37 (1974) 72–76.

2. H.D. Warren, D.P. Bozarth, Performance of self-powered neutron detectors in pressurised water reactors, Proceeding of the Second ASTM-EURATOM Symposium on Reactor Dosimetry, Dosimetry Method for Fuels, Cladding and Structural Materials, Palo Alto, CA, October 1997.

3. R. Van Nieuwenhove, L. Vermeeren, Study of the radiation induced electromotive force effect (RIEMF), intermediate report: literature review and modeling, EFDA-ref.: TW-1-TPD/IRRCER Del. 6, SCK Report R-3574, Ref. 432/02-01, February 2002.

4. R. Van Nieuwenhove, L. Vermeeren, Study of the radiation induced electromotive force effect (RIEMF), final report: experimental study in a pure gamma field and a combined neutron-gamma field (BR2), EFDA-ref.: TW1-TPD/IRRCER Del.6, SCK Report R-3611, Ref. 1248/02-01, June 2002.

5. Radiation-induced electrical degradation experiments in the Japan materials testing reactor;Farnum;J. Nucl. Mater.,1996

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