Characteristics of radiation porosity formed upon irradiation in a BN-600 reactor in the fuel-element cans of cold-deformed steel EK-164 (06Kh16N20M2G2BTFR)-ID c.d.

Author:

Portnykh I. A.,Kozlov A. V.,Panchenko V. L.,Mitrofanova N. M.

Publisher

Pleiades Publishing Ltd

Subject

Materials Chemistry,Condensed Matter Physics

Reference5 articles.

1. V. V. Sagaradze, V. A. Pavlov, V. M. Alyab’ev, et al., “Effect of the Intermetallide Aging upon Fast Neutron Radiation on Pore Formation in Austenitic Stainless Steels,” Fiz. Met. Metalloved. 65, 970–977 (1988).

2. A. V. Tselishchev, Yu. P. Budanov, N. M. Mitrofanova, et al., “Designing Structural Steels for the Core of a BN Reactor Based on the Results of Post-Reactor Studies,” At. Energ. 108(4), 217–221 (2010).

3. I. A. Portnykh and A. V. Kozlov, “Methodology of the Quantitative Analysis of Radiation Porosity in Metals,” Vopr. At. Nauki Tekhn., Ser.: Materialoved. Nov. Mater., No. 1 (59), 41–54 (2002).

4. I. A. Portnykh and A. V. Kozlov, “Comparative Studies of Porosity Obtained in the Material of Fuel-Element Cans Made of ChS68 Steel Produced According to the Technology of the Pervouralsk Novotrubnyi Plant and Improved Technology of the Machine-Building Plant after Exploitation in a BN-600 Reactor,” Sent to for publication in of Izv. Vyssh. Ucheb. Zaved., Yadern. Energetika.

5. A. V. Kozlov and I. A. Portnykh, “Conditions for the Achievement of the Stage of Stationary Radiation Swelling,” Phys. Met. Metallogr. 103 105–109 (2007).

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