Measurement of the Thermal Conductivity and Diffusivity of Molten Lead in the Interval 601–1000 K

Author:

Savchenko I. V.,Stankus S. V.,Agazhanov A. Sh.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear Energy and Engineering

Reference27 articles.

1. V. I. Subbotin, M. N. Arnoldov, F. A. Kozlov, and A. L. Shimkevich, “Liquid metal coolants for nuclear power,” At. Énerg., 92, No. 2, 29–40 (2002).

2. S. V. Stankus and I. V. Savchenko, “Measurement of the heat transfer coefficient of liquid metals by the laser flash method,” Teplofiz. Aeromekh., 16, No. 4, 625 (2009).

3. S. V. Stankus, I. V. Savchenko, A. V. Baginskii, et al., “Heat transfer coefficients of 12Kh18N10T stainless steel in a wide temperature interval,” Teplofiz. Vys. Temp., 46, No. 5, 795 (2008).

4. A. S. Basin, M. A. Revenko, and S. V. Stankus, “Change of the density of Kh18N10T steel on melting and crystallization,” in: Crystallization and Processes in Crystallizers, Institute of Thermal Physics SO RAN SSSR, Novosibirsk (1979), p. 109.

5. GSSSD 32–82, 12Kh18N9T and 12Kh18N10T Steels: Specific Enthalpy and Specific Heat Capacity in the Temperature Range 400–1380 K at Atmospheric Pressure, Izd. Standartov, Moscow (1991).

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