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B. I. Polyak (1969)
Thermal conductivity and electrothermal possibilities of heating elements made of silicon carbideTr. MKhTI im. D. I. Mendeleeva, 59
(1969)
Phase Diagrams of Silicate Systems, Part 1. Binary Systems
V. P. Isachenko, V. A. Osipova, A. S. Sukomel (1975)
Heat Transfer
M. A. Andrianov, V. L. Balkevich (1977)
Experiments in producing heaters made of chromite lanthanum modified by calciumTr. MKhTI im. D. I. Mendeleeva, 98
B. M. Barykin, V. G. Gordon, A. I. Romanov (1980)
Studies of ceramic heating elements based on doped lanthanum chromiteÉlektrotekhn. Promyshl. Électrotekhn. Mater., 2
B. M. Barykin, V. G. Gordon, I. V. Prokhorova (1973)
Monochromatic emittance of LaCrO3 — Cr cermets between 300 and 1900 K in airHigh Temp. High Press, 5
L. E. Rubinchik (1975)
Electric Furnaces with Silicon Carbide Heaters
V. É. Peletskii, D. L. Timrot, V. Yu. Voskresenskii (1971)
High-Temperature Studies of the Thermal and Electrical Conductivity of Solid Bodies
I. A. Fel’dman, M. B. Rutman, G. K. Rubin, N. I. Shadrin (1965)
Calculation of Heaters of Resistive Electric Furnaces
A. D. Svenchanskii (1975)
Industrial Electric Furnaces
A calculation of temperature fields is given for solid and tubular lanthanum chromite electric heaters. A triple diagram of “heater temperature — furnace temperature — specific surface power” is developed for heaters of generally employed sizes in the range of 1000 – 2000°C.
Glass and Ceramics – Springer Journals
Published: Jul 21, 2007
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