February 2020

Maintenance and Reliability

Apply ceramic coatings to extend radiant tube life in process heaters

Process tubes in refining applications are typically steel alloy (ASTM A335 P22, P5 or P9), which contain 2.25%, 5% and 9% Cr, respectively. These grades oxidize at operating temperatures, and scale will grow continuously on the surface, often reaching 2 mm in thickness in higher-temperature/high-heat-flux units. The layers of scale are very insulating and represent a significant barrier to conductive heat transfer to the process.

Bacon, J., IGS-Cetek

Process tubes in refining applications are typically steel alloy (ASTM A335 P22, P5 or P9), which contain 2.25%, 5% and 9% Cr, respectively. These grades oxidize at operating temperatures, and scale will grow continuously on the surface, often reaching 2 mm in thickness in higher-temperature/high-heat-flux units. The layers of scale are very insulating and represent a significant barrier to conductive heat transfer to the process. The rate of heat transfer by conduction through the tube wall is calculated using Eq. 1:                (1)     To and Ti are the outer and inner tube wall temperatures, respectively, of internal diameter Di and outer diameter D0. The coefficient of thermal c

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