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- W3195510010 abstract "The thermal stresses set up in furnace walls under conditions of unsteady unilateral heating or cooling are calculated by an approximation method based on linearization of the temperature curve. Linearization enables the heated wall to be subdivided into a Zone A having a linear temperature gradient and a Zone K which is still at the original temperature. During heating or cooling, Zone A becomes steadily broader at the expense of K. Finally, the whole wall consists exclusively of Zone A. The linear temperature gradient in A would cause stress-free bending of Zone A dependent on the magnitude of the temperature gradient provided it were separate from Zone K. The thermal stresses are set up as a result of the rigid joint between A and K hindering the bending process with bending stresses sigma/sub x/ occurring in a direction perpendicular to the temperature gradient and with normal stresses sigma/sub y/ occurring parallel to the temperature gradient. With slab-shaped bodies heated from the flat surface, the Zones A and K bend jointly to a smaller amount than A would bend. In the case of oblong slender bodies heated from one end, the mechanical effects of heating are restricted to a zone on the hot end which is roughly twice as broad as Zone A because the stresses diminish toward the cold end. The quantities attributable to the shape of the body, its thermal conductivity, the heat transfer coefficient, and the depth of temperature penetration are combined to form dimensionless shape factors which facilitate the conversion of stress values from experimental setups to full-scale plant and vice versa." @default.
- W3195510010 created "2021-08-30" @default.
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- W3195510010 date "1974-12-01" @default.
- W3195510010 modified "2023-09-24" @default.
- W3195510010 title "Thermal stresses in furnace walls" @default.
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