日本機械学会論文集 A編
Online ISSN : 1884-8338
Print ISSN : 0387-5008
流体加熱を受ける一般軸対称殻の熱弾粘塑性変形
竹園 茂男垰 克己青木 隆稲村 栄次郎
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1993 年 59 巻 562 号 p. 1443-1450

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An analytical method for the elasto/visco-plastic deformation of axisymmetrical thin shells subjected to thermal loads due to fluid is developed. First, the temperature distribution through the thickness is assumed to be curves of second order, and the temperature field in the shell under the appropriate initial and boundary conditions is determined using the equations of heat conduction and heat transfer. Secondly, the stresses and deformations are derived from the thermal stress equations. The equations of equilibrium and the relations between the strains and displacements are derived from the Sanders elastic shell theory. For the constitutive relations, the Perzyna elasto/visco-plastic equations which consider the temperature effect are employed. The fundamental equations derived are numerically solved using the finite difference method. As a numerical example, a simply supported internal pressure cylindrical shell made of aluminum under thermal loading due to fluid is analyzed, and the variations in displacements and internal forces with time are discussed.

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