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Comparison of plane-stress, generalized-plane-strain and 3D FEM elastic-plastic analyses of thick-walled cylinders subjected to radial thermal gradient

机译:径向热梯度厚壁圆柱体的平面应力,广义平面应变和3D对有限塑料分析的比较

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In many industrial applications, thick-walled cylindrical components are subjected to high pressure and/or temperature. During the operation the cylinder wall may undergo elastic-plastic deformation. This paper presents plane-stress and plane-strain thermo-elastic-plastic stress analyses of thick-walled cylinders subjected to a radial thermal gradient. A three-dimensional finite element method (3D FEM) analysis of the thermo-elastic-plastic stresses in thick-walled cylinder is also carried out. The 3D FEM results are compared with the analytical plane stress and the generalized plane strain analyses in order to study the validity of these models on the basis of length to wall-thickness ratio of cylinders. The plane stress and generalized plane strain analyses are based on the Tresca yield criterion and associated flow rule. The strain hardening behavior of the material of the cylinder is taken into account. It is observed that for the length to wall thickness ratio of more than 6, the generalized plane strain analysis can provide sufficiently accurate results. Similarly, for the length to wall thickness ratio of less than 0.5, plane stress analysis can be used. When the length to wall thickness ratio is more than 0.5 but less than 6, a three-dimensional analysis is needed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在许多工业应用中,厚壁圆柱形部件经受高压和/或温度。在操作期间,汽缸壁可以经历弹性塑性变形。本文介绍了经受径向热梯度的厚壁圆柱体的平面应力和平面 - 应变热弹性塑性应力分析。还进行了一种三维有限元方法(3D FEM)厚壁圆柱体中的热弹性应力分析。将3D FEM结果与分析平面应力和广义平面应变分析进行比较,以便基于圆柱形的壁厚比的长度研究这些模型的有效性。平面应力和广义平面应变分析基于TRESCA屈服标准和相关的流量规则。考虑圆柱材料的应变硬化行为。观察到,对于壁厚比的长度大于6,广义平面应变分析可以提供足够的准确结果。类似地,对于壁厚比的长度小于0.5,可以使用平面应力分析。当壁厚比的长度大于0.5但小于6时,需要三维分析。 (c)2017 Elsevier Ltd.保留所有权利。

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