Stress analysis of rotating disc with non-uniform thickness using finite element modeling

A. Elhefny, L. Guozhu
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引用次数: 4

Abstract

There are numerous applications of rotating disc in the aerospace industry such as in gas turbines. In this paper, stresses of an existing turbine disc were studied. It is aimed to highlight the stress distribution in order to benefit the design purposes of the disc and implies the importance of using finite element (FE) analysis in simulating the real design case. Then, to present the real model, a two-dimensional (2-D) axisymmetric model for non-uniform disc was analyzed using FE. Stresses developed due to the disc operating conditions at high rotational speeds and thermal gradients were evaluated using conduction heat transfer mode, taking into consideration the material behavior at elevated temperatures as well as the effect of the real boundary conditions. The FE model reveals that the greatest stresses in the disc result from rotation and thermal loads, and they are located at the center of the disc.
非均匀厚度转盘的有限元应力分析
旋转圆盘在航空航天工业中有许多应用,如燃气轮机。本文对某现有涡轮盘的应力进行了研究。它的目的是突出应力分布,以有利于圆盘的设计目的,并暗示使用有限元(FE)分析在模拟真实的设计情况的重要性。然后,利用有限元方法对非均匀盘的二维轴对称模型进行了分析,得到了真实的模型。考虑到材料在高温下的行为以及实际边界条件的影响,利用传导传热模式评估了由于高转速和热梯度下的圆盘工作条件而产生的应力。有限元模型表明,圆盘内最大的应力来自于旋转和热载荷,并且它们位于圆盘的中心。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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