Exact limit pressure of high-speed couplings of micro gas turbines for interference fits

Ling Xiong, Peng Shang, Sheng Feng, Lie Yu, W. Cheng
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引用次数: 3

Abstract

Interference fits, which are widely used in the high-speed couplings of micro gas turbines, can transfer large torques while avoiding unbalance. Elastic limit pressure is an important parameters for determining the maximum load capacity of high-speed couplings of rotating elastic interference fits. In this paper, we developed a model to study the dependence of the maximum load capacity of rotating elastic interference fits upon the torques. Then we obtained the exact solutions of radial stress, tangential stress and shear stress of the coupling and shaft under plane stress condition. The formulas of the elastic limit pressures of interference fits were derived. Taking a 100kW micro gas turbine as example, the maximum load capacity in case of consideration of torques could decrease approximately 20% compared with that without this consideration under two parameters, one is the static friction coefficient; the other is the ratio of inner radius to outer radius of the coupling and shaft.
微燃气轮机过盈配合高速联轴器的精确极限压力
过盈配合广泛应用于微型燃气轮机的高速联轴器中,它可以在传递大扭矩的同时避免不平衡。弹性极限压力是决定旋转弹性过盈配合高速联轴器最大承载能力的重要参数。在本文中,我们建立了一个模型来研究旋转弹性过盈配合的最大承载能力与扭矩的关系。得到了平面应力条件下联轴器和轴的径向应力、切向应力和切向应力的精确解。推导了过盈配合弹性极限压力的计算公式。以100kW微型燃气轮机为例,在两个参数下,一是静摩擦系数,考虑转矩时的最大负载能力比不考虑转矩时的最大负载能力下降约20%;另一个是联轴器与轴的内半径与外半径之比。
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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