Research on Temperature Rise Characteristics Prediction of Main Shaft Dual-Rotor Rolling Bearings in Aircraft Engines

Kai Xu, Hao Hu, Nan Guo, Xiqiang Ma, Xiaoping Li
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Abstract

Traditional aero-engine bearings rotate simultaneously with their inner and outer rings, which makes the temperature rise prediction model computationally large with low accuracy, and it cannot be accurately verified due to the means of testing. This paper presents a method for predicting the temperature rise characteristics of aero-engine bearings under composite load conditions. Firstly, the local method is used to calculate the heat generation from heat sources such as bearing spin, lubricant drag, and the differential sliding of steel ball and collar, respectively, then finite element modelling and steady-state thermal analysis are carried out for aero-engine bearings under the simultaneous action of axial and radial external loads, a double-rotor test setup is designed and the predictive model is validated, and finally, the influences of rotational speed and load on the temperature rise characteristics of the bearings are investigated. The study shows that the aero-engine bearing prediction model proposed in this paper has high accuracy; with the increase in the rotational speed of the inner ring of the bearing, the temperatures of both the inner and outer rings of the bearing increase significantly; the temperatures of the inner and outer rings of the bearing increase with the increase in the axial load, and the effect of the radial load on the temperature of the bearing is not obvious.
航空发动机主轴双转子滚动轴承温升特性预测研究
传统的航空发动机轴承内外圈同时旋转,温升预测模型计算量大,精度低,且受测试手段的限制无法准确验证。本文提出了一种在复合载荷条件下预测航空发动机轴承温升特性的方法。首先,采用局部法分别计算了轴承旋转、润滑剂阻力、钢球与套圈差动滑动等热源的发热量,然后对轴向和径向外载荷同时作用下的航空发动机轴承进行了有限元建模和稳态热分析,设计了双转子试验装置并验证了预测模型,最后研究了转速和载荷对轴承温升特性的影响。研究表明,本文提出的航空发动机轴承预测模型具有较高的精度;随着轴承内圈转速的增加,轴承内圈和外圈的温度都会显著升高;轴承内圈和外圈的温度随着轴向载荷的增加而升高,径向载荷对轴承温度的影响不明显。
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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