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首页> 外文期刊>International Journal of Fatigue >Fatigue life analysis of slewing bearings in wind turbines
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Fatigue life analysis of slewing bearings in wind turbines

机译:风力发电机回转支承的疲劳寿命分析

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摘要

Wind energy is a type of green renewable energy that has received increased attention. Wind turbines use wind power to generate electricity. As important components of wind turbines, slewing bearings are large and expensive, and these properties make bearing tests challenging. The theories and methods of slewing bearing design in wind turbines are not perfect, and the field lacks long-term engineering verification. To ensure the service life of slewing bearings, an accurate fatigue life estimation in the design stage is essential. This paper presents a method of testing the fatigue life using a small sample test. Experiments were conducted to determine the actual fatigue life of a small sample, and the changes in local raceway damage, vibration acceleration, and lubrication were monitored. A finite element model of the slewing bearing was established in ABAQUS to obtain the contact stress between the ball and raceway. The calculation results were imported into FE-SAFE to analyse the fatigue life. The Morrow mean stress correction in conjunction with the Brown-Miller strain-life method were used in the analysis. The simulation results were compared with the experimental results to validate the effectiveness of the experiment. Three fatigue life calculation methods have distinct advantages and can be mutually referenced to improve the accuracy of bearing life calculations.
机译:风能是一种绿色可再生能源,受到越来越多的关注。风力涡轮机利用风力发电。回转支承作为风力涡轮机的重要组件,体积大且价格昂贵,这些特性使轴承测试具有挑战性。风力发电机的回转支承设计理论和方法并不完善,并且该领域缺乏长期的工程验证。为了确保回转支承的使用寿命,在设计阶段准确估算疲劳寿命至关重要。本文提出了一种使用小样本测试来测试疲劳寿命的方法。进行实验以确定小样品的实际疲劳寿命,并监测局部滚道损坏,振动加速度和润滑的变化。在ABAQUS中建立了回转支承的有限元模型,以获取滚珠与滚道之间的接触应力。计算结果输入到FE-SAFE中以分析疲劳寿命。分析中使用了Morrow平均应力校正和Brown-Miller应变寿命方法。将仿真结果与实验结果进行比较,以验证实验的有效性。三种疲劳寿命计算方法具有明显的优势,可以相互参考以提高轴承寿命计算的准确性。

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