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Research on Real Working Condition Simulation and Performance Test of Wind Power Main Bearing Based on Test Bench

机译:基于试验台的风力发电主轴实际工作条件仿真及性能试验研究

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As a renewable energy source, wind energy has received more and more attention, and the wind power industry has also been advocated and developed by countries all over the world. In the production and use of wind turbines, the design and manufacturing technology of wind turbine bearings is very important. In order to ensure the reliable operation of the wind power main bearing after installation and realize the longest life of it, this paper designs a bearing test bench that can test the performance of the wind power main bearing. It can analyze the temperature, displacement, load, and moment of the key parts of the 5?MW wind power main shaft bearing. The solid modeling of the experimental platform was carried out using the 3D modeling software SolidWorks. Hydraulic loading system and test monitoring system are designed to realize the drive and control of the test bench. Through the established mathematical model, the central load of the hub is converted into the axial cylinder load and the radial cylinder load of the test bench to simulate the actual working conditions of the tested bearing. The test results show that the test bench meets various loading requirements and can reliably complete the task of testing wind power main bearings.
机译:作为可再生能源的,风能越来越受到越来越多的关注,风电业也受到全球各国的倡导和开发的。在风力涡轮机的生产和使用中,风力涡轮机轴承的设计和制造技术非常重要。为了确保在安装后的风力发电机的可靠运行和实现它的最长寿命,本文设计了一个轴承测试台,可以测试风力发电主轴承的性能。它可以分析5?MW风电主轴轴承的关键部件的温度,位移,负载和时刻。使用3D建模软件SolidWorks进行实验平台的实体建模。液压装载系统和测试监控系统旨在实现测试台的驱动和控制。通过建立的数学模型,轮毂的中心负载被转换为轴向缸载荷和测试台的径向圆筒负载,以模拟测试轴承的实际工作条件。测试结果表明,测试台满足各种装载要求,可靠地完成测试风力发电主轴承的任务。

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