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机构地区:[1]河南科技大学机电工程学院,河南洛阳471003 [2]河南科技大学车辆与动力工程学院,河南洛阳471003
出 处:《机械传动》2013年第9期10-14,共5页Journal of Mechanical Transmission
基 金:国家自然科学基金资助项目(51305126);河南省教育厅科学技术研究重点项目(13A460274);河南科技大学青年科学基金项目(2009QN0028)
摘 要:针对风力发电机齿轮传动系统在变风速工况下失效率高的问题,在模拟真实风速的基础上,建立考虑外部随机风载及内部轮齿时变啮合刚度、轴承时变刚度及综合传递误差等激励因素的风力发电机齿轮传动系统齿轮)轴承耦合动力学模型,通过对动力学模型进行仿真计算,得到各齿轮副的动态啮合力和各支承轴承的动态接触力。在此基础上,利用有限单元法、赫兹接触理论和数理统计理论得到了传动系统各齿轮和各支承轴承的动态接触力的概率分布,基于应力)强度干涉理论建立风力发电机齿轮传动系统关键零部件的模糊可靠性模型,并计算了关键零部件及系统的模糊可靠度。Aiming at the problem of high failure rate of wind turbine gear transmission system in the stochastic wind speed conditions, a coupling gear - bearing dynamics model of gear transmission system of wind turbine is built on the basis of simulation real wind speed, the model includes external random wind load and internal incentives such as time - vary mesh stiffness of gear pair, time - vary stiffness of rolling element bearing and integrated transmission er- ror. Numerical method is used to simulate the dynamics model, and the dynamic meshing forces of each gear pair as well as dynamic bearing forces of each bearing are obtained. On that basis, the dynamic contact stresses of each gear pair and each bearings as well as their probability distribution are obtained by using the finite element method, the Hertz contact theory and the mathematical statistic theory. The fuzzy reliability model of key components of wind tur- bine gear transmission system is established based on the stress strength interference theory, the fuzzy reliability of the key components and the transmission system are calculated.
分 类 号:TH132.41[机械工程—机械制造及自动化]
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