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Optimization Design of Flange Connection Bolt Set in Large-Scale Rolling Bearings Under Complicated Working Conditions

机译:复杂工作条件下大型滚动轴承法兰连接螺栓的优化设计

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This paper presents an optimal design method for flange connection bolt set under complicated working conditions in large-scale rolling bearings. In this method, the minimum mass of bolt set is used as optimization objective, and the diameter, length of bolt and the number of bolts are used as optimization variables. The reliability and installation space of bolts are taken as constraints, and the final solution is realized by genetic algorithm. Using this method, the flange connection bolt set for a pitch bearing in a wind turbine with consideration of the fatigue load and ultimate load is optimized. Comparing the optimization result with the bolt set originally used in the pitch bearing, it shows that the method can greatly reduce the mass of bolt set.
机译:本文介绍了大规模滚动轴承复杂工作条件下设定的法兰连接螺栓的最佳设计方法。在该方法中,螺栓组的最小质量用作优化目标,并且螺栓的直径和螺栓数量用作优化变量。螺栓的可靠性和安装空间被视为约束,最终解决方案是通过遗传算法实现的。使用这种方法,优化了考虑到疲劳负荷和最终负载的风力涡轮机中的凸缘连接螺栓的凸缘连接螺栓。将优化结果与最初用于俯仰轴承中使用的螺栓套进行比较,它表明该方法可以大大降低螺栓集的质量。

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