基于Ansys Workbench的定子铁芯起吊结构有限元分析

FEM Analysis of Wind Turbine Stator Core Lifting Structure based on Ansys Workbench

  • 摘要: 风力发电机在生产制造过程中,定子铁芯需要多次起吊以完成运输、浸渍、装配等工序,因此需在定子铁芯两侧增加吊耳以满足吊装要求。为了评估定子铁芯两侧吊耳的结构强度,该文利用Ansys Workbench对定子铁芯起吊状态进行了结构静力学分析,分析结果得出:定子铁芯在起吊状态下的最大等效应力为83 MPa,远小于吊耳材料Q235B的屈服强度235 MPa;取定子铁芯安全系数1.5,得到定子铁芯起吊状态的许用应力为157 MPa,而最大等效应力83 MPa远小于许用应力157 MPa。因此,定子铁芯在利用吊耳起吊过程中,满足安全使用条件。

     

    Abstract: During the production process of wind turbine, the stator core needs to be lifted several times to complete transportation, impregnation, assembly, etc., so the lifting lugs are added on both sides of the stator core to meet the lifting requirements. In order to evaluate the structural strength of the lifting lugs on both sides of the stator core, Ansys Workbench is used to carry out structural static analysis of the lifting state of the stator core. The analysis results show that the maximum equivalent stress of the stator core under the lifting state is 83 MPa, which is significantly lower than the yield strength of the lifting lug material Q235B, which is 235 MPa. Taking the safety factor of the stator core 1.5, the allowable stress of the stator core lifting state is 157 MPa, and the maximum equivalent stress of 83 MPa is far less than the allowable stress of 157 MPa. Therefore, the stator core meets the safe use conditions during the lifting process by using the lifting lug.

     

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