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550kV GIL Three-pillar Structure Press-fitting Process Simulation

机译:550KV GIL三柱结构压配工艺仿真

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This paper establishes a two-dimensional axisymmetric model of the 550kV GIL Three-pillar insulator and shield tube press-fit structure. Explicit calculation methods were used to simulate the press-fitting process of Three-pillar insulator, such as pressing the wedge ring with a force of 4t and closing the shield tube with a force of 3.5t. The influences of different friction coefficients and different solution time steps on the displacement of the wedge ring, the axial displacement of the closing mould and the distance between the end of the shield tube and the center conductor after closing are compared and analyzed. After increasing the simulation time step of the closing, the changes of the parameters such as the axial displacement of the mould, the closing gap, Mises stress and equivalent plastic strain are compared and analyzed. The comparison results show that the friction coefficient has a significant effect on the wedge ring's indentation parameters; different solution time steps and increased closing simulation time steps have little effect on the wedge ring's indentation and shielding tube closing result parameters. The test shows that when the friction coefficient is 0.11, the simulation results are basically consistent with the test results. This simulation method can provide guidance for the optimization design of press-fitting process parameters and the subsequent press-fitting simulation of similar products.
机译:本文建立了550kV GIL三支柱绝缘子和屏蔽管压配合结构的二维轴对称模型。明确的计算方法用于模拟三支柱绝缘子的压配工艺,例如用4T的力按压楔形环并用3.5t的力封闭屏蔽管。比较和分析了不同摩擦系数对楔环的位移的影响,闭合模具的轴向位移和屏蔽管的末端与中心导体之间的距离的影响。在增加闭合的模拟时间步骤之后,比较和分析了模具轴向位移,闭合间隙,误判和等效塑性应变的参数的变化。比较结果表明,摩擦系数对楔环的凹口参数具有显着影响;不同的解决方案时间步骤和增加的闭合仿真时间步长对楔环的凹口和屏蔽管关闭结果参数几乎没有影响。测试表明,当摩擦系数为0.11时,模拟结果与测试结果基本一致。该仿真方法可以为压配工艺参数的优化设计和类似产品的后续压力拟合模拟提供指导。

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