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Calculation and Experiment of Electromagnetic Force of the Axial AMB used in HTR-PM Main Helium Blower Prototype and its Dual Material Selection Method

机译:HTR-PM主氦气鼓风机原型中使用的轴向电磁力的计算与实验及其双重材料选择方法

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The Active Magnetic Bearing (AMB) is used in the main helium blower in the High Temperature Reactor-Pebble-bed Modules (HTR-PM) which is being constructed in Shandong province, China The axial AMB is very large and works under extreme conditions. The calculation deviation of the electromagnetic force of the axial AMB was studied experimentally. Through measuring B-H curve of the material in large range of magnetic field intensity, considering flux leakage in calculation, and considering residual magnetism and the change of the gas gap in measurement, the calculation deviation reduces to 10%, with most values less than 5%. The material selection method of the axial AMB working under extreme conditions was studied experimentally. Through measuring the electromagnetic force when the stator and the thrust disc are made of different materials, it's found that the force mostly depends on the stator. Combined with the analysis of the stress distribution of the stator and the thrust disc under working condition, the dual material selection method is proposed. That is, the stator material should have good magnetic properties and its mechanical properties are not very important, however, the thrust disc material should have good mechanical properties, and its magnetic properties are not very important.
机译:主动磁性轴承(AMB)用于主氦气鼓风机,在山东省建造的高温反应器 - 卵石床模块(HTR-PM)中,轴向AMB非常大,在极端条件下工作。实验研究了轴向AMB的电磁力的计算偏差。通过测量大量磁场强度的材料的BH曲线,考虑计算中的磁通泄漏,并考虑剩余磁性和测量中气隙变化,计算偏差降低到10%,大多数值小于5% 。实验研究了在极端条件下工作的轴向AMB的材料选择方法。通过测量定子和推力盘的电磁力由不同的材料制成时,发现该力主要取决于定子。结合在工作条件下分析定子和推力盘的应力分布,提出了双重材料选择方法。也就是说,定子材料应具有良好的磁性,其机械性能不是非常重要的,然而,推力盘材料应具有良好的机械性能,其磁性性能不是很重要。

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