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Theoretical analysis and experimental study on loading process among stages of magnetic fluid seal

机译:磁流体密封各阶段加载过程的理论分析与实验研究

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A new experimental setup was designed in order to study the loading process among stages of magnetic fluid seal. Magnetic field distributions under the pole pieces of the magnetic fluid seal with six stages were simulated by finite element method, and the results proved its rationality. A series of tests on experimental setup were run in order to study the way of pressure transmission among stages of magnetic fluid seal and to extend our knowledge on the mechanism of seal operation. The results of the experiments not only proved the correctness of the corollaries of previous researchers and more detailedly shows the way of pressure transmission in each stage. A mathematical model of the way of pressure transmission among stages of magnetic fluid sea was constructed by previous inference and the present experimental results, and it is able to express the specific way of pressure transmission at certain extent. The experimental conclusion also shows that the quantity of magnetic liquid in each stage will be redistributed and the quantity of magnetic liquid in each stage may be unevenly distributed when the pressure of the pressure chamber is imposed. It has a certain value of reference in the improvement of design and structure process of magnetic fluid seal in engineering problem.
机译:为了研究磁性流体密封各阶段之间的加载过程,设计了一种新的实验装置。用有限元方法对六级磁流体密封极靴下的磁场分布进行了模拟,结果证明了其合理性。为了研究电磁流体密封各阶段之间的压力传递方式,并扩展了我们对密封操作机理的认识,进行了一系列的实验测试。实验结果不仅证明了先前研究人员的推论的正确性,而且更详细地显示了每个阶段压力传递的方式。通过先前的推论和目前的实验结果,建立了磁流体海各阶段压力传递方式的数学模型,能够在一定程度上表达具体的压力传递方式。实验结论还表明,当施加压力室的压力时,每个阶段的磁性液体的量将被重新分配,并且每个阶段的磁性液体的量可能会不均匀地分布。对于工程问题中磁流体密封件的设计和结构工艺的改进具有一定的参考价值。

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