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The Influence of the Temperature Rise on the Sealing Performance of the Rotating Magnetic Fluid Seal

机译:温度上升对旋转磁流体密封的密封性能的影响

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摘要

The magnetic fluid seal is widely used in the high-speed mechanical devices. Also, the temperature of the seal increases with the viscous heating under the high shearing rate in the magnetic fluid. However, the influence of the temperature on the sealing performance has not been studied quantitatively in the available research. In this article, the change rule of magnetic fluid temperature and the influence on the sealing performance are researched through the simulation and experiment methods. The thermal field simulation is conducted with the heat generation in the fluid. To calculate the decrease of the magnetic properties quantitatively, the magnetization curves under different temperatures are measured to carry out the relationship between the saturation magnetization and temperature. Based on the magnetization curve result, the two-phase flow between air and magnetic fluid is solved under different shaft rotation speeds with the influence of temperature change. Besides, the sealing experiment is conducted with the highest rotation speed of 8000 rpm. The results of the simulation and experiment show good consistency, and the sealing capacity decreases with the rise of rotation speed.
机译:磁性流体密封件广泛用于高速机械装置。而且,密封的温度随着磁性流体中的高剪切速率下的粘性加热而增加。然而,在可用的研究中,尚未在可用研究中进行温度对密封性能的影响。在本文中,通过模拟和实验方法研究了磁性流体温度的变化规则和对密封性能的影响。热场模拟在流体中的热量产生。为了定量计算磁性的降低,测量不同温度下的磁化曲线以执行饱和磁化和温度之间的关系。基于磁化曲线结果,通过温度变化的影响,在不同的轴旋转速度下,空气和磁性流体之间的两相流溶解。此外,密封实验以8000rpm的最高转速进行。模拟和实验结果表现出良好的一致性,密封容量随着轮转速度的升高而降低。

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