首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology >Magneto-hydrodynamic squeeze film characteristics between circular discs including rotational inertial effects
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Magneto-hydrodynamic squeeze film characteristics between circular discs including rotational inertial effects

机译:圆盘之间的磁流体动力挤压膜特性,包括旋转惯性效应

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The study of squeeze film characteristics between rotating circular discs with an electrically conducting lubricant in the presence of a transverse magnetic field has been presented in the present paper. The magneto-hydrodynamic (MHD) Reynolds-type equation for rotating squeezing circular discs is derived using the MHD motion equation together with the continuity equation. A closed-form solution for the MHD film pressure is obtained, and applied to evaluate the MHD squeeze film characteristics. From the results obtained, the influence of rotational inertia results in a lower MHD load-carrying capacity; however, the presence of externally applied magnetic fields provides an increase in the MHD load-carrying capacity and the MHD response time. On the whole, the squeeze film characteristics of rotating circular discs are improved by the use of an electrically conducting fluid in the presence of a transverse magnetic field.
机译:本文研究了在存在横向磁场的情况下,在带有导电润滑剂的旋转圆盘之间挤压膜的特性。使用MHD运动方程式和连续性方程式,得出了用于旋转挤压圆盘的磁流体动力学(MHD)雷诺型方程式。获得用于MHD膜压力的封闭形式的溶液,并将其用于评估MHD挤压膜的特性。从获得的结果来看,旋转惯性的影响导致较低的MHD承载能力;然而,外部施加磁场的存在增加了MHD的承载能力和MHD响应时间。总体上,通过在横向磁场的存在下使用导电流体来改善旋转圆盘的挤压膜特性。

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