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Viscosity monitoring and control on oil-film bearing lubrication with ferrofluids

机译:铁磁流体对油膜轴承润滑的粘度监测与控制

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Ferrofluid application in the oil-film bearing can improve the viscosity and the load-carrying capacity in a magnetic field. A solenoid was developed to provide magnetic field for ferrofluid, using which the distribution of magnetic induction intensity was calculated. The viscosity equation of ferrofluid was derived. The effects of oil-film temperature T, oil-film pressure P and magnetic intensity H on ferrofluid viscosity η_f was analyzed and tested by an unifactor experiment method. The control equations and transfer functions of each variable were given based on a large-scale oil-film bearing test rig. The variations of P, T, H and η_f were simulated and monitored by a reasonable control strategy. The results suggest that the viscosity increment by magnetic intensity could compensate the viscosity decrement by temperature rise.
机译:铁磁流体在油膜轴承中的应用可以提高粘度和磁场中的承载能力。开发了螺线管以提供用于铁磁流体的磁场,据此计算出磁感应强度的分布。推导了铁磁流体的粘度方程。通过单因素实验方法分析和测试了油膜温度T,油膜压力P和磁强度H对铁磁流体粘度η_f的影响。基于大型油膜轴承试验台,给出了每个变量的控制方程和传递函数。通过合理的控制策略对P,T,H和η_f的变化进行了模拟和监控。结果表明,磁强度引起的粘度增加可以补偿温度升高引起的粘度下降。

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