轴套间隙中非牛顿流体对转轴转速的调控分析

ANALYSIS OF THE SHAFT ROTATING SPEED ADJUSTMENT BY NON-NEWTONIAN FLUID IN THE BUSHING CLEARANCE

  • 摘要: 对于旋转机械或转动能量采集器,保持恒定的转轴转速是维持能量传递稳定性、防止突加载荷引起构件破坏等的关键。本研究设计将剪切增稠型非牛顿流体注入轴与轴套的间隙中,通过理论分析和数值模拟研究了非牛顿流体对转轴转速的调节作用。对Bingham、幂律、Herschel-Bulkley、Sisko四种非牛顿流体,考察了粘度、稠度系数、流变指数、屈服应力等物性参数对转轴转速的影响。研究发现,在一定外载作用下,剪切增稠型非牛顿流体能够快捷的调节转轴的转速。

     

    Abstract: For rotating machines or rotational energy harvesters, keeping a constant rotating shaft speed is the key to maintain the stability of energy transfer and prevent component damage caused by sudden loading. In this study, the shear thickened non-Newtonian fluid is designed to inject into the clearance between the shaft and the shaft sleeve. The adjusting effect of the non-Newtonian fluid on the rotating speed of the shaft is studied by theoretical analysis and numerical simulation. The effects of the parameters viscosity, consistency coefficient, rheological index, yield stress etc. on shaft speed were investigated for non-Newtonian fluids including Bingham fluid, power law fluid, Herschel-Bulkley fluid and Sisko fluid. It is found that under a certain external load, the shear thickened non-Newtonian fluids have a fast adjusting effect on the rotating speed of shafts.

     

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