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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Experimental Investigation on Thermohydrodynamic Performance of Large Tilting-Pad Journal Bearing Including the Inlet Pressure Effect
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Experimental Investigation on Thermohydrodynamic Performance of Large Tilting-Pad Journal Bearing Including the Inlet Pressure Effect

机译:含进气压力效应的大型可倾式滑动轴颈轴承热流体力学性能试验研究

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摘要

The thermohydrodynamic performance of a large tilting-pad journal bearing including the inlet pressure effect is investigated experimentally. The continuous film pressure, film thickness and shaft surface temperature, and bearing surface temperature are measured along with the shaft speed and the bearing load for various flow rates. Considerably large inlet pressure is observed at the entrance of each pad, especially the lower pads. The inlet pressure is increased by the increase of shaft speed as well as bearing load, but is almost independent of the flow rate. The upper pads always maintain a slight wedge film shape owing to the inlet pressure, and scraping is not observed in the upper pads. It is observed that the shaft surface temperature is constant in the circumferential direction and increases with the increase of shaft speed in both low and high shaft-speed regions; however, there exists a transition region where the shaft surface temperature decreases with the increase of shaft speed.
机译:实验研究了包括入口压力效应在内的大型可倾瓦轴颈轴承的热流体力学性能。测量各种流量下的连续薄膜压力,薄膜厚度和轴表面温度以及轴承表面温度,以及轴速度和轴承负载。在每个垫片(尤其是下部垫片)的入口处观察到很大的入口压力。入口压力会随着轴速度和轴承负载的增加而增加,但几乎与流量无关。由于入口压力,上垫板始终保持轻微的楔形薄膜形状,并且在上垫板中未观察到刮擦。可以看出,轴表面温度在圆周方向上是恒定的,并且在低和高轴速度区域中都随着轴速度的增加而增加;但是,存在轴表面温度随着轴速度的增加而降低的过渡区域。

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