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首页> 外文期刊>International Journal of Rotating Machinery >Study on Thermal Unstable Vibration of Rotor under Journal Whirl with Large Amplitude in Journal Bearing
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Study on Thermal Unstable Vibration of Rotor under Journal Whirl with Large Amplitude in Journal Bearing

机译:轴颈旋转旋转振动的热不稳定振动研究

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摘要

To investigate the thermal unstable vibration caused by journal whirls with large amplitude in journal bearing, an analysis model of lubricant film thickness is established. The journal surface temperature distribution is solved, and the reason for journal surface temperature difference appearance and its influence on rotor vibration are analyzed. Taking a turbogenerator as an example, the journal surface temperature difference and the induced rotor thermal bending under synchronous whirl in the bearing are calculated. Meanwhile, an engineering vibration fault with its treatment is presented. Results show that, the journal surface circumferential temperature difference is caused by viscous shearing within lubricant film under journal whirls with large amplitude in journal bearing. The direction of temperature difference is related to the direction of unbalanced force acting on journal. The temperature difference causes rotor thermal bending, which can be converted to a thermal unbalance on the rotor. The rotor vibration is caused by both thermal and initial unbalance. When the rotor is running below or at the critical speed, the vibration is on the increase until it leads to instability of the rotor eventually. When the rotor is running above the critical speed, the rotor vibration fluctuates periodically. Reducing the initial (mechanical) unbalances decreases the rotor vibration and the journal surface circumferential temperature difference.
机译:为了研究轴颈轴承大振幅旋转引起的热不稳定振动,建立了润滑膜厚度的分析模型。分析了杂志的表面温度分布,分析了杂志温度差异的原因及其对转子振动的影响。采用涡轮机构作为示例,计算轴颈在同步旋转下的轴颈温度差和诱导的转子热弯曲。同时,提出了一种工程振动故障。结果表明,杂志圆周温度差是在轴颈轴承大振幅下的润滑膜内粘性剪切引起的。温度差的方向与作用于杂志的不平衡力的方向有关。温度差导致转子热弯曲,这可以转换为转子上的热不平衡。转子振动是由热和初始不平衡引起的。当转子在下方或临界速度下运行时,振动在最终导致转子的不稳定性之后增加。当转子在临界速度高于临界速度时,转子振动周期性地波动。减少初始(机械)的不平衡降低转子振动和轴颈周向温度差。

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