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Dynamic Response of Rub Caused by a Shedding Annular Component Happening in a Steam Turbine

机译:汽轮机环形零件脱落引起的碰摩动力响应。

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Rub caused by a shedding annular component is a severe fault happening in a steam turbine, which could result in a long-term wearing effect on the shaft. The shafting abrasion defects shortened the service life and damaged the unit. To identify the fault in time, the dynamic response of rub caused by a shedding annular component was studied as follows: (I) a rotor-bearing model was established based on the structural features of certain steam turbines; node-to-node contact constraint and penalty method were utilized to analyze the impact and friction; (II) dynamic response of the rotor-bearing system and the shedding component was simulated with the development of rub after the component was dropping; (III) fault features were extracted from the vibration near the bearing position by time-domain and frequency-domain analysis. The results indicate that the shedding annular component would not only rotate pivoting its axis but also revolve around the shaft after a period of time. Under the excitation of the contact force, the peak-peak vibration fluctuates greatly. The frequency spectrum contains two main components, that is, the working rotating frequency and revolving frequency. The same phenomenon was observed from the historical data in the field.
机译:环形部件脱落引起的摩擦是蒸汽轮机中发生的严重故障,可能导致轴长期磨损。轴的磨损缺陷缩短了使用寿命并损坏了设备。为了及时发现故障,研究了由脱落的环形部件引起的摩擦的动态响应,方法如下:(I)根据某些汽轮机的结构特征,建立了转子轴承模型;利用节点间接触约束和惩罚方法对碰撞和摩擦进行分析。 (II)转子-轴承系统和脱落部件的动态响应通过部件掉落后摩擦的发展模拟。 (III)通过时域和频域分析从轴承位置附近的振动中提取故障特征。结果表明,脱落的环形部件不仅会绕其轴旋转,而且还会在一段时间后绕轴旋转。在接触力的激励下,峰-峰值振动极大地波动。频谱包含两个主要组成部分,即工作旋转频率和旋转频率。从该领域的历史数据中观察到了相同的现象。

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