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Bifurcation and Chaos Analysis of Nonlinear Rotor System with Axial-grooved Gas-lubricated Journal Bearing Support 被引量:9
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作者 ZHANG Yongfang HEI Di +2 位作者 Lü Yanjun WANG Quandai MüLLER Norbert 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第2期358-368,共11页
Axial-grooved gas-lubricated journal bearings have been widely applied to precision instrument due to their high accuracy, low friction, low noise and high stability. The rotor system with axial-grooved gas-lubricated... Axial-grooved gas-lubricated journal bearings have been widely applied to precision instrument due to their high accuracy, low friction, low noise and high stability. The rotor system with axial-grooved gas-lubricated journal bearing support is a typical nonlinear dynamic system. The nonlinear analysis measures have to be adopted to analyze the behaviors of the axial-grooved gas-lubricated journal bearing-rotor nonlinear system as the linear analysis measures fail. The bifurcation and chaos of nonlinear rotor system with three axial-grooved gas-lubricated journal bearing support are investigated by nonlinear dynamics theory. A time-dependent mathematical model is established to describe the pressure distribution in the axial-grooved compressible gas-lubricated journal bearing. The time-dependent compressible gas-lubricated Reynolds equation is solved by the differential transformation method. The gyroscopic effect of the rotor supported by gas-lubricated journal bearing with three axial grooves is taken into consideration in the model of the system, and the dynamic equation of motion is calculated by the modified Wilson-0-based method. To analyze the unbalanced responses of the rotor system supported by finite length gas-lubricated journal bearings, such as bifurcation and chaos, the bifurcation diagram, the orbit diagram, the Poincar6 map, the time series and the frequency spectrum are employed. The numerical results reveal that the nonlinear gas film forces have a significant influence on the stability of rotor system and there are the rich nonlinear phenomena, such as the periodic, period-doubling, quasi-periodic, period-4 and chaotic motion, and so on. The proposed models and numerical results can provide a theoretical direction to the design of axial-grooved gas-lubricated journal bearing-rotor system. 展开更多
关键词 axial-grooved gas journal bearing differential transformation method nonlinear BIFURCATION CHAOS
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轴向槽气体润滑轴承-转子系统非线性行为 被引量:6
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作者 张永芳 周世生 +2 位作者 吕延军 吴莹 虞烈 《振动.测试与诊断》 EI CSCD 北大核心 2013年第2期219-223,337,共5页
基于非线性理论,分析了气体动压轴承-转子非线性动力系统的不平衡响应。建立了与时间相关的非线性气体动压轴承的压力分布模型和气体动压轴承-刚性Jeffcott转子系统的动力学模型。运用微分变换法求解了动压气体润滑的Reynolds方程,得到... 基于非线性理论,分析了气体动压轴承-转子非线性动力系统的不平衡响应。建立了与时间相关的非线性气体动压轴承的压力分布模型和气体动压轴承-刚性Jeffcott转子系统的动力学模型。运用微分变换法求解了动压气体润滑的Reynolds方程,得到了非线性气膜压力分布。运用分岔图、轨迹图、Poincaré映射图及频谱图研究了三轴向槽有限宽气体轴承支承的非线性转子系统的不平衡响应。数值结果表明,系统的非线性行为包括周期运动、周期二运动、周期四运动、周期八运动及混沌运动等。 展开更多
关键词 非线性 动压气体轴承 转子 微分变换法
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含双时滞轴向槽动压气体轴承–非线性转子系统的运动分析 被引量:2
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作者 张永芳 张帅 +3 位作者 叶鹏 刘成 刘付喜 吕延军 《中国电机工程学报》 EI CSCD 北大核心 2014年第35期6346-6354,共9页
针对高速气体轴承-转子系统在主动控制过程中无法避免的时滞现象,建立了含有双时滞控制的三轴向槽动压气体轴承-转子系统的动力学模型。运用微分变换法求解动压气体润滑的Reynolds方程,得到了非线性气膜压力分布。基于精细积分法,构造... 针对高速气体轴承-转子系统在主动控制过程中无法避免的时滞现象,建立了含有双时滞控制的三轴向槽动压气体轴承-转子系统的动力学模型。运用微分变换法求解动压气体润滑的Reynolds方程,得到了非线性气膜压力分布。基于精细积分法,构造了时滞非线性轴承-转子系统动力响应的求解方法。针对含有双时滞控制的气体轴承-转子系统,运用轨迹图、时间历程图等研究了系统的非线性响应,分析了时滞量和反馈控制增益对系统响应的影响。数值结果表明,当选取的反馈控制增益与气体轴承-转子系统的时滞量相匹配时,时滞系统的振动幅值会变小,运动将更加稳定,达到了较好的控制效果。 展开更多
关键词 非线性转子系统 轴向槽动压气体轴承 时滞 微分变换法 精细积分法 稳定性
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