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Couple-stress fluid improves dynamic response of gear-pair system supported by journal bearings

机译:偶应力流体改善了由轴颈轴承支撑的齿轮对系统的动态响应

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摘要

A systematic analysis of the dynamic behavior of a gear-bearing system with nonlinear suspension, couple-stress fluid flow effect, nonlinear oil-film force, and nonlinear gear mesh force is performed in the present study. The dynamic orbits of the system are observed using bifurcation diagrams plotted using the dimensionless rotational speed ratio as a control parameter. The onset of chaotic motion is identified from the phase diagrams, power spectra, Poincaré maps, Lyapunov exponents and fractal dimension of the gear-bearing system. The numerical results reveal that the system exhibits a diverse range of periodic, subharmonic, quasiperiodic, and chaotic behaviors. The couple-stress fluid would be a useful lubricating fluid to suppress nonlinear dynamic responses and improve the steady of the systems. The results presented in this study provide some useful insights into the design and development of a gear-bearing system for rotating machinery that operates in highly rotational speed and highly nonlinear regimes.
机译:本研究对具有非线性悬架,耦合应力流体流动效应,非线性油膜力和非线性齿轮啮合力的齿轮轴承系统的动力学行为进行了系统分析。使用分叉图观察系统的动态轨道,该分叉图使用无量纲转速比作为控制参数绘制。从相图,功率谱,庞加莱图,李雅普诺夫指数和齿轮轴承系统的分形维数可以识别出混沌运动的开始。数值结果表明,该系统表现出多种周期性,次谐波,拟周期和混沌行为。偶应力流体将是有用的润滑流体,用于抑制非线性动力响应并改善系统的稳定性。这项研究提出的结果为旋转机械的齿轮轴承系统的设计和开发提供了一些有用的见识,该系统在高转速和高度非线性状态下运行。

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