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Global bifurcation and chaos analysis in nonlinear vibration of spur gear systems

机译:正齿轮系统非线性振动的全局分岔与混沌分析

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摘要

The global homoclinic bifurcation and transition to chaotic behavior of a nonlinear gear system are studied by means of Melnikov analytical analysis. It is also an effective approach to analyze homoclinic bifurcation and detect chaotic behavior. A generalized nonlinear time varying (NLTV) dynamic model of a spur gear pair is formulated, where the backlash, time varying stiffness, external excitation, and static transmission error are included. From Melnikov method, the threshold values of the control parameter for the occurrence of homoclinic bifurcation and onset of chaos are predicted. Additionally, the numerical bifurcation analysis and numerical simulation of the system including bifurcation diagrams, phase plane portraits, time histories, power spectras, and Poincare sections are used to confirm the analytical predictions and show the transition to chaos.
机译:通过梅尔尼科夫分析法研究了非线性齿轮系统的整体同宿分叉和过渡到混沌行为。这也是分析同宿分叉和检测混沌行为的有效方法。建立了正齿轮副的广义非线性时变(NLTV)动力学模型,其中包括齿隙,时变刚度,外部激励和静态传递误差。根据梅尔尼科夫方法,预测了用于同向分叉和混沌发生的控制参数的阈值。此外,系统的数值分叉分析和数值模拟(包括分叉图,相平面肖像,时间历史,功率谱和庞加莱截面)用于确认分析预测并显示出向混沌的转变。

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