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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Dynamic vibratory motion analysis of a multi-degree-of-freedom torsional system with strongly stiff nonlinearities
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Dynamic vibratory motion analysis of a multi-degree-of-freedom torsional system with strongly stiff nonlinearities

机译:具有强刚性非线性的多自由度扭转系统的动态振动分析

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摘要

Physical driveline systems have inherent nonlinearities such as multiple piecewise linear springs, gear backlashes, and drag torques. The multi-staged clutch dampers, in particular, cause severe problems in simulating the nonlinear dynamic behaviors of multi-degree-of-freedom systems. In order to analyze the nonlinear dynamic behaviors of the system, the harmonic balance method has been employed. This study suggests a method to overcome the convergence problems with strong nonlinearities by employing two distinct smoothening factors for stiffness and hysteresis. First, the dynamic behaviors of the multi-degree-of-freedom torsional system are investigated by employing multi-staged clutch dampers subjected to a sinusoidal excitation. Second, the effects of system parameters are examined with respect to dynamic characteristics of torsional vibration. The regimes of resonance frequencies along with the relevant parameters of the system are investigated by calculating backbone curves, which reduce the calculation time significantly. In order to validate harmonic balance method simulation, the simulated results are compared with those of numerical simulation. Harmonic balance method is shown to be more efficient than numerical simulation in calculating the nonlinear frequency response, as well as in simulating the steady-state responses without transient response effect.
机译:物理动力传动系统具有固有的非线性,例如多个分段线性弹簧,齿轮齿隙和阻力。尤其是,多级离合器阻尼器在模拟多自由度系统的非线性动力学行为时会引起严重的问题。为了分析系统的非线性动力学行为,已采用谐波平衡法。这项研究提出了一种方法,该方法通过针对刚度和磁滞使用两个不同的平滑因子来克服具有强非线性的收敛问题。首先,通过采用正弦激励的多级离合器阻尼器研究了多自由度扭转系统的动力学行为。其次,针对扭转振动的动态特性检查了系统参数的影响。通过计算主干曲线来研究共振频率的范围以及系统的相关参数,从而显着减少了计算时间。为了验证谐波平衡法的仿真效果,将仿真结果与数值仿真结果进行了比较。在计算非线性频率响应以及模拟没有瞬态响应效应的稳态响应时,谐波平衡方法被证明比数值模拟更有效。

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