首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-body Dynamics >Torsional vibration of a back-to-back gearbox rig Part 1: frequency domain modal analysis
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Torsional vibration of a back-to-back gearbox rig Part 1: frequency domain modal analysis

机译:背对背变速箱钻机的扭转振动第1部分:频域模态分析

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The torsional vibration of a back-to-back gearbox system has been investigated experimentally and analytically. Gearboxes are typically part of a larger system, or drivetrain, which commonly includes electric motors, shafts, couplings, ball mills, turbines and generators. The dynamics of the system has been shown significantly to influence the gearbox response and requires inclusion in gearbox modelling. Assumptions are commonly made, however, to reduce the degrees of freedom of the model, and system dynamics is subsequently neglected. Receptance methods were applied to model a back-to-back gearbox system and were shown to be an effective modelling technique for geared system analysis. A detailed experimental modal analysis was performed using the swept-sine technique with an a.c. servomotor torsional exciter. Torsional excitation allowed for the dynamic response to be measured up to 1600 Hz. A multi-degree-of-freedom, frequency domain torsional model of the gearbox system was developed using receptances. The model included a combination of lumped-mass elements, and continuous shafts with distributed inertia and hysteretic damping. The modelled torsional natural frequencies were matched to the measured frequencies by the adjustment of system model parameters to achieve a high level of agreement. Matching of system natural frequencies resulted in the accurate prediction of the first nine associated torsional deflected shapes up to 1548 Hz. This paper presents the detailed results of a full torsional, modal analysis of a gearbox system, demonstrating receptance system modelling and an effective method for torsional excitation on rotating machines.
机译:对背对背变速箱系统的扭转振动进行了实验和分析。变速箱通常是大型系统或传动系统的一部分,该系统通常包括电动机,轴,联轴器,球磨机,涡轮机和发电机。已经显示出系统的动力学会显着影响变速箱的响应,因此需要将其纳入变速箱建模中。但是,为了降低模型的自由度通常进行了假设,并且随后忽略了系统动力学。接受方法被用于对背对背变速箱系统进行建模,并被证明是一种有效的齿轮传动系统分析建模技术。使用扫描正弦技术和交流电进行了详细的实验模态分析。伺服电机扭转激励器。扭转激励使得动态响应的测量频率高达1600 Hz。利用接受度建立了变速箱系统的多自由度,频域扭转模型。该模型包括集总质量元素和具有分布惯性和滞后阻尼的连续轴的组合。通过调整系统模型参数,可以将建模的扭转固有频率与测得的频率匹配,以达到较高的一致性。系统固有频率的匹配可准确预测前1个关联的挠曲形状,最高可达1548 Hz。本文介绍了齿轮箱系统的完整扭转模态分析的详细结果,论证了接收系统建模和旋转机械扭转激励的有效方法。

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