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Dynamic investigation of a locomotive with effect of gear transmissions under tractive conditions

机译:动态调查牵引条件下齿轮传动效果的机车

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摘要

Locomotive is used to drag trailers to move or supply the braking forces to slow the running speed of a train. The electromagnetic torque of the motor is always transmitted by the gear transmission system to the wheelset for generation of the tractive or braking forces at the wheel-rail contact interface. Consequently, gear transmission system is significant for power delivery of a locomotive. This paper develops a comprehensive locomotive-track vertical-longitudinal coupled dynamics model with dynamic effect of gear transmissions. This dynamics model enables considering the coupling interactions between the gear transmission motion, the vertical and the longitudinal motions of the vehicle, and the vertical vibration of the track structure. In this study, some complicated dynamic excitations, such as the gear time-varying mesh stiffness, nonlinear gear tooth backlash, the nonlinear wheel-rail normal contact force and creep force, and the rail vertical geometrical irregularity, are considered. Then, the dynamic responses of the locomotive under the tractive conditions are demonstrated by numerical simulations based on the established dynamics model and by experimental test. The developed dynamics model is validated by the good agreement between the experimental and the theoretical results. The calculated results reveal that the gear transmission system has strong dynamic interactions with the wheel-rail contact interface including both the vertical and the longitudinal motions, and it has negligible effect on the vibrations of the bogie frame and carbody. (C) 2017 Elsevier Ltd. All rights reserved.
机译:机车用于拖动拖车以移动或提供制动力以减缓火车的运行速度。电动机的电磁扭矩始终由齿轮传动系统传递到轮轨接触界面处的牵引力或制动力的轮圈。因此,齿轮传动系统对于机车的动力传递是重要的。本文开发了一种具有动态齿轮传动效果的全面的机车轨道垂直纵向耦合动力学模型。该动力学模型能够考虑齿轮传动运动,垂直和纵向运动之间的耦合相互作用,以及轨道结构的垂直振动。在这项研究中,考虑了一些复杂的动态激发,例如齿轮时变网刚度,非线性齿轮齿塔柱,非线性轮轨正常接触力和蠕变力,以及轨道垂直几何不规则性。然后,通过基于建立的动力学模型和实验测试,通过数值模拟和实验测试证明了机车根据牵引条件下的动力响应。通过实验与理论结果之间的良好一致性验证了发达的动态模型。计算结果表明,齿轮传动系统具有与垂直和纵向运动的车轮轨道接触界面具有强大的动态相互作用,并且对转向架框架和车身的振动具有可忽略的影响。 (c)2017 Elsevier Ltd.保留所有权利。

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