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A locomotive's dynamic response to in-service parameter variations of its hydraulic yaw damper

机译:机车对液压偏航阻尼器在役参数变化的动态响应

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An improved hydraulic yaw damper model with series in-service clearance and comprehensive stiffness was proposed by Wang et al. (Nonlinear Dyn 65(1–2):13–34 2011). In order to study how in-service parameter variations to the hydraulic yawdamper affect the dynamics of a Chinese SS9 locomotive, this study continued that research by establishing a multibody system (MBS) model of the SS9 locomotive–rail coupling system, and then validating theMBSmodel using field test data from the SS9. Extensive simulations were performed, and the results demonstrated that both the effective stiffness and the small clearance accumulated between two ends of the damper due to wear and lack of maintenance had remarkable impacts on the locomotive's critical speed and on its normal operation. The results also influenced the locomotive's ride comfort, but the effect of the small clearance was more remarkable than that of the effective stiffness in this regard, and these parameters had little to no influence on the locomotive's curve-negotiation performance. The small clearance and effective stiffness are usually omitted or simplified in engineering, and so it was important to apply the proposed in-service nonlinear damper model with series clearance and stiffness to a vehicle dynamics study and improve the accuracy of vehicle design. The study was also useful for setting pertinent vehicle maintenance standards in engineering to control the influence of such in-service parameter variations.
机译:Wang等人提出了一种改进的液压偏航阻尼器模型,该模型具有一系列在役间隙和综合刚度。 (非线性Dyn 65(1-2):13-34 2011年)。为了研究液压偏航调节器的在役参数变化如何影响中国SS9机车的动力学,本研究通过建立SS9机车-铁路耦合系统的多体系统(MBS)模型,然后验证MBS模型来继续进行该研究。使用来自SS9的现场测试数据。进行了广泛的仿真,结果表明,由于磨损和缺乏维护而导致的有效刚度和阻尼器两端之间积累的小间隙都对机车的临界速度及其正常运行产生了显着影响。结果也影响了机车的乘坐舒适性,但是在这方面,小间隙的影响比有效刚度的影响更为显着,并且这些参数对机车的曲线协商性能几乎没有影响。小间隙和有效刚度在工程中通常被省略或简化,因此将拟议的在役非线性阻尼器模型具有系列间隙和刚度应用于车辆动力学研究并提高车辆设计的准确性非常重要。这项研究对于在工程中设定相关的车辆维护标准以控制此类服务参数变化的影响也很有用。

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