舵机和舵机的动态特性定性分析

Wei Huang, M. Ahmadian
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引用次数: 1

摘要

本研究的主要目的是对通常用于机车动力配置的三轴卡车(通常称为“co-cos”)和通常用于轨道车辆的无动力两轴卡车(称为“bo-bos”)的转向特性之间的差异进行定性分析。本研究采用等效刚度方法扩展了作者关于可操纵co-cos的弯曲和狩猎效益的结果。在这里,我们提供了一个详细的分析处理之间存在的差异,舵机和舵机的动态特性。虽然存在一些关于可转向卡车,特别是自动转向卡车的能力的轶事陈述,但没有研究对可转向co-cos和bo-bos之间的差异进行彻底的定性或定量分析。本研究试图提供一个定性的分析,转向机构的横向稳定性,弯道性能,以及可转向的bobos和co- cocos牵引能力的特殊影响。在提供自动转向卡车的背景知识后,我们描述了铁路广泛使用的bo-bos和co-cos。接下来,我们讨论了等效刚度的概念,为两种类型的卡车。最后,我们讨论了bo-bos和co-cos之间的动态差异,以及每辆卡车必须考虑的设计特征,以优化其弯曲,狩猎和粘附特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A qualitative analysis of the dynamic characteristics of steerable bo-bos and co-cos
The primary purpose of this study is to provide a qualitative analysis of the differences between the steering characteristics of three axle trucks (commonly referred to as "co-cos"), which are often used in a powered configuration for locomotives, and un-powered two axle trucks (called "bo-bos"), commonly used for railcars. This study extends the results presented by the authors on the curving and hunting benefits of steerable co-cos, using an equivalent stiffness approach. Here, we provide a detailed analytical treatment of the differences that exists between the dynamic characteristics of steerable bo-bos and co-cos. Although there exists a number of anecdotal statements on the ability of steerable trucks in general, and self-steering trucks in particular, there exists no study that provides a thorough qualitative or quantitative analysis of the differences between the steerable co-cos and bo-bos. This study attempts to provide a qualitative analysis of the particular effects of the steering mechanism on lateral stability, curving performance, and traction ability of steerable bo-bos and co-cos. Upon providing a background on self-steering trucks, we describe the bo-bos and co-cos that are widely used by the railroads. Next, we discuss the concept of equivalent stiffness for the two types of trucks. Finally, we discuss the dynamic differences between bo-bos and co-cos, and the design features that must be considered in each truck to optimize their curving, hunting, and adhesion characteristics.
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