互载牵引减速电机箱体强度控制作为工业试验的一部分

Genadijs Kobenkins, Marks Marinbahs, Anatolijs Bižāns, Nikita Rilevs, V. Burenin, Oļegs Sļiskis
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引用次数: 2

摘要

本文分析了牵引减速电机箱(以下简称GMB)的研究试验过程和结果。牵引GMB提供用于安装在电动台车上,作为郊区电动列车的异步电力驱动的一部分。铁路传动系统在各种机械和电磁激励源的环境中运行,其中牵引电动机可能的不稳定运行是最关键的指标之一。本文介绍了物理测试设备的结构和功能,以及一个具有完整电路的耦合系统的模型,包括整流器、直流链路、牵引逆变器、电机-齿轮装置和机械连接系统,包括柔性阻尼联轴器和减震器。这种方法可以确定GMB设计的固有谐振频率,以及动态变化载荷下GMB的振动活性水平。得到的振动活度级联特性既对应于长期稳态模式,也对应于启动过程中的瞬态力学扰动、转速变化和GMB向跳动模式的过渡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Carrying Out of Strength Control of Mutual Loaded Traction Geared Motor Boxes as a Part of Industrial Tests
The article provides an analysis of the procedure for conducting and results of research tests of a traction geared motor box (hereinafter GMB). The traction GMB is provided for installation on a motor trolley as part of an asynchronous electric drive of a suburban electric train. Railway transmission systems operate in an environment with various sources of mechanical and electromagnetic excitations, where the possible unstable operation of the traction motor is one of the most critical indicators. This paper describes the structure and functionality of the physical test equipment and a model of a coupled system with a complete electrical circuit, including a rectifier, a DC link, a traction inverter, a motor-gear unit, and a system of mechanical connections, including flexible damper couplings and shock absorbers. This approach makes it possible to determine the intrinsic resonant frequencies of the GMB design, as well as the level of vibration activity of the GMB under dynamically changing loads. The obtained cascade characteristics of vibration activity correspond to both a long-term steady-state mode and transient mechanical disturbances during start-up, a change in rotation speed and the transition of the GMB to the run-out mode.
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