走行部

  • 网络running gear
走行部走行部
  1. B0B0B0轴式电力机车走行部的研制

    Development of Running Gear of B_0-B0_ - B_0 Electric Locomotive

  2. SS8型电力机车走行部问题的探讨

    Research on Some Problems Involved in Running Gear of SS_8 Electric locomotive

  3. 东风4D系列内燃机车走行部的新技术有:滚动抱轴轴承箱、25°压力角的牵引齿轮;

    New technologies on the running gear include : rolling seize bearing box , 25 ° press angled traction gears ;

  4. 实践证明,用DSP实现高速多通道数据采集,用在线检测列车车下走行部状态,能够满足信号的分析要求,且具有真实性和有效性。

    As the result shows , the DSP technology could accomplish high-speed , multi-channel data collection and thus ensure the reality and validity of the signal data in detecting the running cars , which are demanded by data analysis .

  5. JL-601机车走行部检测系统

    JL-601 Detection System for Running Gear of Locomotive

  6. 介绍了JZT-1机车走行部状态监测及故障诊断系统的构成和技术特点。

    The construction and technical characteristics are described for the monitor and failure diagnosis system of locomotive running gear for JZT-1 .

  7. 在计算分析的基础上,论述了SS7型B0-B0-B0轴式电力机车走行部参数和结构选择的依据,探讨了在转向架之间要安装横向连接器改善机车动力曲线通过性能的问题。

    On the basis of calculation and analysis , the author discusses . the choice basis of running gear parameters and structure for SS7 B. - B. -B.electric locomotive , explores the improvement of curve negotiation of the locomotive by installing transverse connectors between bogies .

  8. 内燃机车走行部常见故障救援方法

    The rescue method of common failure for diesel locomotive running gear

  9. 基于旅客列车安全监测系统与神经网络的走行部状态监测研究

    Bogie Condition Monitoring Based on Passenger Car LAN and Neural Network

  10. 建立走行部故障诊断模型。

    The last job is to set up running gear diagnosing Model .

  11. 基于小波分析的机车走行部故障诊断方法

    Fault Diagnosis Method for Locomotive Bogies Based on Wavelet Analysis

  12. 独立车轮走行部的结构形式多样。

    Many types of running stocks with independent wheel have been developed .

  13. 轴温报警及走行部监测装置的运用分析

    Operation analysis of axle temperature alarm device and running gear monitoring device

  14. 文中讨论了传统系统对走行部稳定性的影响。

    The influence of transmission system on stability running gear is studied .

  15. 一种非径向调整独立车轮走行部的结构分析

    Structural Analysis of a Running Stock with Non-steering Independent Wheel

  16. 机车走行部轴承的故障诊断分析及处理措施

    Fault diagnosis and treatment of bearings of locomotive running gear

  17. 机车走行部弹簧超声波探伤研究

    Study on Ultrasonic Detection of Locomotive Running Gear Springs

  18. 内燃、电力机车走行部车载监控系统

    Development of the On-board Monitoring System for Diesel and Electric Locomotive Runing Gear

  19. 新型单轨电动游览车走行部的设计

    Design of running gear for a new type single track electric tourist train

  20. 客车行车安全监测系统中走行部节点功能校验系统的实现

    Function Check of Car Running Gear in Passenger Car Travelling Safety Monitoring System

  21. 发展中的轻轨车辆走行部

    The Developing Running Gears of Light Rail Vehicles

  22. 卸煤机走行部的技术改造

    Technological Innovation for Coal - drop Walking Part

  23. 机车走行部动态故障非接触式自动诊断系统的研究

    Study of non contact automatic diagnostic system of dynamic failure for locomotive running gear

  24. 高速机车走行部实时在线监测与诊断方法的研究

    Research on Real-Time Running State Monitoring and Diagnosing Method of High Speed Locomotive Running Part

  25. 列车属于复杂的设备系统,主要由列车走行部、制动系统、车电应用系统三个关键部分组成。

    It contains running department , braking system , car electrical application system three key parts .

  26. 便携式铁路车辆走行部故障在线诊断系统研究与开发

    The Research on the Convenient On-line Fault Diagnosis System of the Railway Motorcycles ' Traveling Part

  27. 轮对是机车走行部的重要部件,是影响列车安全运行的主要因素之一。

    Wheel is the most important component of vehicle bogie and the mostly factor of vehicle running safety .

  28. 机车走行部旋转部件在线实时监控的研究与应用&以冲击频谱分析为核心的诊断技术的研讨和实践

    Research on on-line real-time monitoring for rotating parts of locomotive running gear & application of diagnosis technic based on impact spectrum analysis

  29. 研究表明,焊接构架式转向架将是我国160km/h快捷货车必然采用的走行部技术模式。

    It is indicated that welded frame bogie is the certain running gear technique mode for Chinese 160km / h-rapid speed freight car .

  30. 通过对卸煤机走行部的技术改造,提高了工作效率,节省了维修费用。

    Through technological innovation for coal - drop walking part , the work efficiency is heightened and the expenses of maintenance has been saved .