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Contactless magnetic brake for automotive applications

机译:汽车应用非接触式电磁制动器

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摘要

Road and rail vehicles and aircraft rely mainly or solely on friction brakes. These brakes pose several problems, especially in hybrid vehicles: significant wear, fading, complex and slow actuation, lack of fail-safe features, increased fuel consumption due to power assistance, and requirement for anti-lock controls. To solve these problems, a contactless magnetic brake has been developed. This concept includes a novel flux-shunting structure to control the excitation flux generated by permanent magnets. This brake is wear-free, less-sensitive to temperature than friction brakes, has fast and simple actuation, and has a reduced sensitivity to wheel-lock. The present dissertation includes an introduction to friction braking, a theory of eddy-current braking, analytical and numerical models of the eddy-current brake, its excitation and power generation, record of experimental validation, investigation and simulation of the integration of the brake in conventional and hybrid vehicles.
机译:公路和铁路车辆及飞机主要或完全依靠摩擦制动器。这些制动器带来了多个问题,尤其是在混合动力汽车中:严重磨损,褪色,复杂而缓慢的致动,缺乏故障安全功能,由于动力辅助而增加了油耗以及需要防抱死控制。为了解决这些问题,已经开发了非接触式电磁制动器。这个概念包括一种新颖的磁通分流结构,以控制永磁体产生的励磁磁通。与摩擦制动器相比,该制动器无磨损,对温度的敏感性较低,具有快速简单的致动功能,并且对轮锁的敏感性降低。本文主要包括摩擦制动的概论,涡流制动的理论,涡流制动的解析模型和数值模型,励磁和发电,实验验证记录,制动集成的研究与仿真。常规和混合动力汽车。

著录项

  • 作者

    Gay Sebastien Emmanuel;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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