轴向单极涡流制动对转子增热特性的影响

Q2 Engineering Automotive Experiences Pub Date : 2023-01-21 DOI:10.31603/ae.7431
M. Putra, D. D. D. P. Tjahjana, M. Nizam, Z. Arifin, B. W. Lenggana, I. Inayati
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引用次数: 0

摘要

电动汽车等汽车行业的运输技术发展日益先进。一项非常需要的技术是开发电动汽车制动的支持技术。在诸如两轮车的轻型电动车辆上使用再生制动由于其低重量而不是有效的。涡流制动器(ECB)的使用可以解决制动支持需求。这是因为ECB是一种制动系统,具有重量轻的设计优势,但仍然依赖于无摩擦原理。然而,除了其优点外,涡流制动器仍处于研究的早期阶段,其效率仍有待开发。在欧洲央行的讨论中,发热是一个有趣的话题。具体而言,尚未讨论单极ECB轴向性能对发热事件的特征的研究。因此,本文旨在通过模拟过程和简单的数学计算来讨论这些事件。设计优化是为了获得最佳价值。因此,使用带有使用槽的导体盘的涡流制动器,可以提高ECB在扭矩侧和冷却侧的性能。因此,本文对欧洲央行在通用和汽车领域的研究的可持续性做出了很好的贡献。
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Axial Unipolar Eddy Current Brake Performance Characteristics Against Heat Increase in Rotor
The development of transportation technology in the automotive sector such as electric vehicles is increasingly advanced. One technology that is needed quite a lot is the development of supporting technology for electric vehicle braking. The use of regenerative braking on light electric vehicles such as 2-wheeled vehicles is not efficient because of its low weight. The use of Eddy Current Brake (ECB) can be a solution for braking support needs. This is because the ECB is a braking system that has the advantage of a lightweight design but still relies on the frictionless principle. However, in addition to its advantages, the eddy current brake is still in the early stages of its research with efficiency that still needs to be developed. In the discussion of the ECB, heat generation is one of the interesting topics to be discussed. Specifically, the study of the characteristics of the unipolar ECB axial performance on heat generation events has not yet been discussed. So this article aims to discuss these events with a simulation process and simple mathematical calculations. Design optimization is done to get the best value. As a result, the use of eddy current brakes with conductor disks using slots, can improve the performance of the ECB on the torque side and cooling side. Thus, this article is a good contribution to the sustainability of ECB research in both the general and automotive fields.
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来源期刊
Automotive Experiences
Automotive Experiences Engineering-Automotive Engineering
CiteScore
3.00
自引率
0.00%
发文量
14
审稿时长
12 weeks
期刊最新文献
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