“Evaluation of an electromagnetically actuated drum brake concept”

Lennart Guckes, Jens Hoffmann, Malte Schrimpf, Hermann Winner
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Abstract

In publications and conferences on the subject of wheel brakes, different concepts of electromechanically actuated wheel brakes can be found, as well as investigations into their suitability for the use in passenger cars. The vast majority of these brakes are disc or drum brakes, which are actuated by an electric motor. In the present publication, a brake concept is considered, that combines an electromagnetically actuated full-pad disc brake with a 10″ duo-duplex drum brake. The brake concept is researched in a project regarding brakes for autonomous shuttles and thus dimensioned using vehicle data of an example shuttle. The electromagnet was designed using finite element methods and the overall brake prototypically realized. The validation of the system design is carried out in component and system tests. The results show the suitability of the concept for the selected vehicle in terms of dynamics, installation space and energy requirements. However, there is a strong dependence of the braking torque output on the frictional sliding speed. Using hypothesis-based testing, electromagnetic effects like eddy currents are ruled out as a possible cause and the friction coefficient within the full-pad disc brake is identified as the main cause for the loss in torque. Consequently, the associated development conflict is identified and lies in the double function of the flux-carrying material in the electromagnet, which also acts as a friction partner for the braking disc.

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“电磁驱动鼓式制动器概念的评估”
在有关车轮制动器主题的出版物和会议中,可以找到机电驱动车轮制动器的不同概念,以及对其适用于乘用车的调查。这些制动器绝大多数是盘式或鼓式制动器,由电动机驱动。在本出版物中,考虑了一种制动器概念,将电磁驱动的全片盘式制动器与10〃双联鼓式制动器相结合。制动器概念是在一个关于自主航天飞机制动器的项目中研究的,因此使用示例航天飞机的车辆数据来确定尺寸。电磁铁采用有限元方法进行设计,并初步实现了整个制动器。系统设计的验证是在组件和系统测试中进行的。结果表明,该概念在动力学、安装空间和能量要求方面适用于所选车辆。然而,制动扭矩输出与摩擦滑动速度有很大的相关性。通过基于假设的测试,涡流等电磁效应被排除为可能的原因,全片盘式制动器内的摩擦系数被确定为扭矩损失的主要原因。因此,相关的发展冲突被识别出来,并在于电磁铁中的磁通承载材料的双重功能,该材料也充当制动盘的摩擦伙伴。
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