从各种废料流中回收和再利用钕铁硼永磁体,实现更可持续和更具弹性的电动交通

IF 3.4 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Mario Schönfeldt, Konrad Opelt, Mahmudul Hasan, Michael Gröninger, Dennis Jahnke, Jürgen Gassmann, Oliver Gutfleisch
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引用次数: 0

摘要

在电动汽车应用中使用回收磁铁的可行性,如Pedelecs、电动滑板车和悬浮滑板,正在研究它们的性能和可回收性。为此,各种寿命终止(EoL)磁铁废物流作为生产回收磁铁的原料,然后应满足上述应用中使用的必要规格。在生产了大量这样的回收磁铁后,这些磁铁被安装在示威者身上。在各种测试台上的测量表明,与原始磁铁相比,使用回收或重复使用磁铁的演示体在整个转速范围内表现出相似或更高的电动势或感应电压。e-Scooter电机通过使用回收磁铁获得几乎相同的感应电压(-0.7%),而悬浮滑板电机甚至显示电压增加了6.7%。在Pedelec电机的情况下,与使用初级磁铁相比,eol磁铁的重复使用导致电压增加0.9%。同时,通过使用回收或重复使用的磁铁,可以减少二氧化碳足迹,从而提高这些设备的可持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Functional Recycling and Reuse of Nd–Fe–B Permanent Magnets from Various Waste Streams for a more Sustainable and Resilient Electromobility

Functional Recycling and Reuse of Nd–Fe–B Permanent Magnets from Various Waste Streams for a more Sustainable and Resilient Electromobility

The feasibility of using recycled magnets in e-mobility applications such as Pedelecs, e-Scooters, and Hoverboards is being investigated with regard to their performance and recyclability. For this, a variety of end-of-life (EoL) magnet waste streams serve as feedstock for the production of recycled magnets which should then meet the necessary specifications for use in the above applications. After the production of a large number of such recycled magnets, these are installed in the demonstrators. Measurements on various test benches show that the demonstrators with recycled or reused magnets exhibit across the entire rotation speed range a similar or higher electromotive force or induced voltage as compared to their counterparts with primary magnets. While the e-Scooter motor achieves almost the same induced voltage (–0.7%) by using recycled magnets, the Hoverboard motor shows even an increased voltage of 6.7%. In the case of the Pedelec motor, the reuse of EoL-magnets leads to a voltage increase of 0.9% compared to the use of primary magnets. At the same time, an increased sustainability of these devices through a reduced CO2 footprint can be achieved by the use of recycled or reused magnets.

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来源期刊
Advanced Engineering Materials
Advanced Engineering Materials 工程技术-材料科学:综合
CiteScore
5.70
自引率
5.60%
发文量
544
审稿时长
1.7 months
期刊介绍: Advanced Engineering Materials is the membership journal of three leading European Materials Societies - German Materials Society/DGM, - French Materials Society/SF2M, - Swiss Materials Federation/SVMT.
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