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首页> 外文期刊>IEEE Transactions on Magnetics >Direct Reuse of Rare Earth Permanent Magnets—Coating Integrity
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Direct Reuse of Rare Earth Permanent Magnets—Coating Integrity

机译:直接重复使用稀土永磁体-涂层完整性

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摘要

Rare earth permanent magnets can be reused directly as an alternative to traditional recycling methods, in which scrapped magnets are reprocessed into new magnets by undergoing many of the original energy-intensive and expensive production processes. Direct reuse entails using segmented magnet assemblies built by several small standard-sized magnets that can be reused directly in a number of different applications. A central part of the direct reuse strategy is to separate and demagnetize magnets by heating them to the Curie temperature. We investigated the validity of direct reuse as a rare earth magnet recycling strategy by evaluating the extent to which the heat-driven demagnetization cycles affected magnetic properties, as well as the integrity of the protective coating of Nd-Fe-B magnets. The experimental investigation consisted of four different tests, and was applied to 300 magnets that had either been heated once, five times, or none at all. The tests included J -H measurements, coating pull-off test, corrosion salt spray test, and optical microscopy of the interface between coating and magnet. Magnets coated with Zn, Epoxy, Ni-Cu-Ni, and Ni-Cu+Epoxy were investigated, of which Ni-Cu+Epoxy showed no degradation after heat treatment. Direct reuse as a recycling strategy could therefore be a valuable alternative to traditional recycling.
机译:稀土永磁体可以直接用作传统回收方法的替代方法,在传统回收方法中,通过经历许多原始的耗能且昂贵的生产过程,将废弃的磁体重新加工成新的磁体。直接重复使用需要使用由几个标准尺寸的小型磁体构建的分段磁体组件,这些磁体组件可以在许多不同的应用中直接重复使用。直接重用策略的核心部分是通过将磁体加热到居里温度来分离和消磁。我们通过评估热驱动退磁循环影响磁性能的程度以及Nd-Fe-B磁体保护涂层的完整性,研究了直接再利用作为稀土磁体回收策略的有效性。实验研究包括四个不同的测试,并应用于300个已加热一次,加热五次或完全不加热的磁体。测试包括J -H测量,涂层脱落测试,腐蚀盐雾测试以及涂层和磁体之间界面的光学显微镜。研究了涂覆有Zn,环氧树脂,Ni-Cu-Ni和Ni-Cu +环氧树脂的磁体,其中Ni-Cu +环氧树脂在热处理后没有降解。因此,直接将其作为一种回收策略可以替代传统的回收方法。

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