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Lessons Learned in Fabrication of a High-Specific-Torque Concentric Magnetic Gear

机译:高扭矩同心磁力齿轮制造的经验教训

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Magnetic gearing is being investigated at NASA as a replacement to conventional mechanical gearing in aerospace applications. Some potential benefits of magnetic gears over mechanical gearing are torque transmission without mechanical contact, decreased transmission noise, and no required lubrication. However, in order to be a viable alternative for aerospace applications, magnetic gearing must be shown to provide high enough specific torque (torque per unit mass). NASA's second magnetic gearing prototype (PT-2) was able to achieve promising specific torque on par with low torque mechanical gearboxes. This work will briefly review the electromagnetic and structural design of PT-2, provide detailed information on fabrication and assembly, examine build errors, walk through rebuild efforts to improve operation, and conclude with remarks on build difficulties and opportunities for improvement in future prototypes.
机译:NASA正在研究电磁齿轮装置,以替代航空航天应用中的传统机械齿轮装置。电磁齿轮相对于机械齿轮的一些潜在好处是无机械接触的扭矩传递,降低的传递噪音以及无需润滑。但是,为了成为航空航天应用的可行替代方案,必须显示电磁齿轮装置可提供足够高的比转矩(每单位质量的转矩)。 NASA的第二个电磁齿轮原型(PT-2)能够获得与低扭矩机械齿轮箱相同的有希望的特定扭矩。这项工作将简要回顾PT-2的电磁和结构设计,提供有关制造和组装的详细信息,检查建造错误,逐步进行改造以改善操作,并最后谈谈建造困难和未来原型改进的机会。

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