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Additively Manufactured Hollow Conductors Integrated with Heat Pipes: Design Tradeoffs and Hardware Demonstration

机译:含有加热管的含量制造的空心导体:设计权衡和硬件演示

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This paper investigates the design of a 250kW permanent-magnet (PM) machine used for aircraft propulsion. The focus is to pursue high specific power (>20kW/kg), high efficiency (>95%), and low-thermal-resistance direct-cooling design for the demanding aerospace applications. The proposed key enabling technology is additively manufactured hollow conductors integrated with heat pipes. Compared to the existing high-specific-power PM machines for aerospace applications, the proposed design features a much lower speed - 5000r/min without any torque amplifier, which helps promote the specific power of the overall system. Based on parametric finite element (FE) analysis, tradeoff studies on a variety of winding configurations as well as geometrical parameters have been carried out, highlighting their impact on specific power, winding AC losses, and efficiency. AlSil0Mg coil samples printed by direct metal laser sintering (DMLS) have been demonstrated to show the feasibility of the concept one step forward.
机译:本文研究了用于飞机推进的250kW的永磁(PM)机器的设计。重点是追求高的比功率(> 20千瓦/千克),高效率(> 95%),和低导热性的航空应用直接冷却设计。所提出的关键技术是相加地制造的热管一体的中空导体。相比于现有的高比功率永磁电机用于航空航天应用,所提出的设计采用了低得多的速度 - 没有任何扭矩放大器5000R /分钟,这有助于提升整个系统的比功率。基于参数有限元(FE)分析,对各种绕组结构以及几何参数已经被进行时,突出其具体的动力冲击,绕组交流损耗和效率的权衡研究。 AlSil0Mg线圈通过直接金属激光烧结(DMLS)印刷的样品已被证明可显示向前的概念一个步骤的可行性。

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