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Multistress characterization of fault mechanisms in aerospace electric actuators

机译:航空航天电动执行器故障机理的多应力表征

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摘要

The concept behind the More Electric Aircraft (MEA) is the progressive electrification of on-board actuators and services. It is a way to reduce or eliminate the dependence on hydraulic, mechanical and the bleed air/pneumatic systems and pursue efficiency, reliability and maintainability. This paper presents a specialised test rig whose main objective is to assess insulation lifespan modelling under various stress conditions, especially investigating the interaction between ageing factors. The test set-up is able to reproduce a multitude of environmental and operational conditions at which electric drives and motors, used in aerospace applications, are subjected. It is thus possible to tailor the test cycle in order to mimic the working cycle of an electrical motor during real operation in aircraft application. The developed test-rig is aimed at projecting the technology readiness to higher levels of maturity, in the context of electrical motors and drives for aerospace applications. Its other objective is to validate and support the development of a comprehensive insulation degradation model.
机译:更多电动飞机(MEA)背后的概念是机载执行器和服务的逐步电气化。这是一种减少或消除对液压,机械和引气/气动系统的依赖,并追求效率,可靠性和可维护性的方法。本文介绍了一种专门的试验设备,其主要目的是评估各种应力条件下的绝缘寿命模型,尤其是研究老化因素之间的相互作用。该测试装置能够再现航空航天应用中使用的电驱动器和电动机所处的多种环境和操作条件。因此,可以调整测试周期,以模仿飞机实际应用中电动机的工作周期。研发的试验台旨在将技术就绪程度提高到航空航天应用的电动机和驱动器的更高水平。它的另一个目标是验证和支持全面绝缘退化模型的开发。

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