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Design and Analysis of a Double-Layer Magnetic Circuit Structure for High-Force Density Hybrid Fuel Injector

机译:高密度混合燃料喷射器双层磁路结构的设计与分析

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This paper proposes the design and analysis of a double-layer magnetic circuit structure for a high-force density hybrid fuel injector. In general, fuel injector models have disadvantages such as a significant leakage flux and magnetic saturation; therefore, a finite-element method is used to detail the model design and reduce the leakage flux from the electromagnet pole to the lead pipe. This change can help improve the fuel injector performance. In addition, a permanent magnet (PM) is inserted to increase the force density. Moreover, the no-load performance and demagnetization characteristic of the injector are analyzed according to the injector's working environment. The optimized hybrid fuel injector model with a PM shows substantially improved performance compared to a conventional design.
机译:本文提出了一种用于高力密度混合燃料喷射器的双层磁路结构的设计和分析。通常,燃料喷射器模型具有诸如大量漏磁通和磁饱和的缺点。因此,使用有限元方法来详细描述模型设计并减少从电磁极到导管的泄漏通量。这种变化可以帮助提高喷油器的性能。另外,插入了永磁体(PM)以增加力密度。此外,根据喷油器的工作环境分析了喷油器的空载性能和退磁特性。与传统设计相比,带有PM的优化混合燃料喷射器模型显示出显着改善的性能。

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