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Reliability and life study of hydraulic solenoid valve--Part 1: A multi-physics finite element model

机译:液压电磁阀的可靠性和寿命研究第1部分:多物理场有限元模型

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摘要

A comprehensive multi-physics theoretical model of a solenoid valve used in an automobile transmission is constructed using the finite element method. The multi-physics model includes the coupled effects of electromagnetic, thermodynamics and solid mechanics. The resulting finite element model of the solenoid valve provides useful information on the temperature distribution, mechanical and thermal deformations, and stresses. The model results predict that the solenoid valve is susceptible to a coupled electrical-thermo-mechanical failure mechanism. The coil can generate heat which can cause compressive stress and high temperatures that in turn could fail the insulation between the coil wires. The model facilitates the characterization of the solenoid valve performance, life and reliability and can be used as a predictive tool in future solenoid design.
机译:利用有限元方法建立了汽车变速器电磁阀的综合多物理场理论模型。多物理场模型包括电磁,热力学和固体力学的耦合效应。所得的电磁阀有限元模型提供了有关温度分布,机械和热变形以及应力的有用信息。模型结果表明,电磁阀易受电热机械故障机制的影响。线圈会产生热量,从而导致压应力和高温,进而导致线圈导线之间的绝缘失效。该模型有助于表征电磁阀的性能,寿命和可靠性,并可在将来的电磁阀设计中用作预测工具。

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