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Electromagnetic Characteristics Analysis and Structure Optimization of High-Speed Fuel Solenoid Valves

Yang Liu, Tianxiong Gao, Xinming Du, Fugang Zhai, Chang Lu, Xiangdong Kong

2022Machines21 citationsDOIOpen Access PDF

Abstract

High-speed fuel solenoid valves (HFSVs) are the key control elements of aero-engine vane regulators. A strong electromagnetic force generated from the HFSVs is essential to achieve precise control over timing and quantification for fuel supply. In this paper, the Taguchi method is adopted to improve the HFSV’s static electromagnetic characteristics. First, an electromagnetic model of the HFSV was established and experiments were conducted to modify and validate the model. Effects of key structural factors on the static electromagnetic characteristics of the HFSV are then investigated via the finite element method (FEM). Based on the optimization, an HFSV prototype is finally manufactured and tested. The experiment results are in good agreement with those of the simulations. It provides a significant guideline for the manufacturing process of such HFSVs.

Topics & Concepts

SolenoidFinite element methodTaguchi methodsSolenoid valveMechanical engineeringProcess (computing)EngineeringAutomotive engineeringKey (lock)Computer scienceStructural engineeringMachine learningComputer securityOperating systemEngineering Applied ResearchElectromagnetic Launch and Propulsion TechnologyHydraulic and Pneumatic Systems
Electromagnetic Characteristics Analysis and Structure Optimization of High-Speed Fuel Solenoid Valves | Litcius