Effects of design parameters on cavitation in a solenoid valve for an electric vehicle braking system and design optimization

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초록

Keeping pace with the current rapid development of clean energy, hybrid cars and electric vehicles are receiving extensive attention. In electronic control brake systems, which are essential to these vehicles, a solenoid valve is used to control the hydraulic pressure, which boosts the driver's braking force. However, strong cavitation occurs at the narrow gap between the ball and seat of a solenoid valve due to sudden decreases in pressure, leading to severe damage to the valve. In this study, we numerically investigate cavitation in a solenoid valve to discover geometric parameters that affect cavitation, and we develop an optimal design to minimize the cavitation using an optimization technique. As a result, we propose two design guides for the solenoid valve subject to cavitation: the ratio of the narrowest gap area to the inlet area and the narrow gap length. We also find that preventing a sudden reduction of a flow passage is important to reducing cavitation. Finally, using an evolutionary algorithm for optimization we minimize cavitation. The optimal design results in a maximum vapor volume fraction of 0.051, compared to 0.74 for the reference model.

키워드

CavitationSolenoid valveElectric vehicle braking systemDesign optimizationHYBRID VEHICLEFLOW-THROUGHMODELSIMULATIONMANAGEMENTDYNAMICSINJECTORORIFICESAFETYNOZZLE
제목
Effects of design parameters on cavitation in a solenoid valve for an electric vehicle braking system and design optimization
저자
Ko, SeungbinSong, Simon
DOI
10.1007/s12206-015-1023-z
발행일
2015-11
유형
Article
저널명
Journal of Mechanical Science and Technology
29
11
페이지
4757 ~ 4765