汽油超声喷嘴的设计研究
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国家自然科学基金资助项目(51475247)

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Design and Research of Gasoline Ultrasonic Nozzle
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    摘要:

    为了进一步细化汽油雾化粒径,该文基于一维振动理论研究设计了一种汽油超声喷嘴。采用有限元法分析振动模态和谐响应,获得其谐振频率、振动位移与工作应力分布,理论频率30.157 kHz与HP4286A LCR精密阻抗测试仪实测频率30.862 kHz接近。此外,对超声喷嘴的汽油雾化效果进行了理论计算分析与试验研究,理论计算粒径24.38 μm,实测粒径27.62 μm,两者基本一致,比传统汽油喷油嘴的雾化粒径(约50 μm)缩小约2倍。研究结果有效地改善了汽油的雾化质量,提高了燃油利用率。

    Abstract:

    In order to further refine the fuel atomization particle size, a gasoline nozzle was designed based on the onedimensional vibration theory. The vibration modal and harmonic responses were analyzed with the finite element method to obtain the resonant frequency and the frequency of vibration displacement and stress distribution, the theoretic frequency of 30.157 kHz was nearly equal to the measured frequency of 30.862 kHz of the HP4286A LCR precision impedance instrument. Furthermore, theoretical analysis and experimental research for the nozzle atomization effect of gasoline were done, theoretical calculation of particle size of 24.38 μm were basically consistent with the measured particle size of 27.62 μm, the size was reduced about 2 times compared with the size (about 50 μm) of traditional gasoline injector. The results show that the device can effectively improve the atomization quality and fuel efficiency of gasoline, and provide technical reference for the design of the engine fuel injector.

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王伟强,束学道,汤廷孝.汽油超声喷嘴的设计研究[J].压电与声光,2015,37(6):978-982. WANG Weiqiang, SHU Xuedao, TANG Tingxiao. Design and Research of Gasoline Ultrasonic Nozzle[J]. PIEZOELECTRICS AND ACOUSTOOPTICS

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  • 在线发布日期: 2015-12-16
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