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挤压油膜阻尼器油膜流体动力学特性研究

解忠良 孙逸豪 韩睿垚 高文君 张建波

解忠良, 孙逸豪, 韩睿垚, 等. 挤压油膜阻尼器油膜流体动力学特性研究[J]. 航空动力学报, 2026, 41(1):20240077 doi: 10.13224/j.cnki.jasp.20240077
引用本文: 解忠良, 孙逸豪, 韩睿垚, 等. 挤压油膜阻尼器油膜流体动力学特性研究[J]. 航空动力学报, 2026, 41(1):20240077 doi: 10.13224/j.cnki.jasp.20240077
XIE Zhongliang, SUN Yihao, HAN Ruiyao, et al. Study on hydrodynamic characteristics of oil film of squeeze-film damper[J]. Journal of Aerospace Power, 2026, 41(1):20240077 doi: 10.13224/j.cnki.jasp.20240077
Citation: XIE Zhongliang, SUN Yihao, HAN Ruiyao, et al. Study on hydrodynamic characteristics of oil film of squeeze-film damper[J]. Journal of Aerospace Power, 2026, 41(1):20240077 doi: 10.13224/j.cnki.jasp.20240077

挤压油膜阻尼器油膜流体动力学特性研究

doi: 10.13224/j.cnki.jasp.20240077
基金项目: 太行实验室项目(Z2024-2-0101); 陕西省重点研发计划项目(2025GH-YBXM-005); 深圳市科技计划(JCYJ20240813150731040); 广东省基础与应用基础研究基金(2024A1515010406); 两机基础科学中心项目(2022-B-Ⅲ-003)
详细信息
    作者简介:

    解忠良(1988-),男,教授,博士,研究方向为轴承动力学、挤压油膜阻尼器。E-mail:zlxie@nwpu.edu.cn

  • 中图分类号: V233.4

Study on hydrodynamic characteristics of oil film of squeeze-film damper

  • 摘要:

    针对单供油孔工况下挤压油膜阻尼器(squeeze film damper,SFD)阻尼性能演变规律不清晰的问题开展研究。针对挤压油膜阻尼器不同的间隙比、长径比、供油槽截面及位置,建立了流体域仿真模型,分析了结构和工况等因素对阻尼稳定性的影响规律,揭示了其对阻尼性能的影响机理。结果表明:增大偏心距、间隙比或减小长径比等有助于提高阻尼稳定性;增大进动频率、长径比或减小偏心距等有助于提高油膜阻尼值。在非对称供油工况下,正梯形截面供油槽可获得高阻尼,正方形截面供油槽阻尼更稳定;供油槽居中布置阻尼大,供油槽偏心布置则稳定性更优。该研究为单供油孔工况下挤压油膜阻尼器的设计提供了关键的理论支撑与优化方向,具有重要的工程指导价值。

     

  • 图 1  挤压油膜阻尼器计算简图

    Figure 1.  Calculation diagram of SFD

    图 2  挤压油膜阻尼器结构简图

    Figure 2.  Schematic diagram of the structure of the SFD

    图 3  挤压油膜阻尼器几何参数

    Figure 3.  Geometric parameters of SFD

    图 4  挤压油膜阻尼器边界分布

    Figure 4.  Boundary distribution of SFD

    图 5  网格划分图

    Figure 5.  Grid division diagram

    图 6  网格无关性验证

    Figure 6.  Grid independence validation

    图 7  时间步长无关性验证

    Figure 7.  Time-step independent validation

    图 8  计算流程图

    Figure 8.  Calculation flow chart

    图 9  计算方法验证

    Figure 9.  Computational method validation

    图 10  供油槽截面形状(单位:mm)

    Figure 10.  Cross-sectional shape of the oil supply tank(unit:mm)

    图 11  供油槽截面形状对油膜周向阻尼的影响曲线图

    Figure 11.  Influence of the cross-sectional shape of the oil supply tank on the circumferential damping of the oil film

    图 12  不同供油槽截面形状下的等效阻尼

    Figure 12.  Equivalent damping under different oil supply groove cross-sectional shapes

    图 13  供油槽不同位置下流体动态压力分布简图

    Figure 13.  Schematic diagram of fluid dynamic pressure distribution at different positions in the oil supply tank

    图 14  供油槽偏心距对油膜周向阻尼的影响曲线图

    Figure 14.  Influence of eccentricity of oil supply tank on the circumferential damping of oil film

    图 15  不同供油槽偏心距下的等效阻尼

    Figure 15.  Equivalent damping under different oil supply groove eccentricities

    图 16  进动频率对油膜周向阻尼的影响曲线图

    Figure 16.  Diagram of the influence of whirl frequency on the circumferential damping of the oil film

    图 17  不同进动频率下的等效阻尼

    Figure 17.  Equivalent damping at different whirl frequencies

    图 18  间隙比对油膜周向阻尼的影响曲线图

    Figure 18.  Diagram of the influence of clearance ratio on the circumferential damping of the oil film

    图 19  不同间隙比下的油膜力所作负功

    Figure 19.  Negative work done by the oil film force at different clearance ratios

    图 20  长径比对油膜周向阻尼的影响曲线图

    Figure 20.  Diagram of the influence of the aspect ratio on the circumferential damping of the oil film

    图 21  不同长径比下的等效阻尼

    Figure 21.  Equivalent damping at different aspect ratios

    表  1  挤压油膜阻尼器参数表

    Table  1.   Structural parameters of squeeze film damper

    参数分类 参数 数值
    结构参数 内环半径R/mm 50
    半径间隙C/mm 0.15
    油膜长度L/mm 10
    油膜偏心距e/mm 0.06
    供油孔直径d/mm 1
    滑油参数 密度/(kg/m3 860
    黏度/(Pa·s) 0.04
    环境参数 供油压力/kPa 500
    下载: 导出CSV
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  • 收稿日期:  2024-02-04
  • 网络出版日期:  2025-10-13

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