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磁流体润滑螺旋槽机械密封中的热流固耦合分析

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为了研究磁流体润滑螺旋槽机械密封中的热流固耦合效应,利用ANSYS Workbench软件计算了磁流体膜的压力分布、温度分布和动环的变形量,分析了电流强度、转速和磁性颗粒体积分数对磁流体膜压力、温度和动环变形的影响.结果表明:随着电流强度、转速和磁性颗粒体积分数的升高,磁流体膜的动压、温度和密封环的热变形都增大;内径处的磁流体温度最高但压力最低,磁流体基液易汽化;动环的压力变形远小于热变形;磁流体膜的压力、磁流体膜温度的数值解大于试验值和解析值,其主要原因在于数值解考虑了密封堰和离心力对磁流体膜的影响.
Coupling Analysis of Heat-fluid-solid in a Spiral Groove Mechanical Seal Lubricated by Magnetic Fluid
To study coupling effect of heat-fluid-solid in a spiral groove mechanical seal lubricated by magnetic fluid,the pressure distribution,temperature distribution of magnetic fluid film and deformation of rotating ring were calculated by ANSYS Workbench,and the effects of current intensity,rotating speed,and magnetic particle volume fraction on pressure,temperature of magnetic fluid film and deformation of rotating ring were analyzed.Results indicate that the pressure,temper-ature of magnetic fluid film and deformation of rotating ring increase with the increase of current intensity,rotating speed,and magnetic particle volume fraction.Near the inner radius,the temperature of magnetic fluid at the inner diameter is high-er but the hydrodynamic pressure is lower,and the base fluid of magnetic fluid is prone to vaporization.The pressure de-formation is far less than thermal deformation of rotating ring.The pressure and temperature obtained by numerical solution are larger than those obtained by analytical solution and experimental values,mainly because the effects of seal weir and centrifugal force on magnetic fluid film are considered in the numerical solution.

magnetic fluidmagnetic particlespiral groovemechanical sealheat-fluid-solid coupling

张鹏高、魏龙、冯秀、冯飞

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南京科技职业学院,江苏省流体密封与测控工程技术研究开发中心,江苏南京 210048

磁流体 磁性颗粒 螺旋槽 机械密封 热流固耦合

江苏省高等学校基础科学(自然科学)研究重大项目江苏省"333高层次人才培养工程"项目(第五期)江苏省高等学校"青蓝工程"项目南京科技职业学院科研北斗计划(2.0版)

23KJA460010BRA2020321NJPI-2022-07

2024

润滑与密封
中国机械工程学会 广州机械科学研究院有限公司

润滑与密封

CSTPCD北大核心
影响因子:0.478
ISSN:0254-0150
年,卷(期):2024.49(3)
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