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Numerical and Experimental Investigation of the Sealing Effect of a Specific Labyrinth Seal Structure

机译:特定迷宫密封结构的密封效果的数值和实验研究

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A numerical simulation and experimental study were performed to investigate the sealing effect of the labyrinth seal used in a wheel-side reducer. A three-dimensional computational fluid dynamics model was established based on the labyrinth structure. The effects of the temperature and viscosity of lubricant, rotor speed, pressure ratio, clearance, and cavity size of the sealing structure on the sealing were analyzed, and the leakage amount under the corresponding values of different factors was also analyzed. The results indicated that increase in the lubricating oil temperature, viscosity, pressure ratio, and seal clearance lead to decrease in the sealing effect and increases in the leakage. And the effect of rotational speed on the seal is low. To verify numerical simulation, the results of numerical analysis, a test bench was set up to simulate the work of the reducer, and the sealing effect of the sealing structure was examined. The simulation result was compared with the actual results. Both the numerical simulation and experiment indicate that the labyrinth seal achieves the desired sealing effect.
机译:进行了数值模拟和实验研究,研究了轮侧减速器中使用的迷宫式密封的密封效果。基于迷宫结构建立了三维计算流体动力学模型。分析了润滑剂,转子速度,压力比,间隙和腔体尺寸对密封件的温度和粘度的影响,并分析了不同因子的相应值下的泄漏量。结果表明,润滑油温度,粘度,压力比和密封间隙的增加导致密封效果的降低,泄漏增加。并且旋转速度对密封的影响是低的。为了验证数值模拟,设置了数值分析的结果,建立了测试台以模拟减速器的工作,检查密封结构的密封效果。将仿真结果与实际结果进行了比较。数值模拟和实验既表明迷宫式密封率达到所需的密封效果。

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