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Determination of an Optimal Oil Jet Nozzle Layout for Helical Gear Lubrication: Mathematical Modeling, Numerical Simulation, and Experimental Validation

机译:用于螺旋齿轮润滑的最佳油喷嘴布局的确定:数学建模,数值模拟和实验验证

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摘要

To provide a basic guidance for the selection of nozzle layout, a mathematical model of the impingement depth for helical gears under oil jet lubrication is established. Furthermore, computational fluid dynamics (CFD) methods are adopted to validate the effectiveness and accuracy of the derived impingement model. Firstly, the distribution characteristics of the oil volume fraction and oil-gas pressure in meshing area were obtained in flow field simulation. Meanwhile, the influence of spray angle, jet velocity, and gear ratio on lubrication effect was obtained. Then, the transient temperature field of the tooth surface was simulated by the method of thermal-fluid coupling analysis, and the lowest temperature distribution and the corresponding oil jet velocity were determined. Finally, experiments on the temperature characteristics measured by an infrared thermal imager of helical gears with different nozzle parameters were carried out in a gear test rig. The simulation results of transient temperature field are in good agreement with those obtained by experiments, and it indicates that the thermal-fluid coupling analysis method is correct and feasible to predict the temperature field of the helical gear pair under oil injection jet lubrication.
机译:为了提供用于选择喷嘴布局的基本指导,建立了射线喷射润滑下螺旋齿轮冲击深度的数学模型。此外,采用计算流体动力学(CFD)方法来验证衍生的冲击模型的有效性和准确性。首先,在流场模拟中获得了啮合区域的油体分数和油气压力的分布特性。同时,获得了喷射角,喷射速度和齿轮比对润滑效果的影响。然后,通过热流体耦合分析的方法模拟牙齿表面的瞬态温度场,并且确定了最低温度分布和相应的油射流速度。最后,在齿轮试验台上进行了通过具有不同喷嘴参数的螺旋齿轮的红外热成像仪测量的温度特性的实验。瞬态温度场的仿真结果与通过实验获得的那些吻合良好,表明热流体耦合分析方法是正确的,可行的,以预测喷射喷射喷射润滑下的螺旋齿轮对的温度场。

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