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Gear Pump Bearings-Reverse Design of Journal Fluid Lubrication

机译:齿轮泵轴承-轴颈流体润滑的反向设计

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The sliding of the journal bearing of the gear adopts the traditional design method, showing the state of full fluid lubrication. However, this is not enough to support the pump as a whole to achieve more efficient operation. We need to use the creation of load capacity coefficients, optimized design to obtain parameters such as shaft diameter, width-to-diameter ratio, and execution clearance as the basis for the optimization model. For example, using the minimum oil film thickness and journal deflection as the objective function, the model is built with the help of reverse design thinking. Through innovative practice, it has been shown that the upper limit values of processing technology and leakage control can be obtained, and the diameter of the pump journal can reach a difference of more than two orders of magnitude compared with the original value. If we neglect the bearing capacity coefficient, the probability of tilting deformation of the bearing becomes smaller, and after the optimization of the curve, the overall design optimization has achieved good results.
机译:齿轮轴颈轴承的滑动采用传统的设计方法,显示出完全流体润滑的状态。但是,这还不足以支撑整个泵以实现更高效的运行。我们需要使用载荷系数的创建,优化设计来获得诸如轴直径,宽径比和执行间隙之类的参数,作为优化模型的基础。例如,以最小的油膜厚度和轴颈挠度为目标函数,借助反向设计思想来构建模型。通过创新实践表明,可以获得加工技术和泄漏控制的上限值,并且泵轴颈的直径与原始值相比可以达到两个数量级以上的差异。如果忽略了轴承的承载力系数,轴承倾斜变形的可能性就会变小,并且在对曲线进行优化之后,总体设计优化已经取得了良好的效果。

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