Pin joints are found in many large articulating structures. They tend to be under high load and articulate slowly; so, the joints typically operate in the boundary or mixed lubrication regimes. This means that the operating torque depends on the respective proportions of liquid and solid contact between the joint mating faces. In this article, a mixed lubrication model of a grease-lubricated landing gear joint is established to determine a theoretical Stribeck curve, frictional torque and lubricant film thickness under different loads. Parameters describing pin joint working conditions, geometry, lubricant properties and pin/bush texture are used. The model can also predict the proportion of the load that is supported by contacting asperities and lubricant film. The changing proportions of these two parts indicate transformations between different lubrication regimes. Experiments on an instrumented pin joint have been carried out to compare with the predicted friction and torque performance. Theoretical calculation results show good consistency with experimental plots at high load. But under low load, the real friction between pin and bush is significantly lower than theoretical predictions.udud
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机译:在许多大型的铰接结构中都发现了销接头。它们往往在高负荷下缓慢运动。因此,关节通常在边界润滑或混合润滑状态下工作。这意味着工作扭矩取决于接头配合面之间液体和固体接触的比例。本文建立了脂润滑起落架接头的混合润滑模型,以确定在不同载荷下的理论斯特里贝克曲线,摩擦转矩和润滑膜厚度。使用描述销接头工作条件,几何形状,润滑剂性能和销钉/衬套质地的参数。该模型还可以预测凹凸不平和润滑膜接触所支撑的负载比例。这两个部分的比例变化表明不同润滑方式之间的转换。已经进行了仪器插销接头的实验,以与预测的摩擦和扭矩性能进行比较。理论计算结果与高载荷下的试验图具有良好的一致性。但是在低负载下,销和衬套之间的实际摩擦力明显低于理论预测。 ud ud
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