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首页> 外文期刊>International Journal of Fluid Power >NUMERICAL AND EXPERIMENTAL INVESTIGATION ON O-RING-SEALS IN DYNAMIC APPLICATIONS
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NUMERICAL AND EXPERIMENTAL INVESTIGATION ON O-RING-SEALS IN DYNAMIC APPLICATIONS

机译:动态应用中O形密封圈的数值和实验研究

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摘要

This paper presents a physically-based simulation approach to predict the friction force at oil lubricated contacts for rubber o-ring seals in dynamic applications. In the boundary lubrication regime the friction coefficient is calculated using a recently developed contact mechanics theory. The stress and strain fields in the rubber are calculated using the finite element analysis (FEA). In the FEA the temperature-dependent nonlinear rubber behaviour is considered. Loads due to the assembly process, thermal expansion, system pressure and tangential friction forces are included in the analysis. In the mixed and hydrodynamic lubrication regimes, the asperity-asperity and fluid-asperity interactions are determined from the Persson's dry-contact mechanics theory, the Reynolds-equation (gap flow) and the deformation model of the seal. To test the theory a test rig has been developed. Simulation results, carried out for an unpressurized o-ring seal system, are compared to the experimental data and, especially for small velocities where mixed lubrication prevails the results are in good agreement.
机译:本文提出了一种基于物理的仿真方法来预测动态应用中橡胶O形圈密封件的油润滑触点处的摩擦力。在边界润滑条件下,摩擦系数是使用最近开发的接触力学理论计算的。橡胶中的应力和应变场是使用有限元分析(FEA)计算的。在有限元分析中,考虑了温度相关的非线性橡胶性能。分析包括由于装配过程,热膨胀,系统压力和切向摩擦力引起的载荷。在混合润滑和流体动力润滑方式中,粗糙-粗糙和流体-粗糙相互作用是根据Persson的干接触力学理论,雷诺方程(间隙流)和密封件的变形模型确定的。为了验证该理论,已经开发了一种测试装置。将无压力O型圈密封系统的仿真结果与实验数据进行了比较,特别是对于混合润滑占优势的小速度,其结果非常吻合。

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