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Numerical Investigation of the Effect of Radial Lip Seal Geometry on Sealing Performance

机译:径向唇缘几何效果对密封性能影响的数值研究

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摘要

Sealing elements are often needed in industry and especially in machine design. With the change and development of machine technology from day to day, sealing elements show continuous development and change in parallel with these developments. Many factors influence the performance of the sealing elements such as shaft surface roughness, radial force, lip geometry etc. In addition, the radial lip seals must have a certain pre-load and interference in order to provide a good sealing. This also affects the friction torque. Researchers are developing new seal designs to reduce friction losses in mechanical systems. In the presented study, the effect of the lip seal geometry on sealing performance will be examined numerically. The numerical model created for this purpose will be verified with experimental data firstly. In the numerical model, shaft and seal will be modeled as hyper-elastic in 2D and 3D. NBR (Nitrile Butadiene Rubber) as seal material will be analyzed for the rotating shaft state at constant speed by applying a uniform radial force.
机译:在工业中通常需要密封元件,尤其是机器设计。随着机器技术的变化和开发,密封元件显示出持续的发展和与这些发展平行的变化。许多因素影响了诸如轴表面粗糙度,径向力,唇几何等的密封元件的性能,另外,径向唇缘密封件必须具有一定的预载荷和干扰,以提供良好的密封。这也影响了摩擦扭矩。研究人员正在开发新的密封设计,以减少机械系统中的摩擦损失。在本研究中,唇形密封几何形状对密封性能的影响将在数值上进行。首先将用实验数据验证为此目的创建的数值模型。在数值模型中,轴和密封将被建模为2D和3D的超弹性。通过施加均匀的径向力将以恒定速度分析作为密封材料的NBR(丁二烯丁二烯橡胶)。

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