The sealing mechanism of radial lip seals: A numerical study of the tangential distortion of the sealing edge

Jeremias Grün, Simon Feldmeth, F. Bauer
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引用次数: 4

Abstract

The sealing behaviour of elastomeric radial lip seals is essentially affected by the sealing mechanism in the contact area between the sealing edge and the shaft surface. The relative motion between radial lip seal and shaft deforms the sealing edge tangentially in the circumferential direction. This mechanical deformation is considered essential for the sealing mechanism. In this study, a numerical approach is employed to simulate this deformation. A three-dimensional multiscale model serves this purpose. The radial lip seal geometry is described on the macro-scale. On the micro-scale, an artificial rough surface with a stochastic roughness distribution is applied to an ideal sealing edge surface. A new meshing algorithm is used to discretise different sealing edge surfaces and automatically generates structured hexahedral meshes of the sealing edges. Mesh transitions connect the resulting finely meshed sealing edge to the coarsely meshed global macro-scale mesh of the radial lip seal. The paper introduces the modelling method used to simulate the deformation of radial lip seals. Results are presented and discussed with reference to the sealing behaviour. This contributes to a better understanding of the sealing mechanism of radial lip seals. Keywords: radial lip seal, finite element analysis, surface roughness, elastic deformation, elastomers.
径向唇形密封的密封机理:密封边缘切向畸变的数值研究
弹性径向唇形密封件的密封性能主要受密封边缘与轴表面接触区域的密封机理影响。径向唇密封与轴之间的相对运动使密封边缘在周向上切向变形。这种机械变形被认为是密封机构必不可少的。在本研究中,采用数值方法来模拟这种变形。三维多尺度模型可用于此目的。在宏观尺度上描述了径向唇密封的几何形状。在微观尺度上,将具有随机粗糙度分布的人工粗糙表面应用于理想密封边缘表面。采用一种新的网格划分算法对不同的封边曲面进行离散,自动生成封边的六面体结构网格。网格转换将得到的细网格密封边缘连接到径向唇密封的粗网格全局宏观网格。本文介绍了径向唇形密封变形的建模方法。给出了有关密封性能的结果并进行了讨论。这有助于更好地理解径向唇密封的密封机理。关键词:径向唇密封,有限元分析,表面粗糙度,弹性变形,弹性体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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