Finite Element based Transient Elastohydrodynamic Simulation of Translational Hydraulic Seals

IF 0.7 Q4 ENGINEERING, MECHANICAL
J. Angerhausen, B. Persson, H. Murrenhoff, M. Scaraggi, L. Dorogin
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引用次数: 1

Abstract

Seals are crucial machine elements in hydraulic devices. However, especially with regard to dynamic seals – for example in cylinder applications – the physical understanding of the sealing mechanism is still insufficient. In this paper a physically based, transient elastohydrodynamic simulation for translational hydraulic seals is presented. The deformation of the seal is calculated in a dynamic finite element (FE) simulation, hyper- and viscoelastic material properties are taken into account. For the numerical calculation of the fluid film and its influences on the seal deformation the FE simulation is coupled with an implementation of the transient Reynold’s equation. For a physically based calculation of the solid contact, the FE-model is coupled with Persson’s theory of rubber friction and contact mechanics. Both, normal force and solid friction are implemented. In a simulation study the influence of the relative velocity in the contact between the elastic, highly deformable seal and a hard cylinder is investigated. The initial phase of motion is investigated in detail. The simulation results are compared to experimental data of a lubricated sliding contact between an nitrile butadiene rubber (NBR) O-ring and a rough steel surface.
基于有限元的平动液压密封瞬态弹流动力学仿真
密封是液压装置中至关重要的机械元件。然而,特别是在动态密封方面,例如在气缸应用中,对密封机制的物理理解仍然不足。本文提出了一种基于物理的平动液压密封瞬态弹流动力学仿真方法。在动态有限元模拟中计算了密封的变形,考虑了材料的超弹性和粘弹性特性。为了数值计算流体膜及其对密封变形的影响,结合瞬态雷诺方程进行了有限元模拟。对于基于物理的固体接触计算,有限元模型与Persson的橡胶摩擦和接触力学理论相结合。法向力和固体摩擦都实现了。在一项模拟研究中,研究了弹性高变形密封与硬圆柱接触时相对速度的影响。对运动的初始阶段进行了详细的研究。将仿真结果与丁腈橡胶(NBR) o型圈与粗糙钢表面润滑滑动接触的实验数据进行了比较。
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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来源期刊
International Journal of Fluid Power
International Journal of Fluid Power ENGINEERING, MECHANICAL-
CiteScore
1.60
自引率
0.00%
发文量
16
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