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首页> 外文期刊>Journal of Tribology >A Strongly Coupled Finite Difference Method-Finite Element Method Model for Two-Dimensional Elastohydrodynamically Lubricated Contact
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A Strongly Coupled Finite Difference Method-Finite Element Method Model for Two-Dimensional Elastohydrodynamically Lubricated Contact

机译:具有二维弹性流体动力学润滑接触的强耦合有限差分法 - 有限元模型

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摘要

This paper presents a partitioned strongly coupled fluid-solid interaction (FSI) model to solve the 2D elastohydrodynamic (EHD) lubrication problem. The FSI model passes information between a control volume finite-difference discretized Reynolds equation and ABAQUS FINITE ELEMENT (FE) software to solve for the fluid pressure and elastic deformation within heavily loaded lubricated contacts. Pressure and film thickness results obtained from the FSI model under a variety of load and speed conditions were corroborated with open published results. The results are in excellent agreement. Details of the model developed for this investigation are presented with a focus on the simultaneous solution of the Reynolds equation, load balance, and the coupling of the solid ABAQUS FE with the finite-difference fluid (Reynolds) model. The coupled FSI model developed for this investigation provides the critical venue needed to investigate many important tribological phenomena such as plasticity, subsurface stress, and damage. The current FSI model was used to explore and demonstrate the efficacy of the model to investigate the effects of microstructure inhomogeneity, material fatigue damage, and surface features on heavily loaded lubricated contacts as can be found in a wide range of industrial, automotive, and aeronautical drive systems.
机译:本文介绍了划分的强耦合的流体固体相互作用(FSI)模型,以解决2D弹性流体动力学(EHD)润滑问题。 FSI模型通过了控制体积有限差异离散化雷诺等式和ABAQUS有限元(FE)软件之间的信息,以解决较重负载的润滑触点内的流体压力和弹性变形。在各种负荷和速度条件下从FSI模型获得的压力和膜厚度结果与开放的公开结果有关。结果符合良好的一致性。为该调查开发的模型的细节,并专注于雷诺方程,负载平衡和固体ABAQUS FE与有限差异流体(Reynolds)模型的同时解。为该调查开发的耦合的FSI模型提供了调查许多重要摩擦学现象所需的临界场地,例如可塑性,地下压力和损坏。目前的FSI模型用于探索和证明模型探讨微观结构不均匀性,材料疲劳损坏和表面特征的效果,以及在各种工业,汽车和航空中可以找到的大量装载的润滑触点。驱动系统。

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