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Comparison Between Elastic Foundation and Contact Force Models in Wear Analysis of Planar Multibody System

机译:平面多体系统磨损分析中弹性基础模型和接触力模型的比较

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摘要

In this paper, two procedures to analyze planar multibody systems experiencing wear at a revolute joint are compared. In both procedures, the revolute joint of interest includes a clearance whose shape and size are dictated by wear. The procedures consist of coupled iterative analyses between a dynamic system analysis with nonideal joints and a wear prediction to determine the evolution of the joint clearance. In the first procedure, joint forces and contact pressures are estimated using the elastic foundation model with hysteresis damping via the dynamic analysis. In the second procedure, a contact force model with hysteresis damping is used to estimate the joint forces. In the latter case, however, the contact pressure is estimated using a finite element method (FEM). A comparison in performance of the two models is facilitated through the use of an experimental slider-crank mechanism in which wear is permitted to occur at one of the joints. It is observed that the two procedures provide similar estimates for the dynamic response and wear volumes but substantially different predictions on the wear profiles. Additionally, experimental results show that while predictions on the wear volume from both models are reasonably accurate, the FEM-based model produced more accurate predictions on the wear profile.
机译:在本文中,比较了分析平面多体系统在旋转接头处发生磨损的两种方法。在这两种方法中,目标旋转接头都包括一个间隙,该间隙的形状和尺寸由磨损决定。该程序包括在具有非理想关节的动态系统分析与确定关节间隙演变的磨损预测之间进行的耦合迭代分析。在第一个步骤中,通过具有动态滞后阻尼的弹性地基模型来估算关节力和接触压力。在第二个过程中,使用具有磁滞阻尼的接触力模型来估计关节力。但是,在后一种情况下,使用有限元方法(FEM)估算接触压力。通过使用实验性曲柄-曲柄机构可以简化两个模型的性能比较,其中允许在其中一个接头处发生磨损。可以看出,这两个过程为动态响应和磨损量提供了相似的估计,但对磨损曲线的预测却大不相同。此外,实验结果表明,虽然两个模型对磨损量的预测都相当准确,但基于FEM的模型却对磨损曲线产生了更准确的预测。

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