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The importance of correct specification of tribological parameters in dynamical systems modelling

机译:正确规范摩擦学参数规范在动态系统建模中的重要性

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When modelling the behaviour of dynamical systems, the friction phenomenon cannot be neglected. Dry and fluid friction may occur, but dry friction has more severe effects upon the behaviour of the systems, based on the fact that the introduced discontinuities are more important. In the modelling of dynamical systems, dry friction is the main cause of occurrence of the bifurcation phenomenon. These aspects become more complex if, in the case of dry friction, static and dynamic frictions are put forward. The behaviour of a simple dynamical system is studied, consisting in a prismatic body linked to the ground by a spring, placed on a conveyor belt. The theoretical model is described by a nonlinear differential equation which after numerical integration leads to the conclusion that the steady motion of the prism is an un-damped oscillatory motion. The system was qualitatively modelled using specialised software for dynamical analysis. It was impractical to obtain a steady uniform translational motion of a rigid, therefore the conveyor belt was replaced by a metallic disc in uniform rotation motion. The attempts to compare the CAD model to the theoretical model were unsuccessful because the efforts of selecting the tribological parameters directed to the conclusion that the motion of the prism is a damped oscillation. To decide which of the methods depicts reality, a test-rig was assembled and it indicated a sustained oscillation. The conclusion is that the model employed by the dynamical analysis software cannot describe the actual model and a more complex model is required in the description of the friction phenomenon.
机译:在建模动态系统的行为时,摩擦现象不能被忽略。可能发生干燥和流体摩擦,但基于引入的不连续性更重要的事实,干摩擦对系统的行为具有更严重的影响。在动态系统的建模中,干摩擦是分叉现象发生的主要原因。如果在提出干摩擦,静态和动态摩擦的情况下,这些方面变得更加复杂。研究了简单的动态系统的行为,在由弹簧连接到地面连接到地面的棱镜体中,放置在输送带上。理论模型由非线性微分方程描述,该非线性微分方程在数值积分导致结论中,棱镜的稳定运动是未阻尼振荡运动。使用专用软件进行定性建模系统进行动态分析。获得刚性的稳定均匀的平移运动是不切实际的,因此将传送带被均匀旋转运动中的金属盘代替。将CAD模型与理论模型进行比较的尝试是不成功的,因为选择摩擦学参数的努力被引导到棱镜运动是阻尼振荡的结论。为了确定哪种方法描绘了现实,组装了一种测试钻机,并表示持续振荡。结论是,动态分析软件采用的模型无法描述实际模型,在摩擦现象的描述中需要更复杂的模型。

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