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Dynamic finite element model of oscillatory brushes

机译:振动电刷的动态有限元模型

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In this work, the concept of oscillatory brushes is studied. The main aims are to develop a generic, dynamic finite element model of oscillatory brushes and to study the effects of brush oscillations on the dynamics and performance of a cup-shaped brush, which may be used for street sweeping. The model entails a transient nonlinear analysis, involving three-dimensional large deflections and contact between bristles and surface and between bristles. An exponential friction model is assumed, and the damping generated by internal friction and bristle-bristle contact is modelled as Rayleigh damping. Existing experimental results on gutter brushes are used to validate the model and determine the coefficient of friction for bristle-surface interaction. The model is also validated through another finite element model derived by the authors. The Rayleigh damping coefficients and the normal contact stiffness for bristle-surface interaction have been obtained by means of experimental tests. The model is applied to study the behaviour of a horizontal gutter brush with a bristle mount orientation angle of 128°. In order to assess brushing performance, a number of performance criteria are proposed. It is concluded that brush oscillations significantly affect brush dynamics and tend to increase bristle tip velocities and brushing forces. According to the model and the performance criteria defined, brush oscillations may improve sweeping effectiveness for certain ranges of frequency of oscillation.
机译:在这项工作中,研究了振荡电刷的概念。主要目的是建立振动刷的通用动态有限元模型,并研究刷振动对杯形刷的动力学和性能的影响,可将其用于扫街。该模型需要进行瞬态非线性分析,包括三维大挠度以及刚毛与表面之间以及刚毛之间的接触。假设采用指数摩擦模型,并且将由内部摩擦和刚毛-刷毛接触产生的阻尼建模为瑞利阻尼。现有的沟槽刷实验结果可用于验证模型并确定刷毛-表面相互作用的摩擦系数。该模型还通过作者得出的另一个有限元模型进行了验证。通过实验测试获得了用于刷毛-表面相互作用的瑞利阻尼系数和法向接触刚度。该模型用于研究刷毛安装方向角为128°的水平装订线刷的行为。为了评估刷牙性能,提出了许多性能标准。结论是,刷子的振动显着影响刷子的动力学,并倾向于增加刷毛尖端的速度和刷力。根据定义的模型和性能标准,对于某些范围的振荡频率,电刷振荡可能会提高扫频效果。

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