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Physically Motivated Model for Efficient Dynamic Simulation of Chain Tensioners with Labyrinth Seals

机译:具有迷宫式密封件链张紧器的高效动态仿真的物理动态模型

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The object of this study is a new chain tensioner with two labyrinth seals. For the simulation of chain tensioners within the framework of multi-body dynamics, a physically orientated model to describe the fluid dynamics of the labyrinth seals is derived. The easiest way to describe labyrinth seals is to use maps obtained from measurements. As this is very time-consuming, methods of 1D and 2D fluid-mechanics are used in this work to model the labyrinth seals. The seals are characterized by physically motivated parameters e.g. coefficients of resistance or friction. As these parameters can be derived from geometric data, a very good forecast feasibility without experimental investigations is provided. For high accuracy simulations model parameters can be refined by experimental data. As many and highly complex parameters have to be identified, this refinement is very time-consuming and requires lots of experiments. Therefore, a third approach for modeling a labyrinth sealing is derived. Using dimensional analysis the labyrinth can be described by a non-dimensional equation. Only a few coefficients have to be determined by measurements. Hence, the effort for parameter identification as well as the number of necessary experiments is significantly reduced. All three approaches are validated with experimental data. Next, a dynamic model of a complete chain tensioner including labyrinth seals was built up. A comparison between simulation and measured data of the flow characteristics as well as of the dynamic behavior is presented to prove accuracy, benefits and practicability of the presented approach. Furthermore, the influence of fluid inertia in the hydraulic lines is analyzed.
机译:本研究的目的是一种具有两个迷宫式密封件的新链张紧器。为了在多体动力学框架内模拟链条张紧器,得出了描述迷宫密封件的流体动力学的物理上定向模型。描述迷宫密封件的最简单方法是使用从测量获得的地图。由于这是非常耗时的,在这项工作中使用1D和2D流体机械方法来模拟迷宫密封件。密封件的特征在于物理上促进参数。抗性或摩擦系数。由于这些参数可以从几何数据导出,因此提供了没有实验研究的非常好的预测可行性。对于高精度模拟,模型参数可以通过实验数据进行精制。由于必须识别许多和高度复杂的参数,这种细化非常耗时,并且需要大量的实验。因此,推导出一种用于建模迷宫密封的第三种方法。使用尺寸分析可以通过非维度方程描述迷宫。必须通过测量确定几个系数。因此,参数鉴定的努力以及必要实验的数量显着降低。所有三种方法都以实验数据验证。接下来,建立了一个完整的链张紧器的动态模型,包括迷宫密封件。提出了模拟和测量数据的比较以及动态行为的数据,以证明所提出的方法的精度,益处和实用性。此外,分析了液压管路中的流体惯性的影响。

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