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A friction model for dynamic analyses of multi-body systems with a fully functional friction clutch

机译:具有全功能摩擦离合器的多体系统动力学分析的摩擦模型

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This article focuses on the development and experimental verification of a friction model to be implemented in a fully functional friction clutch. The resulting clutch model is intended to be employed in commercial software code AVL Excite, which imposes special requirements also for the underlying friction model. These requirements are related to model implementation, available input data, required output data, model complexity, numerical stability, and model parameters. Since for a fully functional clutch the ability to render true stick is crucial, the elasto-plastic friction model is chosen as a basis. This model is investigated in detail and modified adequately in order to meet all of the requirements and to deliver stable and satisfactory results. For validation purposes, a special test bed was built to measure the transmitted torques through the friction contact under various realistic load cases, including all operation phases of the friction clutch. Parallel to experimental measurements, multi-body simulations were done with the modified friction model within the target software. A very satisfactory agreement of simulation and measurement results was achieved.
机译:本文重点介绍要在全功能摩擦离合器中实现的摩擦模型的开发和实验验证。最终的离合器模型打算在商业软件代码AVL Excite中使用,该软件对基础摩擦模型也有特殊要求。这些要求与模型实现,可用输入数据,所需输出数据,模型复杂性,数值稳定性和模型参数有关。因为对于一个功能齐全的离合器来说,真正粘住的能力至关重要,所以选择弹塑性摩擦模型作为基础。为了满足所有要求并提供稳定和令人满意的结果,对该模型进行了详细研究和适当修改。为了进行验证,建立了一个特殊的测试台,以测量在各种实际负载情况下(包括摩擦离合器的所有运行阶段)通过摩擦接触传递的扭矩。与实验测量平行,在目标软件中使用修改后的摩擦模型进行了多体仿真。模拟和测量结果非常令人满意。

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