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Fast modelling and simulation of the dynamic behaviour of a wet multidisc clutch during the engagement phase

机译:湿式多耐用离合器在接合阶段的快速建模与仿真

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摘要

In recent years multidisc wet friction clutches are of great importance to manufacturers of automatic transmissions (ATs) for the automotive industry, particularly since the introduction of double-clutched ATs. Their main advantage compared to their dry-friction counterparts is that they ensure smooth engagement, high reliability and long service life. Their progressive engagement due to the developed Couette flow between the discs enables them to be used both as clutches and as brakes in order to control power flow in simultaneously engaged geared shafts in the AT. Due to the coupled nature between the mechanical and the fluid dynamics regimes governing their operation, these systems are highly complex to be treated analytically and instead numerical approaches have proven to provide better results. However, the numerical treatment of such problems provides only case-specific results, which cannot be generalised and are not able to provide a general insight in the complex dynamics of the device. Furthermore the computational cost and the associated modelling and simulation effort during the design phase is high, making the incorporation of such methods in iterative design processes and algorithms counterproductive. In this paper the modelling of the dynamic behaviour of a wet multidisc clutch during the engagement phase is performed, via the combination of analytical and numerical methods and conclusions are drawn about the effect of the main geometric, kinematic and dynamic design parameters on the clutch’s response. The dynamic modelling is performed by applying the principle of linear and angular momentum on each disc. The effect of the fluid film is taken into account through the solution of the governing Navier-Stokes equations via CFD analysis or by the use of semi-analytical solutions with high accuracy, where applicable. Therefore both the developed pressure field and the torque of the fluid film are calculated efficiently and used in the simulation of the system. The flow is assumed to be laminar and the discs rigid and flat.
机译:近年来,MultiDISD湿摩擦离合器对汽车行业的自动变速器(ATS)制造商非常重视,特别是自从引入双紧身的ATS以来。它们的主要优势与其干式摩擦对应物相比,它们确保了光滑的接合,高可靠性和长期使用寿命。由于圆盘之间的发达的耦合流动导致的渐进式啮合使得它们都可以用作离合器和作为制动器,以便控制在AT中同时接合的齿轮轴的功率流动。由于机械和流体动力学方案之间的耦合性质,这些系统是高度复杂的,分析治疗,而是证明的数值方法可以提供更好的结果。然而,这些问题的数值治疗提供了特定于具体的结果,其无法概括并且不能提供对设备的复杂动态的一般洞察力。此外,在设计阶段期间计算成本和相关的建模和模拟工作是高的,这在迭代设计过程和算法中掺入了这种方法和算法补充。在本文中,通过分析和数值方法的组合来进行湿式多级离合器在接合阶段期间的模型,并通过分析和数值方法的组合来达到主体几何,运动和动态设计参数对离合器的反应的影响。通过在每个盘上应用线性和角动量的原理来执行动态建模。通过CFD分析或使用高精度的使用半分析解决方法,考虑流体膜的效果,通过CFD分析或使用具有高精度的半分析解决方案。因此,发达的压力场和流体膜的扭矩都是有效地计算并用于系统的模拟。假设流动是层状和磁盘刚性和平坦。

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