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MODELING AND PARAMETRIC STUDY OF TORQUE IN OPEN CLUTCH PLATES

机译:敞开式离合器板的扭矩建模和参数研究

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摘要

The relative motion of the friction and separator plates in wet clutches during the disengaged mode causes viscous shear stresses in the fluid passing through the 100 microns gap. This results in a drag torque on both the disks that wastes energy and decreases fuel economy. The objective of the study is to develop an accurate mathematical model for the above problem with verification using FLUENT and experiments. Initially we start with two flat disks. The mathematical model enables us to calculate the drag torque on the disks and 2D axisymmetric solver verifies the solution. The surface pressure distribution on the plates is also verified. Then 3D models of one grooved and one flat disk are tested using CFD, experiments and an approximate 3D mathematical model and three parameters namely number of grooves, depth of groove and clearance between the disks are studied to understand the effect they have on the drag torque. Conclusions are finally drawn and design implementations are suggested to reduce drag.
机译:在分离模式下,湿式离合器中摩擦片和隔板的相对运动会在通过100微米间隙的流体中产生粘性剪切应力。这会在两个磁盘上产生拖曳扭矩,从而浪费能量并降低燃油经济性。该研究的目的是针对上述问题开发一个准确的数学模型,并使用FLUENT和实验进行验证。最初,我们从两个磁盘开始。数学模型使我们能够计算磁盘上的拖曳扭矩,并且二维轴对称求解器可以验证解。还验证了板上的表面压力分布。然后使用CFD测试一槽和一平盘的3D模型,进行实验和近似的3D数学模型,并研究三个参数,即槽数,槽深度和盘之间的间隙,以了解它们对拖曳扭矩的影响。最终得出结论,并建议设计实现以减少阻力。

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