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Analysis of Flow in the Lock-up Clutch of an Automotive Torque Converter

机译:汽车液力变矩器锁止离合器中的流量分析

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The flow through the single-plate lock-up clutch in an automotive torque converter with a 250-mm nominal diameter was numerically investigated using a CFD code. The flow was computed under various clearances between the lock-up piston and the torque converter cover. The stable location of the lock-up piston was determined so that the thrust acting on it became zero. The computation results showed that the fluid flowed outwards in the narrow channel between the lock-up clutch facing and the converter cover, whereas the flow reversed inwards near the lock-up piston surface upstream and downstream of the narrow channel in most cases. Along the outer surface of the axial flow channel near the exit, the flow also reversed far upstream of the channel. The computation results well predicted the stable position of the lock-up piston. It is noteworthy that the sharp increase in clearance in the coupling range can be clearly captured with this method.
机译:使用CFD代码以数字方式研究了标称直径为250 mm的汽车变矩器中通过单片锁止离合器的流量。在锁止活塞和变矩器盖之间的各种间隙下计算流量。确定锁止活塞的稳定位置,以便作用在锁止活塞上的推力变为零。计算结果表明,流体在锁止离合器端面和变矩器盖之间的狭窄通道中向外流动,而​​在大多数情况下,流体在狭窄通道上游和下游的锁止活塞表面附近向内反向流动。沿着轴向流动通道的靠近出口的外表面,流动也逆转到通道的上游。计算结果很好地预测了锁止活塞的稳定位置。值得注意的是,通过这种方法可以清楚地捕捉到耦合范围内间隙的急剧增加。

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