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Influence of Stator Blade Geometry on Torque Converter Cavitation

机译:定子叶片几何形状对变矩变换器空化的影响

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摘要

Cavitation in torque converters may cause degradation in hydrodynamic performance, severe noise, or even blade damage. Researches have highlighted that the stator is most susceptible to the occurrence of cavitation due to the combination of high flow velocities and high incidence angles. The objective of this study is to therefore investigate the effects of cavitation on hydrodynamic performance as well as the influence of stator blade geometry on cavitation. A steady-state homogeneous computational fluid dynamics (CFD) model was developed and validated against test data. It was found that cavitation brought severe capacity constant degradation under low-speed ratio (SR) operating conditions and vanished in high-speed ratio operating conditions. A design of experiments (DOE) study was performed to investigate the influence of stator design variables on cavitation over various operating conditions, and it was found that stator blade geometry had a significant effect on cavitation behavior. The results show that stator blade count and leaning angle are important variables in terms of capacity constant loss, torque ratio (TR) variance, and duration of cavitation. Large leaning angles are recommended due to their ability to increase the cavitation number in torque converters over a wide range of SRs, leading to less stall capacity loss as well as a shorter duration of cavitation. A reduced stator blade count is also suggested due to a reduced TR loss and capacity loss at stall.
机译:扭矩转换器中的空化可能导致流体动力性能,严重噪声或甚至叶片损坏的降解。研究突出显示,由于高流速和高入射角的组合,定子最容易受到空化的发生。本研究的目的是研究空化对流体动力学性能的影响以及定子叶片几何对空化的影响。开发了稳态均匀计算流体动力学(CFD)模型并验证了测试数据。结果发现,空化在低速比(SR)操作条件下使恒定的容量恒定降解并在高速比操作条件下消失。进行实验(DOE)研究以研究定子设计变量对各种操作条件的空化的影响,发现定子叶片几何形状对空化行为具有显着影响。结果表明,定子叶片计数和倾斜角度在容量恒定损失,扭矩比(TR)方差和空化持续时间方面是重要的变量。推荐大的倾斜角度,由于它们在宽范围的SR上增加扭矩转换器中的空化数,导致较少的停顿容量损耗以及较短的空化持续时间。由于摊位的TR损耗和容量损失降低,还提出了一种减少的定子叶片计数。

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